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Toward real-time, low-power, highly parallel decoding of the golden code in Mobile WiMAX base stations

机译:在移动WiMAX基站中实现黄金代码的实时,低功耗,高度并行解码

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The Golden Code (GC) is an optimal full-rate full-diversity STBC for 2 × 2 MIMO communication systems. It is incorporated as a STBC communication method in the IEEE 802.16e (WiMAX) standard. However, its high decoding complexity has prevented its implementation in practical systems. Optimal and suboptimal decoders with reduced complexity have been proposed recently and the best ones achieve a worst-case complexity of O(N2) and O(N1S), where N is the underlying QAM constellation size. In this paper, the fast essentially ML decoder with complexity of O(N2) is implemented on a low-power highly parallel SIMD processor, the ClearSpeed CSX700. The SIMD architecture of the CSX700 achieves significant reduction in decoding latency. The implementation in this paper reveals the potential for realtime decoding of the GC with a power consumption that is less than 100 W. This CSX700 solution can find application in the software-defined radio (SDR) of a Mobile WiMAX base station (BS).
机译:黄金代码(GC)是用于2×2 MIMO通信系统的最佳全速率全分集STBC。它被并入IEEE 802.16e(WiMAX)标准中作为STBC通信方法。然而,其高解码复杂度阻止了其在实际系统中的实现。最近已经提出了具有降低的复杂度的最优和次优解码器,最好的解码器实现了O(N2)和O(N1S)的最坏情况下的复杂度,其中N是基础QAM星座图的大小。在本文中,复杂度为O(N2)的快速本质上为ML的解码器是在低功耗高度并行SIMD处理器ClearSpeed CSX700上实现的。 CSX700的SIMD架构显着减少了解码延迟。本文中的实现揭示了功耗小于100 W的GC实时解码的潜力。该CSX700解决方案可以在移动WiMAX基站(BS)的软件定义无线电(SDR)中找到应用。

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