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Equalisation technique for high mobility OFDM-based device-to-device communications using subblock tracking

机译:使用子块跟踪的基于高移动性OFDM的设备间通信的均衡技术

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摘要

This study presents a `subblock tracking' based equalisation technique for orthogonal frequency division multiplexing (OFDM) based device-to-device communications over high mobility environment. This technique is to use a rectangular-shaped receive window to partition the OFDM block into subblocks rendering the channel response of each subblock to be time-invariant, thereby allowing one to equalise the channel frequency response on each subcarrier of the subblocks simply by a single tap. The equalised signals are then combined to give the final output, where the combination weights are designed to minimise detection errors. The authors mathematically characterise the detection performance by deriving the signal-to-interference ratio as a function of channel-time-variation and the numbers of subblocks. To further enhance the proposed design without imposing computational consumption, a subblock tracking scheme with partially overlapped partition is presented and theoretically analysed. Simulation results demonstrate the advantages this method over the conventional schemes in high mobility environment.
机译:这项研究提出了一种基于“子块跟踪”的均衡技术,用于在高移动性环境下基于正交频分复用(OFDM)的设备间通信。该技术是使用矩形的接收窗口将OFDM块划分为多个子块,从而使每个子块的信道响应为时不变的,从而允许人们仅用一个信号就可以均衡子块的每个子载波上的信道频率响应。点击。然后将均衡后的信号合并以提供最终输出,在此将合并权重设计为最小化检测误差。作者通过推导信干比随信道时变和子块数的变化而在数学上表征了检测性能。为了在不增加计算消耗的情况下进一步增强提出的设计,提出了一种具有部分重叠分区的子块跟踪方案,并进行了理论分析。仿真结果证明了该方法在高移动性环境下优于传统方案的优势。

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