CEPT ERC REPORT 74-1999 Compatibility Between Radio Frequency Identification Devices (RFID) and The Radioastronomy Service At 13 MHz (Menton May 1999)《无线射频识别装置(RFID)和无线射电天文业务两者的兼容性.pdf
《CEPT ERC REPORT 74-1999 Compatibility Between Radio Frequency Identification Devices (RFID) and The Radioastronomy Service At 13 MHz (Menton May 1999)《无线射频识别装置(RFID)和无线射电天文业务两者的兼容性.pdf》由会员分享,可在线阅读,更多相关《CEPT ERC REPORT 74-1999 Compatibility Between Radio Frequency Identification Devices (RFID) and The Radioastronomy Service At 13 MHz (Menton May 1999)《无线射频识别装置(RFID)和无线射电天文业务两者的兼容性.pdf(14页珍藏版)》请在麦多课文档分享上搜索。
1、STDOCEPT ERC REPORT 7Li-ENGL 1979 m 232bllLll 1b3b b23 m ERC REPORT 74 =,q 9 European Radiocommunications Committee (ERC) - _- within the European Conference of Postal and Telecommunications Administrations (CEPT) COMPATIBILITY BETWEEN RADIO FREQUENCY IDENTIFICATION DEVICES (WID) AND THE RADIOASTRON
2、OMY SERVICE AT 13 MHz Menton, May 1999 _ STD-CEPT ERC REPOR“ 7I-ENGL 1999 E 232bILI OOLb3bL 5bT m 9 EKC REPORJ 74 Copyright 1W9 the European Confereme of Postal and Telecommunications Admlliistrations (CW) STD-CEPT ERC REPORT 74-ENGL 1999 E 232bllLY OGLb3b2 qTb E ERC REPORT 74 COMPATIBILITY BETWEEN
3、RADIO FREQUENCY IDENTIFICATION DEVICES (RFID) AND THE RADIOASTRONOMY SERVICE AT 13 MHz INDEX TABLE INTRODUCTION . 1 DESCRIPTION OF NANCAY ACTIVITIES AT 13 MHZ . 1 DESCRIPTION OF THE RFID SYSTEMS . 1 MEASUREMENT CONFIGURATIONS . 3 RESULTS . 4 CONCLUSIONS . . 5 ANNEX 1: ANNEX 2: A“Ex 3: ANNEX 4: ANNEX
4、 5: ANNEX 6: MEASUREMENT IN THE ANTENNA FIELD, 13.56MHz SIGNAL: WID CARRIER . 6 MEASUREMENT IN THE ANTENNA FIELD, 13.038 MHz SIGNAL: SPURIOUS SIGNAL . 7 MEASUREMENT JN THE ANTENNA FIELD, 13.398 MHz SIGNAL: A MODULATION PRODUCT 8 MEASUREMENT IN THE ANTENNA FIELD, FREQUENCY SPECTRUM . 9 MEASUREMENT IN
5、 CAR PARK, 1.5 KM FROM THE ANTENNA PHOTOGRAPH OFTHE ANTENNA ARRAY sm 1 1 STD-CEPT ERC REPORT 74-ENGL 1779 232L4L4 00Lb3b3 332 D ERC REPORT 74 Page 1 COMPATIBILITY BETWEEN RADIO FREQUENCY IDENTIFICATION DEVICES (RFID) AND THE RADIOASTRONOMY SERVICE AT 13 MHZ 1 INTRODUCTION The band 13.553-13.567 MHz
6、is designated by the ERC recommendation CEPT/ERC/REC 70-03 for non specific Short Range Device (Annex 1) and Inductive Applications (Annex 9). The fieldstrength level is 42 dBpA/m at 10 m, equivalent to approximately 10 mW ERP. Industry has developed RFIDs for a number of new applications such as ti
7、cketing systems, access control, logistics applications, car entry, container identification, contactless credit cards, etc. WID systems at 13.56 MHz use a modulated signal according to Annex 1 or 9 of CEPT/ERC/REC 70-03, with a fieldstrength level of 42 dBpA/m at 10 m. A modulated carrier must meet
8、 the transmitter mask of Annex 9 (Inductive Applications) at 13.41 MHz or lower frequencies and the modulation products must meet the spurious level of -3.5 dBpA/m ( as per EN 300 330). The band 13.36-13.41 MHz is allocated to the radio astronomy service on a primary basis. In Europe, the only radio
9、 astronomy site operating at 13 MHz is Nancay (France).Thus, the purpose of these measurements was to evaluate the interference potential of out of band and spurious emissions of 13.56 MHz RFID systems into the radio astronomy band. 2 DESCRIPTION OF NANCAY ACTIVITIES AT 13 MHz The Decametric Array i
10、s an interferometer consisting of an array of 144 phased antennas. It is composed of two sub-arrays of 72 antennas, placed over an area of 1O.OOO square meters. The array is capable of measuring circular polarisation, which is very important since the radiation from Jupiter is highly polarised. The
11、frequency range that can be observed is 10-100 MHz (or 3-30 meter wavelengths): a typical observation for Jupiter activities ranges from 10 MHz to 40 MHz and from 20 MHz to 75 MHz for solar emissions. These frequencies are scanned every 350 msec. The sensitivity of the receiver is equivalent to lo-%
12、 W/m2/Hz, the antenna gain is 25 dB at a frequency of 25 MHz. The principal beam, i.e. the spatial resolution, has a size of 7 by 14 degrees (large compared to the actual size of a few degrees for the solar corona or only a fraction of a degree for Jupiters magnetosphere, as seen from the Earth). Th
13、e resolution bandwidth is 3 Wz. Around the site of Nancay, two protection zones are defined: Within a radius of 1 km, the installation of any radio transmitter is forbidden Within a 3 km radius, the radioastronomy site must be consulted when installing new radio transmitting equipment 3 DESCRIPTION
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