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Instruction set extensions for software defined radio

机译:软件无线电的指令集扩展

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Software defined radios provide programmable solutions for implementing the physical layer processing of multiple communication standards. Mobile devices implementing these standards require high-performance processors to perform high-bandwidth physical layer processing in real time. In this paper, we present instruction set extensions for several important communication algorithms including cyclic redundancy checking, convolutional encoding, Viterbi decoding, turbo decoding, and Reed-Solomon encoding and decoding. We also present hardware designs for implementing these extensions, along with estimates of their area, critical path delay, and power consumption. The performance benefits of these extensions are evaluated using a supercomputer-class vectorizing compiler and the Sandblaster low-power multithreaded processor for software defined radio. The proposed instruction set extensions provide significant performance improvements at relatively low cost, while maintaining a high degree of programmability.
机译:软件无线电为实现多种通信标准的物理层处理提供了可编程的解决方案。实施这些标准的移动设备需要高性能处理器来实时执行高带宽物理层处理。在本文中,我们为几种重要的通信算法提供了指令集扩展,包括循环冗余校验,卷积编码,维特比解码,turbo解码以及Reed-Solomon编码和解码。我们还介绍了用于实现这些扩展的硬件设计,以及它们的面积,关键路径延迟和功耗的估计。这些扩展的性能优势是使用超级计算机级矢量化编译器和用于软件无线电的Sandblaster低功耗多线程处理器进行评估的。所提出的指令集扩展以相对较低的成本提供了显着的性能改进,同时保持了高度的可编程性。

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