Design challenges of a highly integrated SDR platform for multiband spacecraft applications in radiation enviroments

J. Budroweit, A. Koelpin
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引用次数: 11

Abstract

Software-Defined Radios (SDR) are already widely-used and often implemented in terrestrial Radio Frequency (RF) and wireless applications. Even the very conservative and slow changing space industry has identified the benefits of reconfigurable radio systems and uses SDRs on satellites and space vehicles. Nevertheless, those systems are mostly inapplicable for lower- and mid-class mission, or are often limited in performance, reliability and are only available for a specific frequency band. This paper presents the approach for a reliable and highly integrated Generic Software Defined-Radio (GSDR) platform design, using state-of-the-art RF transceiver devices to provide multi-band applications on spacecraft. Design challenges under radiation environments for this GSDR platform are discussed and results of a pre-evolution test under selected radiation condition on a prototype are presented.
辐射环境下多波段航天器应用高集成SDR平台的设计挑战
软件定义无线电(SDR)已经广泛应用于地面射频(RF)和无线应用中。即使是非常保守和变化缓慢的航天工业也已经认识到可重构无线电系统的好处,并在卫星和航天飞行器上使用sdr。然而,这些系统大多不适用于中低阶层的任务,或者在性能、可靠性方面往往有限,而且只能用于特定的频带。本文提出了一种可靠和高度集成的通用软件定义无线电(GSDR)平台设计方法,使用最先进的射频收发器设备在航天器上提供多频段应用。讨论了该GSDR平台在辐射环境下的设计挑战,并给出了在选定辐射条件下原型机的预进化测试结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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