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Energy Efficiency Optimization Algorithm for Single Station Multi-satellite MIMO Uplink System

机译:单站多卫星MIMO上行链路系统的能量效率优化算法

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With the rapid growth of satellite communication services, the energy consumption of communication equipment has also increased sharply, which means that the transmission rate and energy efficiency of satellite communication systems need to be improved urgently. The traditional multi-station single-satellite uplink method requires the construction of a large number of measurement and control stations in the low-orbit satellite group, which can no longer meet the existing satellite transmission needs. The single-site multi-satellite method combined with Multi-input Multi-output (MIMO) technology for signal uplink has become the main development trend in the future. Aiming at the energy allocation problem of different satellites in the single-station multi-satellite uplink system, this paper proposes a single station multi-satellite energy efficiency optimization algorithm (SM-EEOA). Under the constraints of the quality of service (QoS) and overall transmit power of each satellite, an iterative algorithm is used to find the optimal power. The algorithm realizes fast and flexible power allocation according to actual transmission requirements and satellite channel quality, and achieves the optimization of system transmission rate. In the Saleh-Valenzuela channel, compare with the average power allocation strategy and the traditional power allocation algorithm. The simulation results show that the SM-EEOA algorithm can perform reasonable power allocation according to the satellite channel quality. Compared with the traditional power allocation algorithm, it can improve the system energy efficiency by about 60% without reducing the system capacity.
机译:随着卫星通信业务的快速增长,通信设备的能耗也急剧增加,这意味着卫星通信系统的传输速率和能效亟待提高。传统的多站单星上行链路方式需要在低轨道卫星群中建设大量测控站,已不能满足现有卫星传输需求。结合多输入多输出(MIMO)技术的单站多卫星信号上行链路已成为未来的主要发展趋势。针对单站多星上行链路系统中不同卫星的能量分配问题,提出了一种单站多星能量效率优化算法(SM-EEOA)。在每个卫星的服务质量(QoS)和总发射功率的约束下,使用迭代算法来寻找最佳功率。该算法根据实际传输需求和卫星信道质量,实现了快速灵活的功率分配,实现了系统传输速率的优化。在Saleh-Valenzuela信道中,比较了平均功率分配策略和传统功率分配算法。仿真结果表明,SM-EEOA算法能够根据卫星信道质量进行合理的功率分配。与传统的功率分配算法相比,该算法在不降低系统容量的情况下,可将系统能效提高60%左右。

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