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A 2-D Interpolation-Based QRD Processor With Partial Layer Mapping for MIMO-OFDM Systems

机译:一种基于二维插值的具有部分层映射的QRD处理器,用于MIMO-OFDM系统

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The rapid growth of wideband communication devices, such as smart phones and tablets, has dramatically increased the throughput requirements of communication systems. Multiple-input multiple-output orthogonal frequency division multiplexing (MIMO-OFDM) has been widely recognized as the potential technology to achieve this requirement. The main implementation bottleneck lies in the high-complexity MIMO detections for thousands of subcarrier symbols in the MIMO-OFDM receiver. The QR decomposition processor is an essential preprocessing module for many MIMO decoders because the QR decomposition helps improve the decoding efficiency significantly by providing the tree-search structure for the MIMO detection algorithms. This paper presents a low-complexity 2-D interpolation-based QR decomposition (2-D-IQRD) with a partial layer mapping scheme to reduce computational complexity. The proposed 2-D-IQRD processor also adopts a scaling technique to reduce the signal dynamic-range problem in the traditional IQRD algorithm. These proposed methods successfully address the limitation of the interpolation-based QRD processor caused by successive multiplications in layer mapping and inverse layer mapping. Therefore, the 2-D interpolation can greatly reduce complexity and improve the BER performance of fast-fading MIMO-OFDM systems. This paper designs and implements the proposed architecture using a 90-nm CMOS technology. The implementation results show that the proposed architecture achieves 45.6 MQRD/s.
机译:诸如智能电话和平板电脑之类的宽带通信设备的迅速发展,极大地提高了通信系统的吞吐量要求。多输入多输出正交频分复用(MIMO-OFDM)已被广泛认为是实现此要求的潜在技术。主要的实现瓶颈在于MIMO-OFDM接收机中数千个子载波符号的高复杂度MIMO检测。 QR分解处理器是许多MIMO解码器必不可少的预处理模块,因为QR分解通过为MIMO检测算法提供树形搜索结构,有助于显着提高解码效率。本文提出了一种基于局部插值映射的低复杂度二维插值QR分解(2-D-IQRD),以降低计算复杂度。提出的2-D-IQRD处理器还采用缩放技术来减少传统IQRD算法中的信号动态范围问题。这些提出的方法成功地解决了由基于插值的QRD处理器在层映射和逆层映射中相继相乘所引起的局限性。因此,二维插值可以大大降低复杂度并提高快速衰落的MIMO-OFDM系统的BER性能。本文使用90纳米CMOS技术设计并实现了建议的体系结构。实施结果表明,所提出的体系结构达到了45.6 MQRD / s。

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