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Design and Implementation of Power-Efficient K-Best MIMO Detector for Configurable Antennas

机译:可配置天线的高效K-Best MIMO检测器的设计与实现

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摘要

In this brief, a power-efficient multiple-input multiple-output (MIMO) detector that can flexibly support multiple antenna configurations and modulations is presented. This detector uses a sorting-free K-best algorithm named distributed K-best (DKB) algorithm and successive interference cancellation (SIC) to decrease computational complexity. The DKB and SIC schemes are designed as several elementary building blocks. Then, the antenna configurable architecture can be flexibly constructed by these elementary blocks. The multistage hardware architecture is proposed to achieve that only clock cycles are required to find out the best candidates, and the sorting circuit for the conventional K-best algorithm is avoided in our design. In addition, a shift multiplier which simply uses bit shift and additions is applied to replace the conventional multiplier for further reducing power consumption. The proposed configurable MIMO detector has been fabricated in 90-nm CMOS technology with core area of 0.7744 . For 88, 64-QAM, and configuration, the proposed chip achieves 489-Mb/s throughput rate with 17-mW power consumption at 102-MHz operating frequency and 1 V supply voltage. The performance results show that the proposed design has better power efficiency and antenna configurability than other related works.
机译:在本简介中,提出了一种可以灵活支持多种天线配置和调制的省电多输入多输出(MIMO)检测器。该检测器使用称为排序K-最佳(DKB)算法的无排序K-最佳算法和连续干扰消除(SIC)来降低计算复杂性。 DKB和SIC方案被设计为几个基本构件。然后,可以通过这些基本模块灵活地构建天线可配置架构。提出了多级硬件架构,以实现仅需时钟周期即可找到最佳候选,并且在我们的设计中避免了传统K-best算法的排序电路。另外,仅使用移位和加法的移位乘法器被用来代替常规乘法器,以进一步降低功耗。拟议的可配置MIMO检测器已采用90nm CMOS技术制造,核心面积为0.7744。对于88、64-QAM和配置,所建议的芯片在102 MHz的工作频率和1 V的电源电压下可实现489 Mb / s的吞吐速率和17 mW的功耗。性能结果表明,所提出的设计具有比其他相关工作更好的功率效率和天线可配置性。

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