期刊文献+

PID算法对星间光通信ATP子系统跟踪控制带宽的影响研究 被引量:6

Research on the influence of PID to ATP control width in Inter-satellite optical communications
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摘要 研究了PID算法对星间光通信ATP子系统跟踪控制带宽的影响,以尽可能的优化系统结构提高系统的跟踪性能,对实际ATP系统的工程化提供必要的理论依据。 ATP system with high performance is necessary to establish the stable Inter-satellite Optical Communications links. To optimize control structure and improve tracking performance, what influence to will happen when PID parameters changes is studied in this dissertation. The simulation results are testified by parameters adjustment experiment in practical coarse tracking system.
出处 《光通信技术》 CSCD 北大核心 2006年第8期58-60,共3页 Optical Communication Technology
关键词 星间光通信 ATP PID 3DB带宽 Inter-satellite optical communications ATP PID 3dB width
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参考文献6

  • 1LUO T,HU Y.Vibration suppression techniques for optical inter-satellite communications[C].Communications,Circuits and Systems and West Sino Expositions,IEEE 2002 International Conference,2002,1 (29):585-589.
  • 2罗彤,李贤,胡渝.星间光通信中振动抑制的研究[J].宇航学报,2002,23(3):77-80. 被引量:11
  • 3CHAN V W S.Optical Space Communications[J].IEEE journal on selected topics in Quantum Electronics,2000,6(6):959-975.
  • 4HAYEN W,MCCULLOUGH T,RETH A.Wide-band precision two-axis beam steerer tracking servo design and test results[C].SPIE Free-Space Laser Communication Technologies,1993,1866(2):271-279.
  • 5PANNU S,CHANG C,MULLER R S.Closed-loop feedback-control system for improved tracking in magnetically actuated micromirrors[C].IEEE/LEOS Conference on Optical MEMS,2000,107-108.
  • 6ANGEL P A,GEROARDO O G,RACHO C.Fine pointing control for optical communications[C].IEEE Aerospace Conference,2001,3 (3):1541-1550.

二级参考文献13

  • 1[8]Hayden W,McCullough T,Reth A,Kaufman D. Wide-band precision two-axis beam steerer tracking servo design and test results.SPIE,1993,1866:271-279
  • 2[9]Shinhak Lee,James W Alexander,Muthu Jeganathan. Pointing and Tracking Subsystem Design for Optical Communications Link between the International Space Station and Ground.Free-Space Laser Communication Technologies ⅩⅠⅠ,proc.of SPIE,2000,3932:150-157
  • 3[10]Philip W Young,Lawrence M Germann,Roy Nelson. Pointing,acquisition,and tracking subsystem for space-based laser communications·Optical Technologies for Communication Satellite Applications,proc.of SPIE,1986,616:118-128
  • 4[11]Guy C Baister,Paul V Gatenby,Jeffrey Lewis,Bernard Laurent. Small optical terminal designs with a softmount interface.SPIE,1997,2990:172-182
  • 5[12]Shlomi Arnon,Kopeika N S. Laser Satellite Communication Network-Vibration Effect and Possible Solutions.Proceedings of the IEEE,1997,85(10):1646-1661
  • 6[13]Arnon S,Rotman S,Kopeika N S. Beamwidth and transmitter power adaptive to tracking system performance for free space optical communication.SPIE,1996,2810:176-187
  • 7[1]Paul W Scott,Philip W Young. Impact of temporal fluctuations of signal-to-noise ratio (burst error) on free-space laser communication system design.Optical Technologies for Communication Satellite Applications,proc.of SPIE,1986,616:174-181
  • 8[2]Barry J D,Mecherle G S. Beam pointing error as a significant design parameter for satelliteborne,free-space optical communication systems.Optical Engineering,1985,24(6):1049-1054
  • 9[3]Koepf G A,Peters R,Marshalek R G. Analysis of burst error occurrence on optical intersatellite link (ISL) design·Optical Technologies for Communication Satellite Applications,proc.of SPIE,1986,616:129-136
  • 10[4]Barry J D,Mecherle G S. Communication channel burst errors induced by Gaussian distributed mispointing.Optical Technologies for Communication Satellite Applications,proc.of SPIE,1986,616:137-140

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