CEPT T L 04-04 E-1988 Harmonisation of 140 MBit s Digital Radio Relay Systems for Operation Below 10 GHz Utilising 64 QAM at About 30 MHz Spacing《统一利用间隔大约为30 MHz的64QAM进行低于10 GHz操作的.pdf
《CEPT T L 04-04 E-1988 Harmonisation of 140 MBit s Digital Radio Relay Systems for Operation Below 10 GHz Utilising 64 QAM at About 30 MHz Spacing《统一利用间隔大约为30 MHz的64QAM进行低于10 GHz操作的.pdf》由会员分享,可在线阅读,更多相关《CEPT T L 04-04 E-1988 Harmonisation of 140 MBit s Digital Radio Relay Systems for Operation Below 10 GHz Utilising 64 QAM at About 30 MHz Spacing《统一利用间隔大约为30 MHz的64QAM进行低于10 GHz操作的.pdf(14页珍藏版)》请在麦多课文档分享上搜索。
1、232b4L4 000bOL9 b TIL 04-04 E Page 1 Recommendation T/L 04-04 (Edinburgh 1988) HARMONISATION OF 140 MBIT/S DIGITAL, RADIO RELAY SYSTEMS FOR OPERATION BELOW 10 GHz UTILISING 64 QAM AT ABOUT 30 MHz SPACING Recommendation proposed by Working Group T/WG 12 “Transmission and multiplexing” (TM) Text of Re
2、commendation adopted by the “Telecommunications” Commission: 1. INTRODUCTION This Recommendation specifies harmonised parameters for digital radio-relay systems with a channel capacity of 140 Mbitls designed to operate in defined bands below 10 GHz utilising approximately 30 MHz spacing between cros
3、spolar channels. Systems using 64 QAM modulation are considered to fulfill this requirement. Parameters specified fall into two categories: (a) Those that are required to provide compatibility between channels from different sources of equipment on the same route, connected either to separate antenn
4、as or to separate polarisations of the same antenna. This category also includes parameters providing compatibility with the existing radio-relay network. (b) Parameters defining the transmission quality of the proposed systems. The task of defining compatibility requirements with analogue systems o
5、n the same hop is made complex by the fact that analogue systems are not harmonised. Compatibility requirements are therefore limited to allowing operation of digital and analogue channels on separate ports of the same antenna. The harmonisation has been limited to specifying IF and RF characteristi
6、cs, limited baseband parameters, space diversity system specification, and antenna/feeder system requirements. All parameters specified apply over the full range of environmental conditions specified for the equipment (see Recommendation T/TR 02-03). System designs which comply with this Recommendat
7、ion may make use of Forward Error Correction (FEC) or Soft Decision Techniques (SDT) as a means to improve the bit error ratio characteristics. It is not intended that this Recommendation should standardise on any particular type of FEC or SDT realisation. It is considered important, however, that f
8、acilities are provided to verify the performance excluding the advantage of FEC or SDT in order that these techniques do not conceal any aspects of the radio system design which may have degradations with respect to nominal performance, or any external iduences that may be present when the system is
9、 installed in an operational environment (e. g. intermodula- tion products in the antenna system, radar interferences etc.). Unless otherwise specified, BERS given in this Recommendation apply in the case where error correction facilities andtor soft decision techniques are enabled. 2. APPLICATIONS
10、The systems considered should be acceptable for use in the portions of existing national networks which operate to high grade performance standards. They should operate in these networks having regard for existing hop lengths, which are considered to be normally up to about 60 km. Hop lengths greate
11、r than this length, up to about 100 km, are used in special applications. An analysis of the expected performance, in therms of severely errored seconds and degraded minutes, of the system defined in this Recommendation can be found in TM4 Report (88)1* part 1. The system design must take account of
12、 interference arising from within the system, from within the network, and interference from outside the network. Methods to take account of this are given in TM4 Report (88)1* part 2, and the related specifications in this Recommendation are based on these methods. The use of space and/or frequency
13、 diversity (both in-band and cross-band) is generally considered to be necessary on large numbers of hops within existing networks, and the need for its provision, and other performance factors are discussed in TM4 Report (88) 1 *. The electrical requirements for antenna/feeder systems are also spec
14、ified in the Recommendation. . * Publication issued by: Ofice de liaison CEPT, Seilerstrasse 22, CH-3008 Berne Edition of January 30, 1989 - 2326434 000b020 2 E TIL 04-04 E Page 2 3. 3.1. 3.2. 3.3. 3,4. 4. 5. 6. 6.1. 6.2. 7. 7.1. FREQUENCY BANDS AND CHANNEL ARRANGEMENTS The systems are required to o
15、perate in the following frequency bands, to the specified CCIR Recommenda- tion on the quoted channel spacings. 4 GHz Recommendation 382.3 with 29 MHz spacing (see also Recommendation 934). The centre gap between transmitters and receivers in Recommendation 382.3 is 68 MHz. Lower 6 GHz Recommendatio
16、n 383.2 with 29.65 MHz spacing and a centre gap of 44.45 MHz. It is recommended that the alternative plan in which channels 8 and 1 operate on opposite polarisations be utilised. 7 GHz A number of frequency channelling plans are in use at 7 GHz, including that given in Report 934 Annex 5. These plan
17、s all make use of 28 MHz channel spacing with centre gaps of 56 MHz and 84 MHz. 8 GHz Recommendation 386.2 Annex 1 with 29.65 MHz spacing and a centre gap of 103.77 MHz. TYPE OF INSTALLATION Only indoor installation is considered necessary. BLOCK DIAGRAM The reference points are shown in Figure 1 (T
18、/L 04-04). These points are reference points only and not necessarily measurement points. GENERAL CHARACTERISTICS Local Oscillator Arrangement It is recommended for all bands considered that the LO frequencies for both transmitters and receivers should be arranged so that for channels in the lower h
19、alf of each half of the band the frequency is higher than the channel-assigned frequency, and for channels in the upper half of each half band the LO frequency is lower than the channel-assigned frequency. Intermediate Frequency An IF of 70 MHz is recommended. TRANSMITTER CHARACTERISTICS Output Powe
20、r Output powers in the range defined in the table below referenced to point B are recommended to be available. Range Class A Class B L 6 GHz 27 to 3O to 34 I 7GHz I 8GHz I 26 to 29 to 34 I All values are given in dBm, and include tolerances. Note. Using present technology, it is considered that Clas
21、s A output powers are achievable using solid-state amplifiers while a TWT may be required to provide the higher powers of Class B. A facility shall be available for reduction of transmit power in steps of no greater than 3 dB down at least to 20 dBm to allow equalization of receive levels. Intercomp
22、atibility between class A transceivers and intercompatibility between class B transceivers have been taken into account. Intercompatibility between class A and class B has not been taken into account. Edition of January 30, 1989 - _. 2326434 000602L 4 i f 140 MHz f 30-45 MHz TIL 04-04 E Page 3 5 dB.
23、 When subjected to this interference, the channel concerned shall respect the BER vs receiver input level specification given in item 9.2. 7.3. Spurious Emissions The levels of spurious emissions from the transmitter, referenced to Point B, are specified in relation to the requirements of the interf
24、erence model given in TM4 Report (88)l part 2. In order to establish a reference measurement for the specification of spurious emissions from the trans- mitter, a carrier wave (CW) signal shall be injected at the upconverter input to produce a measured average power at reference point B equal to the
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