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TID testing and SEE mitigation approach of a long mission life GPS receiver using COTS parts

机译:使用COTS部件进行TID测试,看看长期寿命GPS接收器的缓解方法

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Compared to conventional hardware GPS receivers (GPSR), software GPS receivers are more suitable for research and development. Software GPS receivers can be dynamically programmed in software to reconfigure the characteristics of GPS receiver and new algorithms can easily be integrated without changing the design of the hardware. However, the most important issue for this approach is the computational load. It can be solved by using the high performance state-of-art digital signal processor. The harshness of space environment, such as Total Ionizing Dosage (TID), Single Event Effect (SEE), always cast certain thread to GPS receiver intended for space applications. Common resolution to cope with this thread is the robustness of space grade EEE parts toward those effects along with the protection of circuit design. Nevertheless, the most of the state-of-art EEE parts are not space qualified. In this study, certain Commercial Off The Shelf (COTS) parts such as COTS level RF Front-End (RFFE) and Digital Signal Processor (DSP) along with single event effect (SEE) mitigation circuit design, are considered in the proposed GPSR design for their advantages, such as availability, performance, size, weight and lead time, over regular space qualified ones.
机译:与传统硬件GPS接收器(GPSR)相比,软件GPS接收器更适合研发。软件GPS接收器可以在软件中动态编程,以重新配置GPS接收器的特性,并且可以轻松集成GPS接收器的特性,而无需更改硬件的设计。但是,这种方法最重要的问题是计算负荷。它可以通过使用高性能最先进的数字信号处理器来解决。空间环境的严苛性,例如总电离剂量(TID),单事件效果(参见),始终将某些线程投入到用于空间应用的GPS接收器。应对这个螺纹的共同解决方案是空间级EEE零件对这些效果的鲁棒性以及电路设计的保护。尽管如此,最先进的EEE部分不是空间合格。在本研究中,在提议的GPSR设计中考虑了诸如COTS级RF前端(RFFE)和数字信号处理器(DSP)等架子(COTS)零件的一定的商业商业开发架(COTS)零件以及单事件效果(参见)缓解电路设计为了它们的优点,例如可用性,性能,大小,重量和交货时间,常规空间合格的时间。

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