Simulations of communication systems via integrated variance reduction techniques

A. Bohdanowicz, J. Weber
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引用次数: 3

Abstract

This paper deals with efficiency issues of estimating common error performance measures of communication systems via Monte Carlo simulations. Efficient simulation techniques using integrated variance reduction techniques (VRTs) are proposed and studied. The integrated techniques are constructed by combining a number of basic VRTs. The general idea is that by integrating several basic VRTs their respective complementary properties can be exploited simultaneously, leading to additional variance reductions of the estimates and, consequently, to substantial gains in terms of simulation time required to obtain them. Based on the basic VRTs, two examples of the integrated techniques are presented and their performance is studied. Simulation results are provided to demonstrate the general approach of the integrated VRTs and to verify the concept. The results indicate that the simulation schemes based on the integrated VRTs can, indeed, improve the efficiency of the simulations. We argue that the great benefit of the integrated techniques is their potential of combining advantages and complementary features of the constituent basic VRTs. Thus, the integrated VRTs can achieve high efficiency gains even though the respective constituent basic VRTs do not operate under their optimal conditions, which is usually the case for a simulation scheme using a single VRT.
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通过综合方差减少技术的通信系统模拟
本文研究了通过蒙特卡罗仿真估计通信系统常见误差性能指标的效率问题。提出并研究了基于综合方差减少技术(VRTs)的高效仿真技术。该集成技术是由多个基本vrt组合而成的。一般的想法是,通过整合几个基本的vrt,它们各自的互补属性可以同时被利用,导致估计的额外方差减少,因此,在获得它们所需的模拟时间方面获得实质性的收益。在基本vrt的基础上,给出了两种集成技术的实例,并对其性能进行了研究。仿真结果展示了集成vrt的一般方法,并验证了该概念。结果表明,基于集成vrt的仿真方案确实可以提高仿真效率。我们认为,集成技术的巨大优势在于其结合构成基本vrt的优势和互补特征的潜力。因此,即使各个组成的基本VRT不在其最佳条件下运行,集成VRT也可以获得较高的效率增益,这通常是使用单个VRT的仿真方案的情况。
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