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摘要:
Increasing data bandwidth requirements from spacecraft systems is beginning to pressure existing microwave communications systems. Free-Space optical communications allows for larger bandwidths for lower relative power consumption, smaller size and weight when compared to the microwave equivalent. However optical communication does have a formidable challenge that needs to be overcome before the advantages of the technology can be fully utilized. In order for the communication to be successful the transmitter and receiver terminals need to be pointed with a high accuracy (generally in the order of ≤10 μradians) for the duration of communication. In this paper we present a new concept for the precise pointing of optical communications terminals (termed the Precise Pointing Mechanism). In this new concept we combine the separate pointing mechanisms of a conventional optical terminal into a single mechanism, reducing the complexity and cost of the optical bench. This is achieved by electromagnetically actuating the whole telescope assembly in 6 degrees-of-freedom with an angular resolution of less than ±3 μradians within a 10 (Az. El.) field of view and linear resolution of ±2 μm. This paper presents the new pointing mechanism and discusses the modelling, simulation and experimental work undertaken using the bespoke engineering model developed.
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篇名 A Magnetically Levitated Precise Pointing Mechanism for Application to Optical Communication Terminals
来源期刊 光学与光子学期刊(英文) 学科 医学
关键词 Optical COMMUNICATIONS Magnetic LEVITATION Control POINTING Active ANTI-VIBRATION
年,卷(期) 2012,(2) 所属期刊栏目
研究方向 页码范围 85-97
页数 13页 分类号 R73
字数 语种
DOI
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研究主题发展历程
节点文献
Optical
COMMUNICATIONS
Magnetic
LEVITATION
Control
POINTING
Active
ANTI-VIBRATION
研究起点
研究来源
研究分支
研究去脉
引文网络交叉学科
相关学者/机构
期刊影响力
光学与光子学期刊(英文)
月刊
2160-8881
武汉市江夏区汤逊湖北路38号光谷总部空间
出版文献量(篇)
433
总下载数(次)
0
总被引数(次)
0
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