论文标题
具有能源效率优化的多微型卫星通信
Multibeam Satellite Communications with Energy Efficiency Optimization
论文作者
论文摘要
能源效率(EE)是卫星通信的重要方面。与通常使用一阶Taylor下限近似值将非凸EE最大化(EEM)问题转换为凸的现有算法不同,在这封信中提出了两步二次转换方法。在第一步中,基于二次变换的总功率消耗的分数形式被转换为非裂缝形式。在第二步中,仍基于二次变换,将信号功率的分数形式进一步转换为非骨折形式。在两步二次变换之后,原始的EEM问题将转换为等效凸一个。然后,提出了交替的优化算法来通过迭代执行两个阶段来解决该算法,直到满足停止条件为止。仿真结果表明,提出的算法可以快速收敛,并且其性能优于顺序凸近似算法和多光束干扰缓解算法的性能。
Energy efficiency (EE) is an important aspect of satellite communications. Different with the existing algorithms that typically use the first-order Taylor lower bound approximation to convert non-convex EE maximization (EEM) problems into convex ones, in this letter a two-step quadratic transformation method is presented. In the first step, the fractional form of the achievable rate over the total power consumption is converted into a non-fractional form based on quadratic transformation. In the second step, the fractional form of the signal power over the interference-and-noise power is further converted into a non-fractional form, still based on quadratic transformation. After the two-step quadratic transformation, the original EEM problem is converted into an equivalent convex one. Then an alternating optimization algorithm is presented to solve it by iteratively performing two stages until a stop condition is satisfied. Simulation results show that the presented algorithm can fast converge and its performance is better than that of the sequential convex approximation algorithm and the multibeam interference mitigation algorithm.