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Adaptive switching detection algorithm for iterative-MIMO systems to enable power savings

机译:迭代MIMO系统的自适应开关检测算法可实现节能

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摘要

This paper attempts to tackle one of the challenges faced in soft input soft output Multiple Input Multiple Output (MIMO) detection systems, which is to achieve optimal error rate performance with minimal power consumption. This is realized by proposing a new algorithm design that comprises multiple thresholds within the detector that, in real time, specify the receiver behavior according to the current channel in both slow and fast fading conditions, giving it adaptivity. This adaptivity enables energy savings within the system since the receiver chooses whether to accept or to reject the transmission, according to the success rate of detecting thresholds. The thresholds are calculated using the mutual information of the instantaneous channel conditions between the transmitting and receiving antennas of iterative-MIMO systems. In addition, the power saving technique, Dynamic Voltage and Frequency Scaling, helps to reduce the circuit power demands of the adaptive algorithm. This adaptivity has the potential to save up to 30% of the total energy when it is implemented on Xilinx®Virtex-5 simulation hardware. Results indicate the benefits of having this "intelligence" in the adaptive algorithm due to the promising performance-complexity tradeoff parameters in both software and hardware codesign simulation.
机译:本文试图解决软输入软输出多输入多输出(MIMO)检测系统面临的挑战之一,即以最小的功耗实现最佳的误码率性能。这是通过提出一种新的算法设计来实现的,该算法设计包括检测器内的多个阈值,这些阈值可根据慢速和快速衰落条件下的当前信道实时指定接收器行为,从而使其具有适应性。由于接收器根据检测阈值的成功率来选择是接受还是拒绝传输,因此这种适应性可以节省系统内的能量。使用迭代式MIMO系统的发射天线和接收天线之间的瞬时信道条件的互信息来计算阈值。此外,节电技术(动态电压和频率缩放)有助于降低自适应算法的电路功耗要求。当在Xilinx®Virtex-5仿真硬件上实施时,这种适应性可能节省多达30%的总能量。结果表明,由于在软件和硬件代码符号仿真中都有希望的性能复杂性折衷参数,因此在自适应算法中具有这种“智能”的好处。

著录项

  • 来源
    《Radio Science》 |2014年第12期|1065-1079|共15页
  • 作者单位

    Institute for Digital Communications, School of Engineering, University of Edinburgh, Edinburgh, UK;

    Institute for Digital Communications, School of Engineering, University of Edinburgh, Edinburgh, UK;

    Institute for Digital Communications, School of Engineering, University of Edinburgh, Edinburgh, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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