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Outer loop power control in CDMA satellite systems with on-board power constraints

机译:具有机载功率限制的CDMA卫星系统中的外环功率控制

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This paper aims at clarifying the role of the outer loop power control for CDMA satellite systems with on-board power constraints. If the inner loop of the power control is perfect, the channel turns into a AWGN channel and there is no need of the outer loop. In satellite CDMA systems, due to the longer propagation delay with respect to a terrestrial system, the inner loop of power control is only partly able to track power variations due to fast fading. Moreover, the Rice factor, which characterizes the channel statistics, can widely vary even if the user does not move but just because of the change of the elevation angle. Because of that, a wide range of target SNIR (and larger than in typical terrestrial systems) may be necessary to get the same BER performance. Therefore, the outer loop power control turns out to be essential to minimize the dynamic of the power link margins and avoid capacity degradations induced by the systematic use of static link margins. A semi-analytical model for the capacity evaluation has been developed, which is specifically intended for the power-limited satellite-to-mobile link with multi satellite reception. We found that the capacity gain with respect to a pure SNIR-based strategy (i.e., only inner loop) can reach the 40% of the total capacity in a single reception scheme. A smaller, but still noticeable capacity gain of the order of 20 - 30% is observed in presence of satellite diversity. Therefore, any dimensioning of CDMA satellite systems should not neglect this component of the power control.
机译:本文旨在阐明具有板载功率限制的CDMA卫星系统的外环功率控制的作用。如果电源控制的内部环路是完美的,则该通道将变为AWGN通道,并且不需要外部环路。在卫星CDMA系统中,由于相对于地面系统更长的传播延迟,功率控制的内环仅部分能够跟踪由于快速衰落而导致的功率变化。而且,表征信道统计的赖斯因子即使在用户不移动而是仅由于仰角变化的情况下也可以有很大变化。因此,可能需要大范围的目标SNIR(并且比典型的地面系统更大)才能获得相同的BER性能。因此,外环功率控制对于使电源链路裕量的动态最小化以及避免系统性使用静态链路裕量引起的容量降低至关重要。已经开发了一种用于容量评估的半分析模型,该模型专门用于具有多卫星接收功能的功率受限的卫星到移动链路。我们发现,相对于基于纯SNIR的策略(即仅内部环路),容量增益可以在单个接收方案中达到总容量的40%。在存在卫星分集的情况下,观测到的容量增益较小,但仍很明显,约为20-30%。因此,CDMA卫星系统的任何尺寸都不应忽略功率控制的这一部分。

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