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An RLS Tracking and Iterative Detection Engine for Mobile MIMO-OFDM Systems

机译:用于移动MIMO-OFDM系统的RLS跟踪和迭代检测引擎

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摘要

This paper presents a tracking and detection engine for 2 2 spatial-multiplexing multiple-input multiple-output orthogonal frequency division multiplexing (MIMO-OFDM) systems under highly time-selective fading channels. A recursive least-squares (RLS) adaptive algorithm is adopted to track time-varying channel frequency response. Besides, iterative MIMO signal detection is used, including inter-carrier interference (ICI) cancellation, to enhance system performance. To avoid error propagation in the decision-directed RLS adaptation, ordered-selection mechanism and signal strength criteria are incorporated so that more reliable detection results can be selected for calculating channel statistics. The scheduling strategies and hardware reduction techniques are proposed for implementation of the computation-intensive RLS adaptive algorithm and ICI cancellation. This baseband processor has been fabricated in 90 nm CMOS technology and has 1023K gates. At the nominal operating frequency of 15.36 MHz, it provides throughput of 76.8 Mbps with 64-QAM up to 240 Km/hr. For constellation of 16-QAM and QPSK, the mobility of 360 Km/hr is supported. The power consumption is 11.8 mW at 0.7 V supply voltage. The operating frequency can be raised up to 103 MHz to offer 515 Mbps throughput with power consumption of 202 mW at 1.2V.
机译:本文提出了一种在高时间选择性衰落信道下用于2 2空间复用多输入多输出正交频分复用(MIMO-OFDM)系统的跟踪和检测引擎。采用递归最小二乘(RLS)自适应算法跟踪时变信道频率响应。此外,还使用迭代MIMO信号检测(包括载波间干扰(ICI)消除)来增强系统性能。为了避免错误在决策指导的RLS适应中传播,结合了有序选择机制和信号强度标准,以便可以选择更可靠的检测结果来计算信道统计信息。提出了用于实现计算密集型RLS自适应算法和ICI抵消的调度策略和硬件缩减技术。该基带处理器采用90 nm CMOS技术制造,具有1023K门。在标称工作频率为15.36 MHz的情况下,它在高达240 Km / hr的速率下以64-QAM提供76.8 Mbps的吞吐量。对于16-QAM和QPSK星座,支持360 Km / hr的移动性。在0.7 V电源电压下的功耗为11.8 mW。工作频率可以提高到103 MHz,以提供515 Mbps的吞吐量,在1.2V时的功耗为202 mW。

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