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Wireless Connections within Spacecrafts to Replace Wired Interface Buses

机译:宇宙飞船内的无线连接替换有线接口总线

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This paper describes measurement and characterization of radio propagation and transmission-particularly of ultra wideband (UWB) signals-within spacecrafts with a view to partly replacing on-board data buses with wireless connections. Adaption of wireless technologies within spacecraft could contribute to reduction of cable weight and resulting launching costs, and more reliable connections at rotary, moving, and sliding joints. This paper presents measurements and characteristics of radio propagation and transmission and addresses the effects of apertures perforated on the outer surface of satellites on the UWB propagation and transmission for low- and high-band UWB within a shield box. Channel responses, spatial distributions of UWB and narrowband propagation gains, delay spreads, and throughputs were derived from measurements. On the effects of apertures, the larger total area of apertures resulted in lower UWB propagation gains, shorter delay spreads, and (slightly) higher link throughput. The propagation study was followed up with experimental evaluation of UWB link throughput within a simulated spacecraft. Commercially off-the-shelf UWB devices were used in the experiments of ultra wideband technology to facilitate a high data rate (e.g. maximum of 400 Mb/s per node attained with SpaceWire, equaling the standards of a wired onboard data bus) and to reduce the fading margin.
机译:本文介绍了无线电传播和传输的测量和表征 - 特别是超宽带(UWB)信号 - 在航天器内,以便部分地用无线连接替换车载数据总线。宇宙飞船内无线技术的适应可能有助于减少电缆重量,并在旋转,移动和滑动接头处产生发射成本和更可靠的连接。本文介绍了无线电传播和变速器的测量和特性,并解决了在屏蔽箱内的低压和高频器UWB的UWB传播和传输上穿孔在卫星外表面上的孔的效果。频道响应,UWB的空间分布和窄带传播增益,延迟扩展和吞吐量来自测量。在孔的效果上,较大的孔径面积导致较低的UWB传播增益,延迟扩展较短,并且(略微)链路吞吐量。随后随访传播研究采用模拟航天器内的UWB链路通量的实验评估。在超宽带技术的实验中使用了商业上的搁板UWB器件,以便于高数据速率(例如,每个节点的最大值为400 MB / s,而是使用太空数据总线的标准)和减少褪色的余量。

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