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Optimization of Power Allocation for a Multibeam Satellite Communication System with Interbeam Interference

机译:具有波束间干扰的多波束卫星通信系统的功率分配优化

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In multibeam satellite communication systems it is important to improve the utilization efficiency of the power resources, due to the scarcity of satellite power resources. The interbeam interference between the beams must be considered in the power allocation; therefore, it is important to optimize the power allocated to each beam in order to improve the total system performance. Initially the power allocation problem is formulated as a nonlinear optimization, considering a compromise between the maximization of total system capacity and the fairness of the power allocation amongst the beams. A dynamic power allocation algorithm based on duality theory is then proposed to obtain a locally optimal solution for the optimization problem. Compared with traditional power allocation algorithms, this proposed dynamic power allocation algorithm improves the fairness of the power allocation amongst the beams, and, in addition, the proposed algorithm also increases the total system capacity in certain scenarios.
机译:在多波束卫星通信系统中,由于卫星功率资源的稀缺,提高功率资源的利用效率很重要。在功率分配中必须考虑光束之间的光束间干扰;因此,重要的是优化分配给每个波束的功率,以提高整个系统的性能。最初,考虑到总系统容量的最大化与波束之间功率分配的公平性之间的折衷,将功率分配问题表述为非线性优化。然后,提出了一种基于对偶理论的动态功率分配算法,以求得优化问题的局部最优解。与传统的功率分配算法相比,该动态功率分配算法提高了波束间功率分配的公平性,此外,在某些情况下,该算法还增加了系统总容量。

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