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RESEARCH, DEVELOPMENT AND TESTING OF A FAULT-TOLERANT FPGA-BASED SEQUENCER FOR CUBESAT LAUNCHING APPLICATIONS

机译:基于容错FPGA的CUBESAT启动应用程序的序列发生器的研究,开发和测试

摘要

This thesis concerns various means of implementing fault tolerance in logic for use in a general payload processor design. The first specific application of this research is a sequencer developed for deploying CubeSats. The sequencer shall be capable of the timing and accurate deployment of multiple CubeSats from a host spacecraft and shall have the capability for quick reconfiguration prior to launch. This research considers a variety of hardware for suitability toward sequencer construction; field programmable gate arrays (FPGAs) are chosen as the primary device. The design further evolves to selection of the Actel ProASIC3 series of FPGAs. Initial logic test configurations are implemented on a development kit with analysis of results provided. Fault-tolerant techniques are compared with a set of experiments to determine optimum resource utilization and timing schemes. Triple modular redundancy (TMR) is selected as the technique for fault-tolerant logic implementation in the sequencer. Preliminary test boards are built via schematic design and printed circuit board layout. The manufacturing, integration and testing of the ProASIC3 Test Board is fully discussed. A follow-on flight prototype board is designed with more extensive hardware allowing for implementation of fault-tolerant techniques and future growth capability. Recommendations for future work are discussed.
机译:本论文涉及在通用有效载荷处理器设计中使用的在逻辑中实现容错的各种方法。这项研究的第一个特定应用是为部署CubeSat而开发的定序器。定序器应能够对来自主机航天器的多个CubeSat进行定时和准确部署,并应具有在发射前快速重新配置的能力。这项研究考虑了各种硬件,以适合定序器的构建。选择现场可编程门阵列(FPGA)作为主要设备。该设计进一步发展为选择Actel ProASIC3系列FPGA。初始逻辑测试配置在开发套件上进行,并提供结果分析。将容错技术与一组实验进行比较,以确定最佳的资源利用率和时序方案。选择三重模块冗余(TMR)作为定序器中的容错逻辑实现技术。初步测试板通过原理图设计和印刷电路板布局构建。全面讨论了ProASIC3测试板的制造,集成和测试。后续飞行原型板设计有更广泛的硬件,允许实施容错技术和未来的增长能力。讨论了对未来工作的建议。

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    Parobek Lucas S.;

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  • 年度 2013
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