ISO/IEC INTERNATIONAL STANDARD 您所在的位置:网站首页 三星客服官网客服电话号码 ISO/IEC INTERNATIONAL STANDARD

ISO/IEC INTERNATIONAL STANDARD

#ISO/IEC INTERNATIONAL STANDARD| 来源: 网络整理| 查看: 265

Transcription

1 INTERNATIONAL STANDARD This is a preview - click here to buy the full publication ISO/IEC First edition Corrected version Information technology Automatic identification and data capture techniques Real time locating systems (RTLS) device conformance test methods Part 5: Test methods for chirp spread spectrum (CSS) at 2,4 GHz air interface Technologies de l'information Techniques d'identification automatique et de capture de données Systèmes de localisation en temps réel (RTLS) méthodologie des tests de conformité Partie 5: Méthodologie de test de l'interface d'air à 2,4 GHz avec étalement de spectre par compression d'impulsions (CSS) Reference number ISO/IEC :2012(E) ISO/IEC 2012

2 ISO/IEC :2012(E) This is a preview - click here to buy the full publication COPYRIGHT PROTECTED DOCUMENT ISO/IEC 2012 All rights reserved. Unless otherwise specified, no part of this publication may be reproduced or utilized in any form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from either ISO at the address below or ISO's member body in the country of the requester. ISO copyright office Case postale 56 CH-1211 Geneva 20 Tel Fax Web Published in Switzerland ii ISO/IEC 2012 All rights reserved

3 This is a preview - click here to buy the full publication ISO/IEC :2012(E) Contents Page Foreword... iv Introduction... v 1 Scope Normative references Terms and definitions Symbols and abbreviated terms Conformance tests for ISO/IEC General Overall Test conditions Test environment Default tolerance Transmitter and Receiver setup Transmitting setup Receiving setup RF transmission tests Test setup ary orthogonal CSS modulation at 1 Mbits/s transmission test ary orthogonal CSS modulation at 250 Kbits/s transmission test DQPSK CSS modulation at 1 Mbits/s transmission test DQPSK CSS modulation at 250 Kbits/s transmission test RF reception tests Test setup ary orthogonal CSS modulation at 1 Mbits/s reception test ary orthogonal CSS modulation at 250 Kbits/s reception test DQPSK CSS modulation at 1 Mbits/s reception test DQPSK CSS modulation at 250 Kbits/s reception test Application layer conformance tests Test setup Set and get configuration vector command Set, add and get ranging peer Switch state command test Ranging packet exchange Ranging report Annex A (normative) Technical requirements of the testing equipment Bibliography ISO/IEC 2012 All rights reserved iii

4 ISO/IEC :2012(E) This is a preview - click here to buy the full publication Foreword ISO (the International Organization for Standardization) and IEC (the International Electrotechnical Commission) form the specialized system for worldwide standardization. National bodies that are members of ISO or IEC participate in the development of International Standards through technical committees established by the respective organization to deal with particular fields of technical activity. ISO and IEC technical committees collaborate in fields of mutual interest. Other international organizations, governmental and non-governmental, in liaison with ISO and IEC, also take part in the work. In the field of information technology, ISO and IEC have established a joint technical committee, ISO/IEC JTC 1. International Standards are drafted in accordance with the rules given in the ISO/IEC Directives, Part 2. The main task of the joint technical committee is to prepare International Standards. Draft International Standards adopted by the joint technical committee are circulated to national bodies for voting. Publication as an International Standard requires approval by at least 75 % of the national bodies casting a vote. Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. ISO and IEC shall not be held responsible for identifying any or all such patent rights. ISO/IEC was prepared by Joint Technical Committee ISO/IEC JTC 1, Information technology, Subcommittee SC 31, Automatic identification and data capture techniques. This corrected version of ISO/IEC :2012 incorporates the following corrections: All references to ISO/IEC have been changed to ISO/IEC ISO/IEC consists of the following parts, under the general title Information technology, Automatic identification and data capture techniques Real time locating systems (RTLS) device conformance test methods: Part 2: Test methods for air interface communication at 2,4 GHz Part 5: Test methods for chirp spread spectrum (CSS) at 2,4 GHz air interface iv ISO/IEC 2012 All rights reserved

5 This is a preview - click here to buy the full publication ISO/IEC :2012(E) Introduction ISO/IEC defines air interface protocols and an Application Program Interface (API) for Real Time Locating Systems (RTLS). ISO/IEC defines an air interface which utilizes Chirp Spread Spectrum (CSS) at frequencies from GHz. Chirp pulses, which are pulses with a fast increasing or decreasing instantaneous frequency, have originally used for radar applications. Lately, chirp pulses have been also used for communication applications. ISO/IEC includes ranging and bidirectional communication between tags and infrastructures. Bidirectional communication enables the infrastructure to control the behaviour of tags. The purpose of ISO/IEC TR is to provide tests conditions and methods for conformance to ISO/IEC ISO/IEC TR contains all measurements required to be made on a product in order to establish whether it conforms to ISO/IEC ISO/IEC 2012 All rights reserved v

6 This is a preview - click here to buy the full publication

7 This is a preview - click here to buy the full publication INTERNATIONAL STANDARD ISO/IEC :2012(E) Information technology Automatic identification and data capture techniques Real time locating systems (RTLS) device conformance test methods Part 5: Test methods for chirp spread spectrum (CSS) at 2,4 GHz air interface 1 Scope This part of ISO/IEC defines the test methods for determining the conformance of real time locating systems (RTLS) tags and readers with the specifications given in the corresponding parts of ISO/IEC This part of ISO/IEC does not include the testing of conformity with regulatory requirements. The test methods require only that the mandatory functions, and any optional functions which are implemented, be verified The conformance parameters described in this part of ISO/IEC include the radio frequency air interface and packet exchange required to perform the locating of the RTLS tag. It includes the mandatory 2-ary orthogonal chirp spread spectrum (CSS) modulation and the optional differential quadrature phase shift keying (DQPSK) CSS. This part of ISO/IEC also includes the ranging packet exchanges, the commands and the reports defined in ISO/IEC Unless otherwise specified, the tests in this part of ISO/IEC shall be applied exclusively to RTLS tags and readers defined in ISO/IEC Normative references The following referenced documents are indispensable for the application of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. ISO/IEC : Information technology Automatic identification and data capture (AIDC) techniques Harmonized vocabulary Part 1: General terms relating to AIDC ISO/IEC : Information technology Automatic identification and data capture (AIDC) techniques Harmonized vocabulary Part 3: Radio-Frequency Identification (RFID) ISO/IEC : Information technology Automatic identification and data capture (AIDC) techniques Harmonized vocabulary Part 4: General terms relating to radio communications ISO/IEC : Information technology Automatic identification and data capture (AIDC) techniques Harmonized vocabulary Part 5: Locating systems ISO/IEC : Information technology Real Time Locating Systems (RTLS) Part 5: Chirp Spread Spectrum (CSS) at 2.4 GHz air interface ISO/IEC 2012 All rights reserved 1

8 ISO/IEC :2012(E) This is a preview - click here to buy the full publication 3 Terms and definitions For the purposes of this document, the terms and definitions given in ISO/IEC , ISO/IEC , ISO/IEC , ISO/IEC and the following apply. 3.1 Chirp Spread Spectrum technique for spreading the bandwidth of a digital signal using linear frequency sweep signals 3.2 Class I system that operates at a radiated power up to 10 mw EIRP 3.3 Class II system that operates at a radiated power higher than 10 mw up to the maximum defined by local regulations 3.4 Ranging process of determining the distance between two RTLS transceivers through the exchange of a specific set of messages 3.4 Ranging peer RTLS transceiver to perform ranging with 3.5 RTLS tag RTLS transceiver that accepts commands from RTLS readers, sends blinks and reports to the RTLS readers 4 Symbols and abbreviated terms API AWG CRC CSMA/CA CSS DQPSK DUT EIRP MAC PPM RTLS SG Application Program Interface Arbitrary Waveform Generator Cyclic Redundancy Check Carrier Sense Multiple Access / Collision Avoid Chirp Spread Spectrum Differential Quadrature Phase Shift Keying Device Under Test Effective Isotropic Radiated Power Medium Access Control Parts Per Million Real Time Locating System Signal Generator 2 ISO/IEC 2012 All rights reserved

9 This is a preview - click here to buy the full publication ISO/IEC :2012(E) Src T RXON Source address Duration of time interval during which the receiver is activated T1R1 Application ranging packet type 1 of the ranging packet exchange type 1 5 Conformance tests for ISO/IEC General This technical report specifies a series of tests to determine the conformance of RTLS tags and readers to the ISO/IEC air interface and packet exchanges required to be performed between tags and infrastructures in order to control and retrieve information about location and states of tags. 5.2 Overall Test conditions Unless otherwise specified, these test conditions apply to all tests in this part of ISO/IEC Test environment Unless otherwise specified, testing shall take place in an environment of temperature 23 C ± 3 C and of relative humidity 25 % to 75 % Default tolerance Unless otherwise specified, a default tolerance of ± 5% shall be applied to the quantity values given to specify the characteristics of the test equipment and the test method procedures. 5.3 Transmitter and Receiver setup In order to perform some test cases, one or several specific setups will be required to either transmit packets or to receive and decode packets according to the ISO/IEC standard. These setups are described hereafter Transmitting setup The transmitting setup shall be used to validate the reception performances of the DUT and to verify the compliance of the DUT to the tag application layer by transmitting various commands. In order to transmit data according to the specification of ISO/IEC , the following parts are required: Control Application: An application which controls the signal generator in order to perform the tasks required by this part of ISO/IEC Arbitrary Waveform Generator: for example, a Tektronix AWG2041 or equivalent, as described in Annex A. Signal Generator: for example, an Agilent ESG E4438C or equivalent, as described in Annex A. If the AWG is able to deliver the proper signal at the desired frequency, the SG might not be necessary. Frequency Mixer: for example, a Mini-Circuits ZEM or equivalent. ISO/IEC 2012 All rights reserved 3

10 ISO/IEC :2012(E) This is a preview - click here to buy the full publication Figure 1 below shows the required transmitting setup: Figure 1 Transmitting setup Receiving setup The receiving setup shall be used to validate the data transmitted by the DUT and to verify the compliance of the DUT to the tag application layer. In order to receive and decode data according to the specification of ISO/IEC , the following parts are required: Frequency Mixer: for example, a Mini-Circuits ZEM or equivalent. Signal Generator: for example, an Agilent ESG E4438C or equivalent, as described in Annex A. Oscilloscope: for example, a Tektronix DPO 7104 or equivalent, as described in Annex A. Post processing application: An application which controls the oscilloscope in order to gather the data required to validate if the DUT is compliant with the test specification. Figure 2 below shows the required receiving setup: Figure 2 Receiving setup 4 ISO/IEC 2012 All rights reserved

11 This is a preview - click here to buy the full publication ISO/IEC :2012(E) 5.4 RF transmission tests This describes the conditions and tests to validate the radio frequency transmission Test setup The device under test (DUT) shall be a RTLS tag or reader. The measurement equipment shall consist of an anechoic chamber, one or several measuring antennas, a spectrum analyzer, an oscilloscope and a receiving setup. Technical requirements of the spectrum analyzer, for example, an Agilent E4443A or equivalent, are described in Annex A. The DUT shall be placed at a distance between 1 meter and 3 meters from the measurement antenna. Figure 3 below shows the required test setup: Figure 3 RF transmission test setup All measurement shall be done with a video and resolution bandwidth of minimum 100 KHz ary orthogonal CSS modulation at 1 Mbits/s transmission test Test objective The objective of this test is to validate that the DUT provides the appropriate 2-ary orthogonal CSS modulation waveform and data rate defined in ISO/IEC and required for proper system performance. ISO/IEC 2012 All rights reserved 5

12 ISO/IEC :2012(E) This is a preview - click here to buy the full publication Test conditions The test setup shall be according to The DUT shall be configured with the following configuration: Transmit on channel 0 with a centre frequency of MHz (as defined in Table 2 in 7.3 of ISO/IEC ). Occupied channel bandwidth: 80 MHz. Data bit rates: 1 Mbits/s. Modulation: 2-ary orthogonal CSS. Transmit power shall be at a class 1 power between 0 dbm and +10 dbm EIRP. Media access: ALOHA (as defined in of ISO/IEC ) which correspond to CSMA/CA off (as defined in Table 27 in of ISO/IEC ). Transmit a blink packet (as defined in of ISO/IEC ) every 1 second. As a blink packet can include user defined data, the length is not fixed but should be kept below 64 bytes in total. The total packet length shall be specified by the manufacturer of the DUT Test measurements and requirements The person in charge of the test, or the test application, shall be able to validate the parameters described hereafter Carrier frequency The carrier frequency shall be measured with the spectrum analyzer. The carrier frequency shall be MHz ± 171 KHz (70 PPM). The carrier frequency drift over the duration of the entire message shall be less than 12 KHz (5 PPM) Occupied channel bandwidth The 20 db occupied bandwidth shall be measured with the spectrum analyzer. The 20 db occupied bandwidth shall be below 83.5 MHz. (As specified in Figure 5 in of ISO/IEC ) Transmit power The power received shall be measured with the spectrum analyzer. The transmitted power shall be calculated based on the power received at the measurement antenna. The calculated power shall be within ± 2.0 db of the DUT specified transmitting power Symbol rate The symbol rate shall be measured with the oscilloscope. The signal can be down converted in order to increase the accuracy of the measurement. The symbol rate of the 2-ary orthogonal CSS shall be 10 6 symbols per second ± 70 symbols (70 PPM). 6 ISO/IEC 2012 All rights reserved

13 This is a preview - click here to buy the full publication ISO/IEC :2012(E) Message content The message shall be decoded using the receiving setup. The person in charge of the test or the test application shall verify that the blink message format, including preamble, start of frame delimiter, DUT ID (defined in Src of Figure 40 in of ISO/IEC ) and CRC2, is in compliance with the format specified in 7.3.7, and of the ISO/IEC Test report The test report shall contain a sketch of the test setup, the distance between the DUT and the measurement antenna, a list of the testing equipment used and all the measured data required to validate the parameters defined above. If a test application is used, a brief narrative shall be included as an annex to the data. The report shall also contain the uncertainties of the measurement equipment ary orthogonal CSS modulation at 250 Kbits/s transmission test Test objective The objective of this test is to validate that the DUT provides the appropriate 2-ary orthogonal CSS modulation waveform and data rate defined in ISO/IEC and required for proper system performance Test conditions The test setup shall be according to The DUT shall be configured with the following configuration: Transmit on channel 2 with a centre frequency of 2412 MHz (as defined in Table 2 in 7.3 of ISO/IEC ). Occupied channel bandwidth: 22 MHz. Data bit rates: 250 Kbits/s. Modulation: 2-ary orthogonal CSS. Transmit power shall be at a class 1 power between 0 dbm and +10 dbm EIRP. Media access: ALOHA (as defined in of ISO/IEC ) which correspond to CSMA/CA off (as defined in Table 27 in of ISO/IEC ). Transmit a blink packet (as defined in of ISO/IEC ) every 1 second. As a blink packet can include user defined data, the length is not fixed but should be kept below 64 bytes in total. The total packet length shall be specified by the manufacturer of the DUT Test measurements and requirements The person in charge of the test, or the test application, shall be able to validate the parameters described hereafter Carrier frequency The carrier frequency shall be measured with the spectrum analyzer. ISO/IEC 2012 All rights reserved 7

14 ISO/IEC :2012(E) This is a preview - click here to buy the full publication The carrier frequency shall be 2412 MHz ± 169 KHz (70 PPM). The carrier frequency drift over the duration of the entire message shall be less than 12 KHz (5 PPM) Occupied channel bandwidth The 20 db occupied bandwidth shall be measured with the spectrum analyzer. The 20 db occupied bandwidth shall be below 22 MHz. (As specified in Figure 6 in of ISO/IEC ) Transmit power The power received shall be measured with the spectrum analyzer. The transmitted power shall be calculated based on the power received at the measurement antenna. The calculated power shall be within ± 2.0 db of the DUT specified transmitting power Symbol rate The symbol rate shall be measured with the oscilloscope. The signal can be down converted in order to increase the accuracy of the measurement. The symbol rate of the 2-ary orthogonal CSS shall be symbols per second ± 17 symbols (70 PPM) Message content The message shall be decoded using a receiving setup. The person in charge of the test or the test application shall verify that the blink message format, including preamble, start of frame delimiter, DUT ID (defined in Src of Figure 40 in of ISO/IEC ) and CRC2, is in compliance with the format specified in 7.3.7, and of the ISO/IEC Test report The test report shall contain a sketch of the test setup, the distance between the DUT and the measurement antenna, a list of the testing equipment used and all the measured data required to validate the parameters defined above. If a test application is used, a brief narrative shall be included as an annex to the data. The report shall also contain the uncertainties of the measurement equipment DQPSK CSS modulation at 1 Mbits/s transmission test As this modulation is optional in the ISO/IEC , this applies only to devices which state its implementation Test objective The objective of this test is to validate that the DUT provides the appropriate differential Quadrature Phase Shift Keying CSS modulation waveform and data rate defined in ISO/IEC and required for proper system performance. 8 ISO/IEC 2012 All rights reserved

15 This is a preview - click here to buy the full publication ISO/IEC :2012(E) Test conditions The test setup shall be according to The DUT shall be configured with the following configuration: Transmit on channel 2 with a centre frequency of 2412 MHz (as defined in Table 2 in 7.3 and Table 6 in 7.4 of ISO/IEC ). Occupied channel bandwidth: 22 MHz. Data bit rates: 1 Mbits/s. Modulation: DQPSK CSS. Transmit power shall be at a class 1 power between 0 dbm and +10 dbm EIRP. Media access: ALOHA (as defined in of ISO/IEC ) which correspond to CSMA/CA off (as defined in Table 27 in of ISO/IEC ). Transmit a blink packet (as defined in of ISO/IEC ) every 1 second. As a blink packet can include user defined data, the length is not fixed but should be kept below 64 bytes in total. The total packet length shall be specified by the manufacturer of the DUT Test measurements and requirements The person in charge of the test, or the test application, shall be able to validate the parameters described hereafter Carrier frequency If the DUT is able to send a carrier, the carrier frequency shall be measured with the spectrum analyzer. The carrier frequency shall be 2412 MHz ± 97 KHz (40 PPM). The carrier frequency drift over the duration of the entire message shall be less than 12 KHz (5 PPM) Occupied channel bandwidth The occupied bandwidth shall be measured with the spectrum analyzer. The 30 db occupied bandwidth shall be below 22 MHz. (As specified in Figure 13 in of ISO/IEC ). Additionally, the spectral power density shall be according to Figure 13 in of ISO/IEC Transmit power The power received shall be measured with the spectrum analyzer. The transmitted power shall be calculated based on the power received at the measurement antenna. The calculated power shall be within ± 2.0 db of the DUT specified transmitting power Symbol rate The symbol rate shall be measured with the oscilloscope. The signal can be down converted in order to increase the accuracy of the measurement. The symbol rate of the 2-ary orthogonal CSS shall be symbols per second ± 7 symbols (40 PPM). ISO/IEC 2012 All rights reserved 9

16 ISO/IEC :2012(E) This is a preview - click here to buy the full publication Message content The message shall be decoded using a receiving setup. The person in charge of the test or the test application shall verify that the blink message format, including preamble, start of frame delimiter, DUT ID (defined in Src of Figure 40 in of ISO/IEC ) and CRC2, is in compliance with the format specified in 7.3.7, and of the ISO/IEC Test report The test report shall contain a sketch of the test setup, the distance between the DUT and the measurement antenna, a list of the testing equipment used and all the measured data required to validate the parameters defined above. If a test application is used, a brief narrative shall be included as an annex to the data. The report shall also contain the uncertainties of the measurement equipment DQPSK CSS modulation at 250 Kbits/s transmission test As this modulation is optional in the ISO/IEC , this applies only to devices which state its implementation Test objective The objective of this test is to validate that the DUT provides the appropriate differential Quadrature Phase Shift Keying CSS modulation waveform and data rate defined in ISO/IEC and required for proper system performance Test conditions The test setup shall be according to The DUT shall be configured with the following configuration: Transmit on channel 2 with a centre frequency of 2412 MHz (as defined in Table 2 in 7.3 and Table 6 in 7.4 of ISO/IEC ). Occupied channel bandwidth: 22 MHz. Data bit rates: 250 Kbits/s. Modulation: DQPSK CSS. Transmit power shall be at a class 1 power between 0 dbm and +10 dbm EIRP. Media access: ALOHA (as defined in of ISO/IEC ) which correspond to CSMA/CA off (as defined in Table 27 in of ISO/IEC ). Transmit a blink packet (as defined in of ISO/IEC ) every 1 second. As a blink packet can include user defined data, the length is not fixed but should be kept below 64 bytes in total. The total packet length shall be specified by the manufacturer of the DUT Test measurements and requirements The person in charge of the test, or the test application, shall be able to validate the parameters described hereafter. 10 ISO/IEC 2012 All rights reserved

17 This is a preview - click here to buy the full publication ISO/IEC :2012(E) Carrier frequency If the DUT is able to send a carrier, the carrier frequency shall be measured with the spectrum analyzer. The carrier frequency shall be 2412 MHz ± 97 KHz (40 PPM). The carrier frequency drift over the duration of the entire message shall be less than 12 KHz (5 PPM) Occupied channel bandwidth The occupied bandwidth shall be measured with the spectrum analyzer. The 30 db occupied bandwidth shall be below 22 MHz. (As specified in Figure 13 in of ISO/IEC ). Additionally, the spectral power density shall be according to Figure 13 in of ISO/IEC Transmit power The power received shall be measured with the spectrum analyzer. The transmitted power shall be calculated based on the power received at the measurement antenna. The calculated power shall be within ± 2.0 db of the DUT specified transmitting power Symbol rate The symbol rate shall be measured with the oscilloscope. The signal can be down converted in order to increase the accuracy of the measurement. The symbol rate of the 2-ary orthogonal CSS shall be symbols per second ± 7 symbols (40 PPM) Message content The message shall be decoded using a receiving setup. The person in charge of the test or the test application shall verify that the blink message format, including preamble, start of frame delimiter, DUT ID (defined in Src of Figure 40 in of ISO/IEC ) and CRC2, is in compliance with the format specified in 7.3.7, and of the ISO/IEC Test report The test report shall contain a sketch of the test setup, the distance between the DUT and the measurement antenna, a list of the testing equipment used and all the measured data required to validate the parameters defined above. If a test application is used, a brief narrative shall be included as an annex to the data. The report shall also contain the uncertainties of the measurement equipment. 5.5 RF reception tests This describes the conditions and tests to validate the radio frequency reception Test setup The measurement equipment shall consist of an anechoic chamber, a transmitting setup and a receiving setup. The DUT shall be a RTLS tag or reader. ISO/IEC 2012 All rights reserved 11

18 ISO/IEC :2012(E) This is a preview - click here to buy the full publication The DUT shall be placed at a distance between 1 meter and 3 meters from the measurement antenna. The data will be transmitted by a transmitting setup. The person in charge of the test shall verify that the transmitting setup complies with the RF transmission test, as defined in 5.4 of this part of ISO/IEC Figure 4 below shows the required test setup: Figure 4 RF reception test setup ary orthogonal CSS modulation at 1 Mbits/s reception test Test objective The objective of this test is to validate that the DUT provides the appropriate 2-ary orthogonal CSS modulation waveform detection required for proper system performance Test conditions The test setup shall be according to The DUT shall be configured with the following configuration: Operation on channel 0 with a centre frequency of MHz (as defined in Table 2 in 7.3 of ISO/IEC ). Occupied channel bandwidth : 80 MHz. Data bit rates: 1 Mbits/s. Modulation: 2-ary orthogonal CSS. Transmit power shall be at a class 1 power between 0 dbm and +10 dbm EIRP. 12 ISO/IEC 2012 All rights reserved

19 This is a preview - click here to buy the full publication ISO/IEC :2012(E) Media access: ALOHA (as defined in of ISO/IEC ) which correspond to CSMA/CA off (as defined in Table 27 in of ISO/IEC ). Additionally, as the operation of a tag and a reader differ, the configuration and test procedure will be different depending on if the DUT is a tag or a reader Test measurements and requirements The person in charge of the test, or the test application, shall be able to validate the parameters described hereafter Receiver input RF power levels The transmitting setup shall be configured to provide two input signals to the DUT: - 80 dbm for threshold sensitivity - 40 dbm for dynamic range Detection error magnitude Depending on if the DUT is a tag or a reader, the test procedure will differ The device under test is a tag The DUT shall be additionally configured with the following configuration: Transmit a blink packet (as defined in of ISO/IEC ) every 2 seconds. As a blink packet can include user defined data, the length is not fixed but should be kept below 64 bytes in total. The total packet length shall be specified by the manufacturer of the DUT. Each blink shall be followed by a receiving window of duration T RXON equal to 1 second as defined in of ISO/IEC As a tag will transmit a blink packet before entering the receiving window, the testing application controlling the transmitting setup shall not start any transmission before the reception of the blink. The transmission of packet by the transmitting setup shall start 3 milliseconds (ms) after the reception of the blink. During the DUT s receiving window duration, the transmitting setup shall send 200 packets with an estimated interval of 2 ms between each packet. The transmitting setup shall stop to transmit packet 10 ms before the estimated end of the receiving window of the DUT. The packet sent to the DUT shall be an AddRangingPeers command, as defined in of ISO/IEC , with the following parameter: Number of peers = 0 For the 2 RF input levels (2 tests in total), the reception error shall be better than 95 % of all commands sent. Each test shall consist of a minimum of 2000 commands The device under test is a reader The transmitting setup shall transmit blink (as defined in of ISO/IEC ) with an interval between blinks of 2 ms. ISO/IEC 2012 All rights reserved 13

20 ISO/IEC :2012(E) This is a preview - click here to buy the full publication For the 2 RF input levels (2 tests in total), the reception error shall be better than 95 % of all blinks sent. Each test shall consist of a minimum of 2000 blinks Test report The test report shall contain a sketch of the test setup, the distance between the DUT and the measurement antenna, a list of the testing equipment used and all the measured data required to validate the parameters defined above. If a test application is used, a brief narrative shall be included as an annex to the data. The report shall also contain the uncertainties of the measurement equipment ary orthogonal CSS modulation at 250 Kbits/s reception test Test objective The objective of this test is to validate that the DUT provides the appropriate 2-ary orthogonal CSS modulation waveform detection required for proper system performance Test conditions The test setup shall be according to The DUT shall be configured with the following configuration: Occupied channel bandwidth: 22 MHz Data bit rates: 250 kbits/s Modulation: 2-ary orthogonal CSS Transmit power shall be at a class 1 power between 0 dbm and +10 dbm EIRP Media access: ALOHA (as defined in of ISO/IEC ) which correspond to CSMA/CA off (as defined in Table 27 in of ISO/IEC ) Additionally, as the operation of a tag and a reader differ, the configuration and test procedure will be different depending on if the DUT is a tag or a reader Test measurements and requirements The person in charge of the test, or the test application, shall be able to validate the parameters described hereafter Channel used The transmitting setup and the DUT shall be tested at the following channel, as defined in Table 2 in 7.3 of ISO/IEC : Channel 2 : centre frequency of 2412 MHz Channel 8: centre frequency of 2442 MHz Channel 15: centre frequency of 2484 MHz 14 ISO/IEC 2012 All rights reserved

21 This is a preview - click here to buy the full publication ISO/IEC :2012(E) Receiver input RF power levels The transmitting setup shall be configured to provide two input signals to the DUT: - 80 dbm for threshold sensitivity - 40 dbm for dynamic range Detection error magnitude Depending on if the DUT is a tag or a reader, the test procedure will differ The device under test is a tag The DUT shall be additionally configured with the following configuration: Transmit a blink packet (as defined in of ISO/IEC ) every 2 seconds. As a blink packet can include user defined data, the length is not fixed but should be kept below 64 bytes in total. The total packet length shall be specified by the manufacturer of the DUT. Each blink shall be followed by a receiving window of duration T RXON equal to 1 second as defined in of ISO/IEC As a tag will transmit a blink packet before entering the receiving window, the testing application controlling the transmitting setup shall not start any transmission before the reception of the blink. The transmission of packet by the transmitting setup shall start 3 milliseconds (ms) after the reception of the blink. During the DUT s receiving window duration, the transmitting setup shall send 100 packets with an estimated interval of 2 ms between each packet. The transmitting setup shall stop to transmit packet 10 ms before the estimated end of the receiving window of the DUT. The packet sent to the DUT shall be an AddRangingPeers command, as defined in of ISO/IEC , with the following parameter: Number of peers = 0 For the 2 RF input levels and the 3 channels (6 tests in total), the reception error shall be better than 95 % of all commands sent. Each test shall consist of a minimum of 2000 commands The device under test is a reader The transmitting setup shall transmit blink (as defined in of ISO/IEC ) with an interval between blinks of 2 ms. For the 2 RF input levels and the 3 channels (6 tests in total), the reception error shall be better than 95 % of all blinks sent. Each test shall consist of a minimum of 2000 blinks Test report The test report shall contain a sketch of the test setup, the distance between the DUT and the measurement antenna, a list of the testing equipment used and all the measured data required to validate the parameters defined above. If a test application is used, a brief narrative shall be included as an annex to the data. The report shall also contain the uncertainties of the measurement equipment. ISO/IEC 2012 All rights reserved 15

22 ISO/IEC :2012(E) This is a preview - click here to buy the full publication DQPSK CSS modulation at 1 Mbits/s reception test Test objective The objective of this test is to validate that the DUT provides the appropriate DQPSK CSS modulation waveform detection required for proper system performance Test conditions The test setup shall be according to The DUT shall be configured with the following configuration: Occupied channel bandwidth: 22 MHz. Data bit rates: 1 Mbits/s. Modulation: DQPSK CSS. Transmit power shall be at a class 1 power between 0 dbm and +10 dbm EIRP. Media access: ALOHA (as defined in of ISO/IEC ) which corresponds to CSMA/CA off (as defined in Table 27 in of ISO/IEC ). Additionally, as the operation of a tag and a reader differ, the configuration and test procedure will be different depending on if the DUT is a tag or a reader Test measurements and requirements The person in charge of the test, or the test application, shall be able to validate the parameters described hereafter Channel used The transmitting setup and the DUT shall be tested at the following channel, as defined in Table 2 in 7.3 and Table 6 in 7.4 of ISO/IEC : Channel 2 : centre frequency of 2412 MHz Channel 8: centre frequency of 2442 MHz Channel 15: centre frequency of 2484 MHz Receiver input RF power levels The transmitting setup shall be configured to provide two input signals to the DUT: - 80 dbm for threshold sensitivity - 40 dbm for dynamic range Detection error magnitude Depending on if the DUT is a tag or a reader, the test procedure will differ. 16 ISO/IEC 2012 All rights reserved

23 This is a preview - click here to buy the full publication ISO/IEC :2012(E) The device under test is a tag The DUT shall be additionally configured with the following configuration: Transmit a blink packet (as defined in of ISO/IEC ) every 2 seconds. As a blink packet can include user defined data, the length is not fixed but should be kept below 64 bytes in total. The total packet length shall be specified by the manufacturer of the DUT. Each blink shall be followed by a receiving window of duration T RXON equal to 1 second as defined in of ISO/IEC As a tag will transmit a blink packet before entering the receiving window, the testing application controlling the transmitting setup shall not start any transmission before the reception of the blink. The transmission of packet by the transmitting setup shall start 3 milliseconds (ms) after the reception of the blink. During the DUT s receiving window duration, the transmitting setup shall send 200 packets with an estimated interval of 2 ms between each packet. The transmitting setup shall stop to transmit packet 10 ms before the estimated end of the receiving window of the DUT. The packet sent to the DUT shall be an AddRangingPeers command, as defined in of ISO/IEC , with the following parameter: Number of peers = 0 For the 2 RF input levels and the 3 channels (6 tests in total), the reception error shall be better than 95 % of all commands sent. Each test shall consist of a minimum of 2000 commands The device under test is a reader The transmitting setup shall transmit blink (as defined in of ISO/IEC ) with an interval between blinks of 2 ms. For the 2 RF input levels and the 3 channels (6 tests in total), the reception error shall be better than 95 % of all blinks sent. Each test shall consist of a minimum of 2000 blinks Test report The test report shall contain a sketch of the test setup, the distance between the DUT and the measurement antenna, a list of the testing equipment used and all the measured data required to validate the parameters defined above. If a test application is used, a brief narrative shall be included as an annex to the data. The report shall also contain the uncertainties of the measurement equipment DQPSK CSS modulation at 250 Kbits/s reception test Test objective The objective of this test is to validate that the DUT provides the appropriate DQPSK CSS modulation waveform detection required for proper system performance Test conditions The test setup shall be according to ISO/IEC 2012 All rights reserved 17

24 ISO/IEC :2012(E) This is a preview - click here to buy the full publication The DUT shall be configured with the following configuration: Occupied channel bandwidth: 22 MHz Data bit rates: 250 kbits/s Modulation: DQPSK CSS Transmit power shall be at a class 1 power between 0 dbm and +10 dbm EIRP Media access: ALOHA (as defined in of ISO/IEC ) which correspond to CSMA/CA off (as defined in Table 27 in of ISO/IEC ) Additionally, as the operation of a tag and a reader differ, the configuration and test procedure will be different depending on if the DUT is a tag or a reader Test measurements and requirements The person in charge of the test, or the test application, shall be able to validate the parameters described hereafter Channel used The transmitting setup and the DUT shall be tested at the following channel, as defined in Table 2 in 7.3 and Table 6 in 7.4 of ISO/IEC : Channel 2 : centre frequency of 2412 MHz Channel 8: centre frequency of 2442 MHz Channel 15: centre frequency of 2484 MHz Receiver input RF power levels The transmitting setup shall be configured to provide two input signals to the DUT: - 80 dbm for threshold sensitivity - 40 dbm for dynamic range Detection error magnitude Depending on if the DUT is a tag or a reader, the test procedure will differ The device under test is a tag The DUT shall be additionally configured with the following configuration: Transmit a blink packet (as defined in of ISO/IEC ) every 2 seconds. As a blink packet can include user defined data, the length is not fixed but should be kept below 64 bytes in total. The total packet length shall be specified by the manufacturer of the DUT. Each blink shall be followed by a receiving window of duration T RXON equal to 1 second as defined in of ISO/IEC As a tag will transmit a blink packet entering the receiving window, the testing application controlling the transmitting setup shall not start any transmission before the reception of the blink. 18 ISO/IEC 2012 All rights reserved

25 This is a preview - click here to buy the full publication ISO/IEC :2012(E) The transmission of packet by the transmitting setup shall start 3 milliseconds (ms) after the reception of the blink. During the DUT s receiving window duration, the transmitting setup shall send 100 packets with an estimated interval of 2 ms between each packet. The transmitting setup shall stop to transmit packet 10 ms before the estimated end of the receiving window of the DUT. The packet sent to the DUT shall be an AddRangingPeers command, as defined in of ISO/IEC , with the following parameter: Number of peers = 0 For the 2 RF input levels and the 3 channels (6 tests in total), the reception error shall be better than 95 % of all commands sent. Each test shall consist of a minimum of 2000 commands The device under test is a reader The transmitting setup shall transmit blink (as defined in of ISO/IEC ) with an interval between blinks of 2 ms. For the 2 RF input levels and the 3 channels (6 tests in total), the reception error shall be better than 95 % of all blinks sent. Each test shall consist of a minimum of 2000 blinks Test report The test report shall contain a sketch of the test setup, the distance between the DUT and the measurement antenna, a list of the testing equipment used and all the measured data required to validate the parameters defined above. If a test application is used, a brief narrative shall be included as an annex to the data. The report shall also contain the uncertainties of the measurement equipment. 5.6 Application layer conformance tests The following tests shall be performed and validated sequentially (5.6.1 before 5.6.2, before 5.6.3, etc...) Test setup The measurement equipment shall consist of an anechoic chamber, a transmitting setup and a receiving setup. The DUT shall be a RTLS tag or reader. The DUT shall be placed at a distance between 1 meter and 3 meters from the measurement antenna. The data will be transmitted by a transmitting setup. The person in charge of the test shall verify that the transmitting setup complies with the RF transmission test, 5.4 of this part of ISO/IEC The transmitting setup shall be configured in order that the DUT RF input signal is -40 dbm. Figure 4, in 5.5.1, shows the required test setup. ISO/IEC 2012 All rights reserved 19

26 ISO/IEC :2012(E) This is a preview - click here to buy the full publication Set and get configuration vector command Test objective The objective of this test is to validate that the DUT is able to change or report its configuration as defined in the ISO/IEC in order to insure proper system operation Test conditions The test setup shall be according to The DUT shall be configured with the following configuration: Occupied channel bandwidth: 80 MHz. Data bit rates: 1 Mbits/s. Modulation: 2-ary orthogonal CSS. Transmit power shall be at a class 1 power between 0 dbm and +10 dbm EIRP. Media access: ALOHA (as defined in of ISO/IEC ) which correspond to CSMA/CA off (as defined in Table 27 in of ISO/IEC ). Transmit a blink packet (as defined in of ISO/IEC ) every 1 second. As a blink packet can include user defined data, the length is not fixed but should be kept below 64 bytes in total. The total packet length shall be specified by the manufacturer of the DUT. Each blink shall be followed by a receiving window of duration T RXON equal to 5 milliseconds as defined in of ISO/IEC Test measurement and requirements The person in charge of the test, or the test application, shall be able to validate the parameters described hereafter GetConfigVector command After reception of a blink from the DUT, the transmitting setup shall send a GetConfigVector command as defined in of ISO/IEC The DUT shall reply with GetConfigVector report as described in of ISO/IEC The configuration vector shall correspond to the default configuration defined in 9.7 of ISO/IEC SetConfigVector command After reception of a blink from the DUT, the transmitting setup shall send a SetConfigVector command as defined in of ISO/IEC The configuration vector shall be identical to the default configuration except for the data rate which shall be modified to 250 Kbits/s. The person in charge of the test, or the test application, shall validate that the DUT correctly changed its data rate. The person in charge of the test, or the test application, could validate the complete configuration vector by sending a GetConfigVector and comparing the vector received with the one set. 20 ISO/IEC 2012 All rights reserved

27 This is a preview - click here to buy the full publication ISO/IEC :2012(E) Test report The test report shall contain a sketch of the test setup, the distance between the DUT and the measurement antenna, a list of the testing equipment used and all the measured data required to validate the parameters defined above. If a test application is used, a brief narrative shall be included as an annex to the data. The report shall also contain the uncertainties of the measurement equipment Set, add and get ranging peer Test objective The objective of this test is to validate that the DUT understands and handle the command as defined in the ISO/IEC in order to insure proper system operation Test conditions The test setup shall be according to The DUT shall be configured with the following configuration: Occupied channel bandwidth: 80 MHz. Data bit rates: 1 Mbits/s. Modulation: 2-ary orthogonal CSS. Transmit power shall be at a class 1 power between 0 dbm and +10 dbm EIRP. Media access: ALOHA (as defined in of ISO/IEC ) which correspond to CSMA/CA off (as defined in Table 27 in of ISO/IEC ). Transmit a blink packet (as defined in of ISO/IEC ) every 1 second. As a blink packet can include user defined data, the length is not fixed but should be kept below 64 bytes in total. The total packet length shall be specified by the manufacturer of the DUT. Each blink shall be followed by a receiving window of duration T RXON equal to 5 milliseconds as defined in of ISO/IEC Test measurement and requirements The person in charge of the test, or the test application, shall be able to validate the parameters described hereafter. After reception of a blink from the DUT, the transmitting setup shall send three consecutive commands in the same packet. As defined in of ISO/IEC , the DUT shall handle all three commands. The commands shall be sent in the same order as they are defined. The first command shall be a SetRangingPeers command with the following parameters as defined in of the ISO/IEC : Number of peers: 1 MAC address of peer 1: 0x01 0x02 0x03 0x04 0x05 0x06 (hexadecimal values) ISO/IEC 2012 All rights reserved 21

28 ISO/IEC :2012(E) This is a preview - click here to buy the full publication Ranging packet exchange type for peer 1: 0 Application ID of peer 1: 1 The second command shall be an AddRangingPeers command with the following parameters as defined in of the ISO/IEC : Number of peers: 1 MAC address of peer 1: 0x07 0x08 0x09 0x0A 0x0B 0x0C (hexadecimal values) Ranging packet exchange type for peer 1: 0 Application ID of peer 1: 2 The third command shall be a GetRangingPeers command as defined in of ISO/IEC At the end of its receiving window, the DUT shall reply with a GetRangingPeers report as defined in of ISO/IEC Information about the peers shall be identical but the order does not have any influence. The peer 1 can be the one added by the AddRangingPeers command Test report The test report shall contain a sketch of the test setup, the distance between the DUT and the measurement antenna, a list of the testing equipment used and all the measured data required to validate the parameters defined above. If a test application is used, a brief narrative shall be included as an annex to the data. The report shall also contain the uncertainties of the measurement equipment Switch state command test Test objective The objective of this test is to validate that the DUT understands and handle the command as defined in the ISO/IEC in order to insure proper system operation Test conditions The test setup shall be according to The DUT shall be configured with the following configuration: Occupied channel bandwidth: 80 MHz. Data bit rates: 250 kbits/s. Modulation: 2-ary orthogonal CSS. Transmit power shall be at a class 1 power between 0 dbm and +10 dbm EIRP. Media access: ALOHA (as defined in of ISO/IEC ) which correspond to CSMA/CA off (as defined in Table 27 in of ISO/IEC ). 22 ISO/IEC 2012 All rights reserved

View more


【本文地址】

公司简介

联系我们

今日新闻

    推荐新闻

    专题文章
      CopyRight 2018-2019 实验室设备网 版权所有