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A Pipeline Interleaved Heterogeneous SIMD Soft Processor Array Architecture for MIMO-OFDM Detection

机译:用于MIMO-OFDM检测的管道交错异构SIMD软处理器阵列架构

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The most promising way to maintain reliable data transfer across the rapidly fluctuating channels used by next generation multiple-input multiple-output communications schemes is to exploit run-time variable modulation and antenna configurations. This demands that the baseband signal processing architectures employed in the communications terminals must provide low cost and high performance with runtime reconfigurability. We present a softcore-processor based solution to this issue, and show for the first time, that such programmable architectures can enable real-time data operation for cutting-edge standards such as 802.lln; furthermore, by exploiting deep processing pipelines and interleaved task execution, the cost and performance of these architectures is shown to be on a par with traditional dedicated circuit based solutions. We believe this to be the first such programmable architecture to achieve this, and the combination of implementation efficiency and programmability makes this implementation style the most promising approach for hosting such dynamic architectures.
机译:在下一代多输入多输出通信方案所使用的快速波动的信道上保持可靠数据传输的最有前途的方法是利用运行时可变调制和天线配置。这要求在通信终端中采用的基带信号处理架构必须提供低成本和高性能以及运行时可重配置性。我们针对此问题提出了一种基于软核处理器的解决方案,并首次证明了这种可编程体系结构可以为诸如802.lln之类的最先进标准实现实时数据操作。此外,通过利用深度处理流水线和交错的任务执行,这些架构的成本和性能与传统的基于专用电路的解决方案相提并论。我们认为,这是第一个实现此目的的可编程体系结构,而实现效率和可编程性的结合使这种实现方式成为托管这种动态体系结构的最有前途的方法。

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