A New Simulation Algorithm for Absorbing Receiver in Molecular Communication

Yiran Wang, Adam Noel, Nan Yang
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引用次数: 2

Abstract

The simulation of diffusion-based molecular communication systems with absorbing receivers often requires a high computational complexity to produce accurate results. In this work, a new a priori Monte Carlo (APMC) algorithm is proposed to precisely simulate the molecules absorbed at a spherical receiver when the simulation time step length is relatively large. This algorithm addresses the limitations of the current refined Monte Carlo (RMC) algorithm, since the RMC algorithm provides accurate simulation only for a relatively small time step length. The APMC algorithm is demonstrated to achieve a higher simulation efficiency than the existing algorithms by finding that the APMC algorithm, for a relatively large time step length, absorbs the fraction of molecules expected by analysis, while other algorithms do not.
一种新的分子通信吸收接收机仿真算法
具有吸收式接收器的扩散型分子通信系统的仿真通常需要较高的计算复杂度才能得到准确的结果。本文提出了一种新的先验蒙特卡罗(APMC)算法,用于在模拟时间步长较大时精确模拟球形接收器吸收的分子。该算法解决了当前精炼蒙特卡罗(RMC)算法的局限性,因为RMC算法只能在相对较小的时间步长下提供准确的模拟。通过发现APMC算法在较大的时间步长下能够吸收分析所需的分子部分,而其他算法则不能,证明了APMC算法比现有算法具有更高的模拟效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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