ITU-R S 1522-1-2005 Impact of loss of synchronization recovery time onavailability in hypothetical reference digital paths《在假设参考数字通路中同步和调速恢复损失在可用性上的影响ITU-R 73 4》.pdf
《ITU-R S 1522-1-2005 Impact of loss of synchronization recovery time onavailability in hypothetical reference digital paths《在假设参考数字通路中同步和调速恢复损失在可用性上的影响ITU-R 73 4》.pdf》由会员分享,可在线阅读,更多相关《ITU-R S 1522-1-2005 Impact of loss of synchronization recovery time onavailability in hypothetical reference digital paths《在假设参考数字通路中同步和调速恢复损失在可用性上的影响ITU-R 73 4》.pdf(19页珍藏版)》请在麦多课文档分享上搜索。
1、 Rec. ITU-R S.1522-1 1 RECOMMENDATION ITU-R S.1522-1 Impact of loss of synchronization recovery time onavailability in hypothetical reference digital paths (Question ITU-R 73/4) (2001-2005) Scope Service restoration time is an important factor that must be taken into consideration when determining t
2、he performance requirements of the service. This Recommendation gives the typical C/(N + I ) level when considering the loss of synchronization, the typical recovery times and sych loss threshold. The ITU Radiocommunication Assembly, considering a) that the unavailability of a hypothetical reference
3、 digital path (HRDP) is determined by the combined effects of equipment and link availability; b) that in some instances equipment unavailability is not due to equipment failure; c) that Recommendation ITU-R S.521 specifies that HRDPs can include functions such as: demodulation/modulation, error cor
4、rection, buffer and processing which may be implemented in customer terminal or earth station equipment; d) that HRDPs may support such applications, as MPEG-2, which contain sequentially layered coding schemes that may include among other things: address security, data compression, and error correc
5、tion; e) that HRDPs may also include digital applications employing other modulation and coding techniques such as quadrature phase shift keying (QPSK), octaphase shift keying (8-PSK), quadrature amplitude modulation (QAM), 1/2, 3/4 rate forward error correction (FEC), Reed-Solomon (RS), turbo codin
6、g etc.; f) that such applications, after loss of signal, may take a significant time to recover after signal restoration; g) that Recommendation ITU-R S.579 indicates that a link is considered to be unavailable when the received digital signal timing alignment (or synchronization) is lost for 10 con
7、secutive seconds or more. Those 10 s are considered to be unavailable time and that period continues until timing alignment (or synchronization) is restored for 10 consecutive seconds; h) that Recommendation ITU-R S.579 defines availability and unavailability of an HRDP (which may include elements o
8、f considering c) above); j) that synchronization in the satellite HRDP may also affect the loss of synchronization and recovery time of higher protocol layers in the hypothetical reference connection (HRX); k) that freeze frame degradation to MPEG-2 receivers occur when error blocks appear in the vi
9、deo image and can be considered as unavailability, 2 Rec. ITU-R S.1522-1 recommends 1 that recovery times should be taken into account when determining availability requirements for digital decoders with complex synchronization schemes which are susceptible to short periods of signal degradation due
10、 to propagation or interference (see Annex 2); 2 that sensitive digital decoders, that are configured as in recommends 1, should be used in links which have been designed to ensure that statistical sources of interference will not cause additional equivalent link noise temperature increases resultin
11、g in loss of synchronization; 3 that the C/(N + I ) levels given in Table 1 should be used when considering the loss of synchronization for typical digital demodulator/decoders employing various modulation and coding techniques for systems with data rates of 34 Mbit/s or less; TABLE 1 Typical C/(N +
12、 I ) levels when considering the loss of synchronization* Modulation and coding C/(N + I ) (dB) QPSK rate 1/2 3.5 QPSK rate 3/4 5.3 QPSK rate 7/8 6.0 8-PSK 8.1 16-QAM 11.0 * Taking into account the measured data in Annex 4. 4 that in cases where the minimum performance objectives are below the value
13、s indicated in recommends 3, the threshold for loss of synchronization is assumed to be 1 dB below the degraded performance objective; 5 that for digital demodulator/decoders, recovery times given in Table 2 should be used when determining the unavailability due to loss of synchronization in an HRDP
14、 employing such digital demodulator/decoders; 6 that for applications using MPEG-2 receivers, error blocks will occur in the video image at threshold level higher than the level for synchronization shown in Table 1 by 0.3 dB for QPSK 1/2-RS rate coding and 0.6 dB for QPSK 3/4-RS and 7/8-RS rate codi
15、ng (see Annex 1). NOTE 1 The time duration and frequency of occurrence of interfering signals can contribute to the determination of the allowable maximum interference level. It is observed that multiple short interference events can result in periods of unavailability of longer duration than those
16、periods caused by fewer long events (see Annex 3). This effect and the results of short duration ( 1 s) interference events are subjects of further study. NOTE 2 The impact of the loss of synchronization in the satellite HRDP on the higher layer protocol levels in an HRX is a subject of further stud
17、y. NOTE 3 Table 2 is derived from the latest available, limited set of data as given in Annex 4 and is provisional pending further studies. Rec. ITU-R S.1522-1 3 TABLE 2 (see Note 3) Maximum of measured recovery times Modulation and coding Carrier bit rate Recovery time (s) 64 kbit/s 40 QPSK rate 1/
18、2 FEC 2 Mbit/s 4.5 64 kbit/s 19.8 2 Mbit/s 6 8 Mbit/s 9.3 QPSK rate 3/4 FEC 34 Mbit/s 2.3 2 Mbit/s 3.1 8 Mbit/s 9.1 8-PSK rate 2/3 FEC with (201,219) RS coding 34 Mbit/s 4.0 Annex 1 Considerations for HRDPs when implemented for providing services whose availability are sensitive to recovery time aft
19、er loss of synchronization 1 Introduction and purpose The synchronization behaviour of several different classes of receivers were examined based on measurements performed or information supplied by earth station receiver manufacturers. The objectives of the investigation were to determine the inter
20、ference duration and the power level required to cause the receiver to lose synchronization. For each receiver investigated, the degradation level and length of time necessary to cause loss of synchronization were determined. Additionally, the amount of time to reacquire synchronization for each rec
21、eiver was determined. The results were then quantified so as to determine the threshold for loss of synchronization that could be applicable for all geostationary-satellite orbit (GSO) fixed-satellite service (FSS) earth station receivers. 2 Digital video and audio receivers A typical MPEG-2 digital
22、 video and audio receiver is described in Annex 2 along with its performance and discussion of the test results. The test results indicate that a satellite channel of the type tested above and implemented, using QPSK concatenated 1/2 RS or 7/8 RS convolutional coding and operating at a 1 1010bit err
23、or ratio (BER) would lose synchronization if the noise is increased 2.2 dB for a period of 1 to 2 s. Assuming nominal C/(N + I ) levels were restored after loss of synchronization, the equipment would require an additional 4 to 8 s to return to normal operation. 4 Rec. ITU-R S.1522-1 It was noted th
24、at error blocks occur in the received image at a threshold level higher than the synchronization loss level. MPEG-2 video is considered to be unavailable when error blocks are seen in the video image. For the QPSK 1/2 rate coded MPEG-2 signal, error blocks occurred at a threshold C/N that was 0.3 dB
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