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Multi-objective Optimization of Joint Power Allocation and Splitting Control for SWIPT-enabled NOMA Systems

机译:启用S​​WIPT的NOMA系统的联合功率分配和分配控制的多目标优化

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In this paper, we investigate joint power allocation and splitting control in a SWIPT-enabled NOMA Systems applied with power splitting technique, with an aim to optimize the transmission rate and the total harvested energy simultaneously whilst satisfying the minimum transmission rate and minimum harvested energy of each user. These two conflicting objectives make the formulated optimization problem a constrained multi-objective optimization (MOO) problem, which is difficult to solve. To deal with this, we define a new objective function by summing the weighted values of the transmission rate achieved by information decoding (ID) and the transformed throughput from energy harvesting (EH) and transform the original MOO problem into a single-objective optimization problem. To tackle the formulated nonconvex problem, we decouple the optimization problem into two convex subproblems and solve them iteratively. Numerical results demonstrate that significant performance gain can be achieved by adopting the proposed algorithm.
机译:在本文中,我们研究了在具有功率分配技术的SWIPT启用NOMA系统中的联合功率分配和分配控制,旨在同时优化传输速率和总收获能量,同时满足最小传输速率和最小收获能量的要求。每个用户。这两个相互矛盾的目标使制定的优化问题成为受约束的多目标优化(MOO)问题,难以解决。为了解决这个问题,我们定义了一个新的目标函数,方法是将信息解码(ID)实现的传输速率的加权值与能量收集(EH)转换后的吞吐量相加,然后将原始的MOO问题转换为单目标优化问题。为了解决公式化的非凸问题,我们将优化问题分解为两个凸子问题,然后迭代求解。数值结果表明,采用本文提出的算法可以显着提高性能。

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