Hardware and software implementations of an MMSE equalizer for MIMO-OFDM based WLAN

O. Paker, K. van Berkel, K. Moerman
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引用次数: 7

Abstract

Communication over a MIMO (multiple-input-multiple-output) channel promises several advantages: increase in channel capacity, reduced transmit power, greater coverage, and improved link robustness. The minimum mean squared error equalizer (MMSE) is a potential algorithm in addressing the MIMO detection challenge. This paper presents four implementations for the computation of the MMSE equalizer coefficients. The studied options are: (1) a general-purpose microprocessor (ARM926EJ-S); (2) a traditional general purpose DSP (RD16024); (3) an embedded vector processor (EVP/sub 16/); and (4) a dedicated hardware solution. We show that, the equalizer requires acceleration for real-time processing. In order to obtain a low cost, flexible multi-standard WLAN baseband implementation, EVP/sub 16/ is the only feasible solution among the four studied.
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基于MIMO-OFDM的无线局域网MMSE均衡器的硬件和软件实现
通过MIMO(多输入多输出)信道进行通信有几个优点:增加信道容量、降低发射功率、扩大覆盖范围和改进链路健壮性。最小均方误差均衡器(MMSE)是解决MIMO检测挑战的一种潜在算法。本文给出了四种计算MMSE均衡器系数的实现。研究的选项是:(1)通用微处理器(ARM926EJ-S);(2)传统通用DSP (RD16024);(3)嵌入式矢量处理器(EVP/sub 16/);(4)专用硬件解决方案。我们表明,均衡器需要加速实时处理。为了获得低成本、灵活的多标准WLAN基带实现,EVP/sub 16/是研究的四种方案中唯一可行的方案。
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