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首页> 外文期刊>IEICE Transactions on fundamentals of electronics, communications & computer sciences >Modified Power Control Algorithms for Mobile Satellite Communication Systems with ATCs
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Modified Power Control Algorithms for Mobile Satellite Communication Systems with ATCs

机译:具有ATC的移动卫星通信系统的修改功率控制算法

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摘要

In this paper, in order to increase system capacity and reduce the transmitting power of the user's equipment, we propose a modified power control scheme consisting of a modified closed-loop power control (CLPC) and open-loop power control (OLPC). The modified CLPC algorithm, combining delay compensation algorithms and pilot diversity, is mainly applied to the ancillary terrestrial component (ATC) link in urban areas, because it is more suitable to the short round-trip delay (RTD). In the case of rural areas, where ATCs are not deployed or where a signal is not received from ATCs, transmit power monitoring equipment and OLPC algorithms using efficient pilot diversity are combined and applied to the link between the user's equipment and the satellite. Two power control algorithms are applied equally to the boundary areas where two kinds of signals are received in order to ensure coverage continuity. Simulation results show that the modified power control scheme has good performance compared to conventional power control schemes in a geostationary earth orbit (GEO) satellite system utilizing ATCs.
机译:在本文中,为了增加系统容量并减少用户设备的发射功率,我们提出了一种改进的功率控制方案,该方案包括改进的闭环功率控制(CLPC)和开环功率控制(OLPC)。结合延迟补偿算法和导频分集的改进的CLPC算法主要应用于城市地区的辅助地面分量(ATC)链路,因为它更适合于短往返延迟(RTD)。对于未部署ATC或未从ATC接收信号的农村地区,将结合发射功率监控设备和使用有效导频分集的OLPC算法,并将其应用于用户设备与卫星之间的链路。两种功率控制算法均等地应用于接收两种信号的边界区域,以确保覆盖范围的连续性。仿真结果表明,在采用ATC的对地静止地球轨道(GEO)卫星系统中,改进后的功率控制方案与常规功率控制方案相比具有良好的性能。

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