基于博弈论的LEO/MEO双层卫星网络星间链路功率分配方法

Hua-rui Zhang, Qiang Li, Yijin Zhang, Xun Li
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引用次数: 4

摘要

星间链路的性能优化是提高卫星网络性能的关键。本文提出了一种基于低地球轨道(LEO)/中地球轨道(MEO)卫星计算能力的卫星间链路动态功率分配方法。根据星间链路的传输特性,设计了实用函数。基于超模博弈论,证明了效用函数纳什均衡的存在性。低轨道卫星通过牛顿迭代法得到其发射功率的平衡解。在此过程中,根据卫星的初始轨道参数和卫星运行时间,通过LEO/MEO卫星之间的球面几何关系预测星间链路距离,从而提前估计信噪比(SINR)。MEO卫星通过控制惩罚因子来提高整个网络的效用。仿真结果表明,所提出的功率分配方法在提高系统性能的同时达到了节约电力资源的目的。
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Game Theory Based Power Allocation Method for Inter-satellite Links in LEO/MEO Two-layered Satellite Networks
Performance optimization of the inter-satellite link is the key to improve the performance of satellite networks. This article proposes a dynamic power allocation method for the inter-satellite link of Low Earth Orbit (LEO)/Medium Earth Orbit (MEO) satellites based on the computing power of LEO satellites. A utility function is designed according to the transmission characteristic of the inter-satellite link. The existence of the Nash Equilibrium (NE) of the utility function is proved based on the super-modular game theory. The LEO satellite obtains its balanced solution of the transmission power through the Newton iteration method. In this process, based on the initial orbit parameters of the satellite and the satellite operating time, the inter-satellite link distance is predicted through the spherical geometric relationship between the LEO/MEO satellites, so that the signal-to-interference and noise ratio (SINR) can be estimated in advance. The MEO satellite controls the penalty factor to enhance the utility of the entire network. Simulation results show that the proposed power allocation method achieves the purpose of saving power resources while improving system performance.
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