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Algorithms and Architectures of Energy-Efficient Error-Resilient MIMO Detectors for Memory-Dominated Wireless Communication Systems

机译:存储器为主的无线通信系统中的高能效防错MIMO检测器的算法和架构

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In a broadband MIMO-OFDM wireless communication system, embedded buffering memories occupy a large portion of the chip area and a significant amount of power consumption. Due to process variations of advanced CMOS technologies, it becomes both challenging and costly to maintain perfectly functioning memories under all anticipated operating conditions. Thus, Voltage over Scaling (VoS) has emerged as a means to achieve energy efficient systems resulting in a tradeoff between energy efficiency and reliability. In this paper we present the algorithm and VLSI architecture of a novel error-resilient K-Best MIMO detector based on the combined distribution of channel noise and induced errors due to VoS. The simulation results show that, compared with a conventional MIMO detector design, the proposed algorithm provides up-to 4.5 dB gain to achieve the near-optimal Packet Error Rate (PER) performance in the 4 $times$ 4 64-QAM system. Furthermore, based on experimental results, when jointly considering the detector and memory power consumption, the proposed resilient scheme with VoS memory can achieve up to 32.64% savings compared to the conventional K-Best detector with perfect memory.
机译:在宽带MIMO-OFDM无线通信系统中,嵌入式缓冲存储器占据了芯片面积的很大一部分,并且消耗了大量的功率。由于先进的CMOS技术的工艺变化,在所有预期的工作条件下保持功能良好的存储器变得既具有挑战性,又带来昂贵的成本。因此,规模缩放电压(VoS)已经成为实现节能系统的一种手段,从而导致了能源效率和可靠性之间的权衡。在本文中,我们基于信道噪声和VoS引起的误码的组合分布,提出了一种新型的具有容错能力的K-Best MIMO检错器的算法和VLSI架构。仿真结果表明,与传统的MIMO检测器设计相比,该算法可提供高达4.5 dB的增益,以在4×4 64-QAM系统中实现接近最佳的分组错误率(PER)性能。此外,基于实验结果,当综合考虑检测器和存储器的功耗时,与具有完美存储的传统K-Best检测器相比,拟议的具有VoS存储器的弹性方案最多可节省32.64%。

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