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首页> 外文期刊>電子情報通信学会技術研究報告. 宇宙·航行エレクトロニクス. Space, Aeronautical and Navigational Electronics >Experimental Evaluation of Ultra Wideband Wireless Transmission for Replacing Wired Interface Buses in Spacecrafts
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Experimental Evaluation of Ultra Wideband Wireless Transmission for Replacing Wired Interface Buses in Spacecrafts

机译:超宽带无线传输替代航天器有线接口总线的实验评估

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Experimental evaluation of ultra wideband (UWB) wireless transmission was carried out with a view to replacing wired interface buses in spacecrafts. Application of wireless technologies within the spacecrafts could contribute to reduction in cable weight (and launching cost as a result), reduction in the cost of manufacture, more flexibility in layout of spacecraft subsystems, and reliable connections at rotary, moving, and sliding joints. However, multipath propagation in semi-closed conductive enclosures, such as spacecrafts, restricts the link performance. This paper addresses the effects of apertures perforated on the outer surface of satellites on the UWB propagation and transmission for low- (4.2 - 4.8 GHz) and high-band (7.4 - 7.9 GHz) UWB. The larger total area of apertures resulted in lower UWB propagation gains, shorter delay spreads, and (slightly) higher link throughput.
机译:为了替代航天器中的有线接口总线,进行了超宽带(UWB)无线传输的实验评估。无线技术在航天器中的应用可能有助于减轻电缆重量(并因此降低发射成本),降低制造成本,在航天器子系统布局方面更具灵活性以及在旋转,移动和滑动接头处可靠连接。但是,在半封闭的导电外壳(如航天器)中的多径传播会限制链路性能。本文讨论了在低(4.2-4.8 GHz)和高频段(7.4-7.9 GHz)UWB上,卫星外表面穿孔的孔径对UWB传播和传输的影响。较大的开口总面积导致较低的UWB传播增益,较短的延迟扩展以及(略)较高的链路吞吐量。

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