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首页> 外文期刊>IEEE Transactions on Communications >Resource Allocation for MIMO Full-Duplex Backscatter Assisted Wireless-Powered Communication Network With Finite Alphabet Inputs
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Resource Allocation for MIMO Full-Duplex Backscatter Assisted Wireless-Powered Communication Network With Finite Alphabet Inputs

机译:MIMO全双工反向散射辅助无线供电通信网络的资源分配,具有有限字母输入

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摘要

With practical finite alphabet inputs, usually the throughput of a practical communication system cannot reach the capacity based on assumption of Gaussian inputs. In this paper, we study the resource allocation strategy for multiple-input multiple-output (MIMO) full-duplex backscatter assisted wireless-powered communication network (FD-BAWPCN) with finite alphabet inputs, to maximize the sum-throughput. Firstly, we propose a gradient-based resource allocation strategy (GBRA), which alternately optimizes the precoder and time allocation based on the two-block alternating direction method of multipliers (ADMM). Secondly, to reduce the computational complexity and improve the feasibility of the strategy in practical applications, we further propose a codebook-based resource allocation strategy (CBRA), which can run more than three orders of magnitude faster than GBRA at the expense of a small sum-rate degradation. Then, the performance of the full-duplex (FD) and half-duplex (HD) system with or without backscatter assistance using GBRA are compared and analyzed. Numerical results demonstrate that the GBRA strategy has great robustness under various conditions but suffers a high computational complexity, and the CBRA strategy is effective and converges speedily.
机译:利用实用的有限字母输入,通常实际通信系统的吞吐量基于高斯输入的假设基于高斯输入的容量。在本文中,我们研究了多输入多输出(MIMO)全双工反向散射辅助无线供电通信网络(FD-BAWPCN)的资源分配策略,有限字母输入,以最大化SUM-吞吐量。首先,我们提出了一种基于梯度的资源分配策略(GBRA),其交替地优化了基于乘法器(ADMM)的双嵌段交替方向方法的预编码器和时间分配。其次,为了降低计算复杂性并提高策略在实际应用中的可行性,我们进一步提出了一种基于码本的资源分配策略(CBRA),其可以比GBRA更快地运行超过三个数量的数量级和率劣化。然后,比较和分析了使用或不使用GBRA的反向散射辅助的全双工(FD)和半双工(HD)系统的性能。数值结果表明,GBRA策略在各种条件下具有很大的鲁棒性,但遭受了高的计算复杂性,而CBRA策略是有效的并且迅速收敛。

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