ETSI GSM 11 21-1994 GSM Radio Aspects Base Station System Equipment Specification《GSM无线方面基站系统设备规范》.pdf
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1、ETSI GSM*LL-ZL 94 W 3400855 0004388 75Y . ETSI-GS M Tech n cal Specification GSM 11.21 Version: 4.1 .O Date: October 1994 Key words: European Digital Cellular Telecommunications System, Global System for Mobile Communications (GSM). GSM Radio Aspects Base Station System Equipment Specification ETSI
2、European Telecommunications Standards Institute ETSI Secretarlat Postal address: 06921 Sophia Antipolis Cedex - FRANCE Office address: Route des Lucioles - Sophia Antipolis - Valbonne - FRANCE Tel.: +33 92 94 42 O0 - Fax: +33 93 65 47 16 This is an unpublished work the copyright in which vests in th
3、e European Telecommunications Standards Institute. All rights reserved. The information contained herein is the property of ETSI and no part may be reproduced or used except as authorised by contract or other written permission. The copyright and the foregoing restriction on reproduction and use ext
4、end to all media in which the information may be embodied. ETSI GSM*IIII-EL 94 3400855 0004389 690 m Page 3 GSY 11.21 v.4.1 .O. October 1994 Contents Foreword . 5 1 scope 7 2 Normative References . 7 3 Definitions. symbols and abbreviations 7 4 Radio interfacing . 7 4.1 PHYSICAL INTERFACE . 7 Freque
5、ncy bands and channels 7 4.1.1.1 Frequency bands . 7 4.1.1.2 4.1.2 Frequency hopping . 8 4.1.3 RF power control 8 4.1.4 Downlink discontinuous transmission (DTX) 8 4.1.5 Test environments 8 4.1.5.1 Normal test environment 8 4.1 52 Extreme test environment . 9 4.1.5.2.1 Extreme Temperature . 9 4.1 52
6、.2 Humidity 9 4.1 -5.3 Vibration . 9 4.1.6 Transmitters . 10 4.1.6.1 Static Layer 1 functions 10 4.1.6.2 Phase error and mean frequency error . 11 4.1.6.3 Mean transmitted RF carrier power 12 4.1.6.4 Transmitted RF carrier power versus time 14 4.1.6.5 Adjacent Channel Power 15 Switching transients s
7、pectrum . 18 4.1.1 Channels and channel numbering . 7 4.1.6.5.1 Spectrum due to modulation and 4.1.6.5.2 4.1.6.6 Spurious emissions from the transmitter antenna connector . 20 4.1.6.6.1 Conducted spurious emissions from the transmitter antenna connector: inside the BTS transmit band 20 4.1.6.6.2 Con
8、ducted spurious emissions from the transmitter antenna connect0 r. outside the BTS transmit band . 21 4.1.6.7 I nte nodulation attenuation 23 4.1.6.8 Intra Base Station System intermodulation attenuation . 25 4.1.7 Receivers . 27 4.1.7.1 Static Layer 1 receiver functions (nominal error ratios) . 27
9、4.1.7.2 Erroneous Frame Indication Performance 29 4.1.7.3 Static Reference Sensitivity Level . 30 4.1.7.4 Multipath Reference Sensitivity Level . 32 4.1.7.5 Reference interference level . 34 4.1.7.6. Blocking Characteristics . 38 4.1.7.7 Intermodulation Characteristics 42 4.1.7.8 Spurious emissions
10、from the receiver antenna connector . 44 Radiated spurious emissions . 45 wideband noise . 16 4.1.8 Previous page is blank ETSI . 94 3400855 0004390 302 -4 GSM 11.21 v.4.1.0 October 1994 ANNEX 1 General testing methodology 48 Test signals at the line output of the receiving unit . 48 Testing of stat
11、istical parameters 48 Detailed theoretical methodology . 51 . Al . 1 General conditions 48 Al . 1.1 Test signals at the line input of the transmitting unit . 48 Al . 1.2 Accepted uncettainty of measurement equipment 48 Al . 3.1 General theoretical methodology 49 Al . 3.2 Al . 3.3 Limitations and cor
12、rections to the theoretical methodology . 52 Al .3. 3.1 Independent emrs 52 Al .3. 3.2 Gaussian distribution . 52 Al .3. 3.3 Stationary random processes 52 Al .3. 3.4 Low error ratios . 53 Al .3. 3.5 Total corrections . 53 Al . 3.4 Altemative experimental methodology 53 Al . 3.5 Detailed definition
13、of error events . 54 Description of special test equipment . 55 Al . 4.1 Al . 4.2 Fading and multipath propagation simulator . 55 Al . 4.3 Measurement set ups for TX intemdulation . 55 Al .4. 3.1 Test Set-up for Intermodulation Attenuation (4.1.6.7.) 56 Al .4.3. 1.2 Outside RX Band . 56 Test Set-up
14、for Intra BSS Intemodulation Attenuation (4.1.6.8.) 57 RX-Band 57 Al .4.3. 2.1 Al .4.3. 2.2 TX-Band . 58 Al . 2 A1.3 A1.4 Base Station System Test Equipment (BSSTE) . 55 Al .4.3. 1.1 RX-Band . 56 Al .4. 3.2 . ANNEX 2 Number of samples needed for statictical testing 59 History . 72 ETSI GSM*LL.EL 74
15、= 3400855 OOOY37L 249 = Page 5 GSM 11.21 v.4.1 .O October 1994 Foreword ITw Page 7 GSM 11.21 v.4.1 .O: October 1994 P-GSMSOO DCS1800 E-GSM9OO 1 scope TX: RX: 935-960 MHZ 890-915 MHz 1805-1880 MHz 1710-1785 MHz 925-960 MHt aao-915 MHZ This standard specifies the testing requirements and methods for G
16、SM 900 and DCS 1800 Base Station Systems. P-GSMSOO E-GSM900 DCS1800 Unless otherwise specified, references to GSM also includes DCS1800. FI( n)=890+0.2*n 1 19)-24dBm (0.08)-0.25111) (27)-32dBm (0.5)-1.6W) (14)-19dBm (O.OS)-O.8111) (22)-27dBm (O.l 6)-0.5W) b9i-14dBm fbO.01 LO.03Mi DCS1800 micro-BTS M
17、aximum ls17L22dBm (O 05-i 1RM lest Envlronment Normal Extreme Temperature NOTE: For Extreme Temperature, configure the BSS under test with a full complement of equipment, with each carrier at full power but only test one TRX at M. Conformance requlrement Table 4: Definition of micro-BTS Power Classe
18、s The BSS shall support at least N steps of Static Power Control with respect to the declared output power. N shall at least cover the range O to 5. Static Power Level O = The maximum power declared by the manufacturer. Static Power Level O shall have a tolerance of +/-2dB under normal conditions an
19、d +/-2.5dB under extreme conditions. Static power control shall allow the RF output power to be reduced from its maximum level in at least 6 steps of nominally 2dB with a tolerance of +/-ldB referenced to the previous level. In addition, the actual absolute output power of each static RF power step
20、(N) shall be 2*N dB below the absolute output power at Static Power Level O with a tolerance of +/-3dB under normal conditions and +/- 4dB under extreme conditions. In addition to the Static Power Control levels the BSS may utilise up to M steps of dynamic Downlink Power Control. M can have an upper
21、 limit of O to 15 . Dynamic Downlink power control shall allow the RF output power to be reduced from Static Power Level O in M steps with a step size of 2dB with a tolerance of +/-1.5dB referenced to the previous level. Each dynamic Downlink Power Control level shall have a tolerance of +/-3dB unde
22、r normal conditions and +/-4dB under extreme conditions. This shall be referenced to the absolute power of 2MdB below Static Power Level O. Requirement reference GSM 05.05 Section 4.1.2 ETSI GSM+LLmZL 94 W 3400855 0004399 53T D Page 14 GSM 11.21 v.4.1.0 October 1994 4.1.6.4 lranrmltted RF carrbr pow
23、er wrsus time lest purpose To verify: 1) 2) The stability limits. 3) The time during which the transmitted power envelope must be stable (the useful part of the time slot). The maximum output power when nominally off between time slots. It is not the purpose of this test to measure the detail of the
24、 power ramps, this is measured as adjacent channel power in section 4.1.6.5. lest case The Manufacturer shall declare how many TRXs the BSS supports, and declare any TRXs which are a dedicated BCCH carrier: 1 TRX: The BSS shall not be tested. 2 TRX: One carrier shall be configured to support the BCC
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