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Joint design of multi-tap filters and power control for FBMC/OQAM based two-way decode-and-forward relaying systems in highly frequency selective channels

机译:高频选择性信道中基于FBMC / OQAM的双向解码转发中继系统的多抽头滤波器和功率控制的联合设计

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In this paper we study the achievable rate region of an FBMC based two-way decode-and-forward relaying system. Unlike a CPOFDM system, the FBMC based systems experience inter-carrier interference and inter-symbol interference especially in a highly frequency selective channel. To calculate the resulting rate region, we have to solve a joint optimization of the per-subcarrier multitap filters at the relay as well as at the users, which is nonconvex. Therefore, we resort to a two-step approach. First, we design closed-form solutions for the per-subcarrier pre-equalizers and equalizers at all nodes. Then we derive an optimal power allocation scheme to maximize the achievable rate. Simulation results show that the achievable sum rate increases as the number of taps used for pre-equalization and equalization at the subcarriers increases.
机译:本文研究了基于FBMC的双向解码和前进式中继系统的可实现率区域。与CPOFDM系统不同,基于FBMC的系统体验载波间干扰和符号间干扰,尤其是在高频率选择性信道中。为了计算结果率区域,我们必须在继电器和用户处求解每个子载波多接滤波器的关节优化,以及在非凸起的用户。因此,我们采取了两步的方法。首先,我们在所有节点上为每个子载波预均衡器和均衡器设计闭合状态解决方案。然后我们得出了最佳的功率分配方案,以最大化可实现的速率。仿真结果表明,随着用于子载波的预均衡和均衡的抽头数增加,可实现的总和速率增加。

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