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On implementing sphere decoding algorithms in LTE-A uplink with the presence of CFO

机译:在存在CFO的情况下在LTE-A上行链路中实现球面解码算法

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To facilitate the engineering implementation of a specific detection algorithm for practical MIMO systems, it is important to know how its performance changes with certain system parameters. In this paper, we evaluate the performance of sphere decoding (SD) algorithms which fall into the category of reduced-complexity maximum likelihood (ML) algorithms, with minimum mean-square error (MMSE) algorithm used as the benchmark for comparison, in the application scenario of LTE-A uplink. The implementation scheme of SD algorithms established in this paper takes the compensation of carrier frequency offset (CFO) into consideration, and makes a replacement of MMSE with full functionalities. Based on the simulation results generated by a simulation platform compliant with 3GPP standards, the performance gain of SD with respect to MMSE is analyzed in the aspects of its varying trends related to CFO and the number of receive antennas. Consequently, the robustness of SD algorithms against CFO, as well as other properties concerning the applicability of SD algorithms are verified, thereby shedding light on how to implement SD algorithms for LTE-A uplink.
机译:为了便于在工程上实现针对实际MIMO系统的特定检测算法,重要的是要了解其性能如何随某些系统参数而变化。在本文中,我们评估了球面解码(SD)算法的性能,该算法属于降低复杂度最大似然(ML)算法,其中最小均方误差(MMSE)算法用作比较的基准。 LTE-A上行的应用场景。本文建立的SD算法的实现方案考虑了载波频率偏移(CFO)的补偿,并用全部功能替代了MMSE。基于由符合3GPP标准的模拟平台生成的模拟结果,从与CFO和接收天线数量有关的变化趋势方面分析了SD相对于MMSE的性能增益。因此,验证了SD算法针对CFO的鲁棒性以及与SD算法适用性有关的其他属性,从而为如何为LTE-A上行链路实现SD算法提供了启示。

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