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Design issues and performance analysis of CDMA multi-beam satellites

机译:CDMA多波束卫星的设计问题和性能分析

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The paper investigates the design issues of a multi-beam mobile satellite system employing CDMA and quantifies the system capacity in the presence of power control error and multiple access interference. In multi-beam mobile satellite CDMA systems, the interference characteristic is quite different from terrestrial systems and it is mainly characterized by a spotbeam antenna pattern. The other-cell (or beam) interference factor, which is defined as the interference power produced by users belonging to other beams divided by the interference power produced by interfering users in the considered beam, is much more critical for satellite systems. By taking this interference feature into account, we study the system capacity for different multi-beam system designs. Another important issue in applying the CDMA scheme is the problem of unequal received mobile user power levels at a satellite. The capacity of a CDMA system is maximized in the uplink channel when all user signals are received at equal power levels to obtain the specified signal-to-noise-plus-interference power ratio. Since power control techniques cannot perfectly compensate for power fluctuations in mobile satellite channels, the capacity of the system is reduced. We show that power control error with a standard deviation in the range of 1-2 dB would cause a dramatic capacity loss in comparison to perfectly power controlled systems.
机译:本文调查了采用CDMA的多光束移动卫星系统的设计问题,并在存在电源控制误差和多次访问干扰时量化系统容量。在多光束移动卫星CDMA系统中,干扰特性与地面系统完全不同,并且主要是斑点天线图案的特征。被定义为由属于由所考虑的光束中的用户产生的其他光束所产生的其他光束所产生的受干扰功率而产生的其他单元(或光束)干扰因子对卫星系统的干扰功率划分为不同的受干扰功率。通过考虑这种干扰特征,我们研究不同的多光束系统设计的系统容量。应用CDMA方案的另一个重要问题是在卫星处获得不平等的移动用户功率水平的问题。当所有用户信号以等电流电平接收到所有用户信号以获得指定的信噪比加干扰功率比时,CDMA系统的容量最大化。由于功率控制技术不能完全补偿移动卫星通道中的功率波动,因此减少了系统的容量。我们表明,与完全功率控制系统相比,标准偏差的功率控制误差具有1-2 dB的范围将导致剧烈的容量损耗。

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