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Comparative analysis and performance of two predictive fade detection schemes for Ka-band fade countermeasures

机译:两种预测性Ka衰落对策预测衰落检测方案的比较分析和性能

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摘要

The design of Ka-band satellite fade countermeasure (FCM) systems is conditioned by the detection/prediction algorithm to be included within practical DSP-based FCM controllers. It depends upon the ability of systems to efficiently integrate the dynamic and stochastic nature of the Ka-band fading process which is dominated by rain attenuation and amplitude scintillation. The paper analyzes the modeling and statistical performance of two predictive fade detection algorithms. Prediction is introduced as a way to minimize the impact of the finite response time on the BER/throughput of practical FCM systems. Both fixed (FDM) and variable (VDM) detection margin strategies are introduced and compared in terms of their margin requirements, FCM utilization factor, and channel capacity utilization. The VDM is shown to be more efficient than its fixed counterpart. The long-term BER availability and average user data throughput of a VDM/fixed-FEC/adaptive transmission rate FCM are then evaluated for a typical low-power low-rate Ka-band in-bound VSAT link.
机译:Ka波段卫星衰落对策(FCM)系统的设计以检测/预测算法为条件,该算法将包含在基于DSP的实际FCM控制器中。这取决于系统有效整合Ka波段衰落过程的动态和随机特性的能力,而衰落过程主要受降雨衰减和幅度闪烁的影响。本文分析了两种预测性淡入淡出检测算法的建模和统计性能。引入预测是将有限响应时间对实际FCM系统的BER /吞吐量的影响最小化的一种方法。引入了固定(FDM)和可变(VDM)检测余量策略,并根据其余量要求,FCM利用率和信道容量利用率进行了比较。事实证明,VDM比固定的VDM更有效。然后针对典型的低功耗低速率Ka波段入站VSAT链路评估VDM /固定FEC /自适应传输速率FCM的长期BER可用性和平均用户数据吞吐量。

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