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A Unified Simulation Approach for the Fast Outage Capacity Evaluation over Generalized Fading Channels

机译:通用衰落信道上快速中断容量评估的统一仿真方法

摘要

The outage capacity (OC) is among the most important performance metrics of communication systems over fading channels. The evaluation of the OC, when equal gain combining (EGC) or maximum ratio combining (MRC) diversity techniques are employed, boils down to computing the cumulative distribution function (CDF) of the sum of channel envelopes (equivalently amplitudes) for EGC or channel gains (equivalently squared enveloped/ amplitudes) for MRC. Closed-form expressions of the CDF of the sum of many generalized fading variates are generally unknown and constitute open problems. We develop a unified hazard rate twisting Importance Sampling (IS) based approach to efficiently estimate the CDF of the sum of independent arbitrary variates. The proposed IS estimator is shown to achieve an asymptotic optimality criterion, which clearly guarantees its efficiency. Some selected simulation results are also shown to illustrate the substantial computational gain achieved by the proposed IS scheme over crude Monte Carlo simulations.
机译:中断容量(OC)是衰落信道上通信系统最重要的性能指标之一。当使用等增益合并(EGC)或最大比率合并(MRC)分集技术时,对OC的评估归结为计算EGC或信道的信道包络之和(等效振幅)的累积分布函数(CDF) MRC的增益(等效的平方包络/幅度)。许多广义衰落变量之和的CDF闭式表达式通常是未知的,并构成开放问题。我们开发了一种基于危害率扭曲重要性抽样的统一方法,以有效地估计独立任意变量之和的CDF。所提出的IS估计器显示出一种渐近最优准则,该准则显然保证了其效率。还显示了一些选定的仿真结果,以说明所提出的IS方案相对于原始蒙特卡洛仿真所获得的大量计算增益。

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