REG NASA-LLIS-0410-1996 Lessons Learned Radio Frequency Interference Caused by Multiple Viking Spacecraft in Deep Space Station Antenna Beamwidth (1976).pdf

上传人:dealItalian200 文档编号:1018057 上传时间:2019-03-21 格式:PDF 页数:3 大小:15.27KB
下载 相关 举报
REG NASA-LLIS-0410-1996 Lessons Learned Radio Frequency Interference Caused by Multiple Viking Spacecraft in Deep Space Station Antenna Beamwidth (1976).pdf_第1页
第1页 / 共3页
REG NASA-LLIS-0410-1996 Lessons Learned Radio Frequency Interference Caused by Multiple Viking Spacecraft in Deep Space Station Antenna Beamwidth (1976).pdf_第2页
第2页 / 共3页
REG NASA-LLIS-0410-1996 Lessons Learned Radio Frequency Interference Caused by Multiple Viking Spacecraft in Deep Space Station Antenna Beamwidth (1976).pdf_第3页
第3页 / 共3页
亲,该文档总共3页,全部预览完了,如果喜欢就下载吧!
资源描述

1、Lessons Learned Entry: 0410Lesson Info:a71 Lesson Number: 0410a71 Lesson Date: 1996-06-24a71 Submitting Organization: JPLa71 Submitted by: J.A. RobertsSubject: Radio Frequency Interference Caused by Multiple Viking Spacecraft in Deep Space Station Antenna Beamwidth (1976) Abstract: Mutual interferen

2、ce among the two Viking Orbiters and the two Viking Landers caused a loss of downlink carrier lock and telemetry data several times during the Viking extended mission. The Viking experience showed that the types and magnitude of interference can be adequately analyzed (or determined by test) and tha

3、t the resulting operational constraints can be adequately specified.Description of Driving Event: (Relevant Historical Lesson(s) Learned)The potential for mutual interference among the two Viking Orbiters (on Deep Space Network (DSN) channels 9 and 20, with backup on 16) and the two Viking Landers (

4、both on DSN channel 13) was recognized during the link design and test phase. Multiple vehicle interferences can occur when modulation on the carrier of one Viking channel produces sideband energy, which extends into a second channel. In particular, discrete spectrum ranging produces sideband center

5、ed about 516 kHz clock and its harmonics, and the orbiter high rate telemetry produces sideband energy centered about 240 kHz subcarrier and its harmonics.Compatibility testing was accomplished at Compatibility Test Area 21 (CTA 21). This testing identified the most severe (likely) interference cond

6、ition as false uplink RF acquisition by and out-lock vehicle of the uplink sideband intended for a second vehicle during range acquisition. Loss of downlink RF from the first vehicle would also be experienced at the station, due to the vehicles shift from one-way to two-way mode. Several other condi

7、tions, involving degradation of the RF carrier tracking, ranging link delay measurements, and telemetry signal-to-noise ratio, were also identified. The results of the analysis and testing were stated in a recommendation not to fly the backup channel Provided by IHSNot for ResaleNo reproduction or n

8、etworking permitted without license from IHS-,-,-16 and in various mission rules as to when ranging acquisitions would be possible.Ranging modulation interference to a one-way Orbiter occurred several times during the Viking Extended mission. Downlink carrier lock and telemetry data were lost as pre

9、dicted.Additional Keyword(s): Multiple Mission PlanningReference(s):1. JPL letter 339-FVS;fv Fred Stuhr to Mr. H. R. Kowitz of Viking Project Office of the Langley Research Center of NASA, Oct. 4, 1974, reporting the CTA-21 test results.2. “Deep Space Network to Viking Orbiter Telecommunications Per

10、formance During the Viking Extended Mission, Nov. 1976 Through Feb. 1978“, in DSN Progress Report 42-45, March and April 1978, F. H. J. Taylor.Lesson(s) Learned: 1. The situation of two deep space vehicles in the same ground station antenna beamwidth results in possible mutual RF interactions not pr

11、esent with ordinary single-spacecraft tracking.2. The Viking experience showed that the types and magnitude of interference can be adequately analyzed (or determined by test) and that the resulting operational constraints can be adequately specified.Recommendation(s): Although the Viking situation c

12、ontinued for more than two years, there are shorter periods when vehicles from different projects (for example, Voyager and Galileo) may be less than a few tenths of one degree from one another, as seen from a station. This potential interference must be properly accounted for in each projects frequ

13、ency allocation process and mission design.On Viking there was no operational software available either within the Project or the Deep Space Network to use routinely to predict when such interference would occur. It was therefore necessary to preclude the possibility of interference (by forbidding r

14、anging during critical spacecraft data return sequences) by operational rule. Also, it was necessary to accept occasional interferences and to acquaint the real-time operations people to the “signature“ of these interferences.Evidence of Recurrence Control Effectiveness: N/ADocuments Related to Less

15、on: Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-N/AMission Directorate(s): a71 ScienceAdditional Key Phrase(s): a71 Communication Systemsa71 Flight Equipmenta71 Ground Equipmenta71 SpacecraftAdditional Info: Approval Info: a71 Approval Date: 1996-01-18a71 Approval Name: Carol Dumaina71 Approval Organization: JPLa71 Approval Phone Number: 818-354-8242Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-

展开阅读全文
相关资源
猜你喜欢
相关搜索

当前位置:首页 > 标准规范 > 国际标准 > 其他

copyright@ 2008-2019 麦多课文库(www.mydoc123.com)网站版权所有
备案/许可证编号:苏ICP备17064731号-1