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VLSI architecture for soft-output tuple search sphere decoding

机译:软输出元组搜索球体解码的VLSI架构

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High detection complexity is known to be one of the major challenges in MIMO communications based on spatial multiplexing. Tuple Search Detector (TSD) was recently introduced, significantly reducing detection complexity in comparison to conventional algorithms while achieving close to full max-log-APP BER performance. Irregular control flow and sequential nature of depth-first-based detectors frustrate efficient application of parallelization techniques, typically leading to inefficient realizations. This work presents a novel TSD implementation, based on a scalable and parallelizable pipelined ASIP architecture. The proposed VLSI design is implemented for 4×4 MIMO transmission using 64-QAM constellation on 65-nm CMOS technology. In low SNR scenarios, proposed detector achieves 403.6 Mbps throughput at 454 MHz clock frequency. TSD can be moreover adjusted according to transmission conditions, reaching >1 Gbps. A silicon area of 0.14 mm2 (98.9 kGEs) is occupied by the TSD core, reporting low power dissipation (57.94 mW) under typical case operating conditions. Proposed detector implementation achieves close to full max-log-APP BER performance and high detection throughput with reasonable hardware complexity, by far outperforming state-of-the-art realizations.
机译:已知高检测复杂性是基于空间复用的MIMO通信中的主要挑战之一。最近引入了元组搜索检测器(TSD),与传统算法相比,显着降低了检测复杂性,同时实现了接近完整的最大程度的应用程序的性能。深度第一探测器的不规则控制流程和顺序性令人沮丧的平行化技术的高效应用,通常导致效率低下的实现。这项工作提出了一种基于可扩展和并行流水线架构的新型TSD实现。所提出的VLSI设计在65-NM CMOS技术上使用64 QAM星座实现了4×4 MIMO传输。在低SNR场景中,所提出的探测器以454 MHz时钟频率达到403.6 Mbps吞吐量。此外,可以根据传输条件调整TSD,达到> 1 Gbps。 TSD核心占据0.14mm 2 (98.9 kges)的硅面积,在典型的情况下报告低功耗(57.94 mw)。拟议的探测器实现达到完全最大的最大值 - 应用程序的性能和具有合理的硬件复杂性的高检测吞吐量,到目前为止优于最先进的实现。

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