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Architecture for reconfigurable MIMO detector and its FPGA implementation

机译:可重配置MIMO检测器的架构及其FPGA实现

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Multiple Input Multiple Output (MIMO) system is a key technology for future high speed wireless communication standards like 802.11n, WIGWAM, and WiMax. These standards require support for multiple modulation and coding schemes. Hence, the receiver hardware should be able to accomodate these schemes preferably on a single reconfigurable architecture. Current MIMO detector implementations are constrained by the throughput and dynamic reconfigurability requirements. This paper presents an FPGA implementation of a novel MIMO detector architecture which addresses these issues. The proposed design is able to reconfigure on the fly without significant latency overhead and delivers quasi-optimal Bit Error Rate(BER). The regularity of the architecture makes it suitable for a highly parallel and pipelined implementation. Our design is implemented on a Xilinx Virtex-4 FPGA, and has a parallelism factor of four with four pipeline stages. Additionally, the design does not use multipliers, and has minimal control overhead(0.3%). Our detector achieves a throughput of 280Mbps for QPSK, 140Mbps for 16-QAM, and 52.5Mbps for 64-QAM. The detector, with a non-processor based control unit, has many qualities of a systolic architecture which makes it highly suitable for ASIC implementation.
机译:多输入多输出(MIMO)系统是802.11n,WIGWAM和WiMax等未来高速无线通信标准的一项关键技术。这些标准要求支持多种调制和编码方案。因此,接收器硬件应该能够优选地在单个可重配置架构上适应这些方案。当前的MIMO检测器实现受到吞吐量和动态可重构性要求的限制。本文介绍了解决这些问题的新型MIMO检测器架构的FPGA实现。所提出的设计能够动态配置,而没有明显的等待时间开销,并提供准最佳误码率(BER)。该体系结构的规则性使其适合于高度并行和流水线的实现。我们的设计在Xilinx Virtex-4 FPGA上实现,并行因子为4,具有四个流水线级。此外,该设计不使用乘法器,并且具有最小的控制开销(0.3%)。我们的探测器的QPSK吞吐量为280Mbps,16-QAM为140Mbps,64-QAM为52.5Mbps。具有基于非处理器的控制单元的检测器具有多种脉动体系结构,使其非常适合ASIC实现。

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