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Iterative Inter-Cell Interference Cancellation Receiver for LDPC-Coded MIMO Systems

机译:LDPC编码MIMO系统的小区间迭代干扰消除接收机

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In an ultra-dense cellular system, users at the cell-edge are susceptible to inter-cell interference (ICI) because of the overlap of the spectrum. To combat ICI, this paper investigates two iterative ICI cancellation approaches for low-density parity-check-coded multiple-input multiple-output systems. One approach includes separate signal and interference detectors; the other one employs a joint detector for both the desired signal and interference. The joint-detector approach achieves a comparable error-rate performance with only half the computational complexity when compared to the separate-detector counterpart. An iterative ICI cancellation receiver using the joint detector is proposed and implemented. Its hardware efficiency is significantly enhanced by leveraging an efficient coordinate rotation digital computer based processing array, an adaptive input-range scaling scheme, and an area-efficient log-likelihood ratio calculator. The iterative ICI cancellation receiver is flexible enough to support multiple modulations of up to 256-QAM. The maximum gross throughput is 1.24 Gb/s for a 4x4 256-QAM configuration in a 40-nm CMOS technology. The proposed iterative receiver outperforms the current state-of-the-art works in both the throughput-to-area ratio and the normalized energy metrics, despite the added ICI capability.
机译:在超密集蜂窝系统中,由于频谱重叠,位于蜂窝边缘的用户容易受到小区间干扰(ICI)。为了与ICI对抗,本文研究了针对低密度奇偶校验编码的多输入多输出系统的两种迭代ICI抵消方法。一种方法包括单独的信号和干扰检测器。另一个采用联合检测器来检测所需信号和干扰。与单独的检测器相比,联合检测器方法仅以一半的计算复杂度即可实现可比的错误率性能。提出并实现了使用联合检测器的迭代ICI抵消接收器。通过利用基于坐标旋转数字计算机的高效处理阵列,自适应输入范围缩放方案和面积有效的对数似然比计算器,可显着提高其硬件效率。迭代ICI抵消接收器足够灵活,可以支持高达256-QAM的多种调制。对于40纳米CMOS技术的4x4 256-QAM配置,最大总吞吐量为1.24 Gb / s。尽管增加了ICI功能,但所提出的迭代式接收机在吞吐量与面积之比和归一化的能量度量方面都优于当前的最新技术。

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