通过模拟评估基于扩散的分子通讯中的分子吞吐量和效率

Ashwini Katkar, V. Dongre
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引用次数: 0

摘要

研究目的本研究探讨了影响基于扩散的分子通讯系统吞吐量和效率的关键因素的相关性。方法:研究提出了一个基于扩散的三维分子通讯模拟模型,其中包含了分子大小、传输速率、扩散速率和发射器-接收器距离等重要参数。研究结果:通过综合模拟,该研究揭示了不同参数对基于扩散的分子通讯的吞吐量和效率的影响。它强调了与系统设计和优化相关的关键权衡。研究揭示了影响传输能力、接收器拥塞和通信系统整体效率的关键因素。新颖性:在本研究中,我们概述了分子通讯领域性能指标的最新研究成果。我们提出了一种新颖的算法来计算分子通讯的吞吐量和效率。所提出的框架分析了系统参数与性能指标之间错综复杂的关系,强调了系统优化的潜力。我们的模拟工作展示了模型参数如何影响分子通讯系统的性能,为今后在靶向药物递送等应用中提高系统性能提供了启示。关键词分子通讯 扩散 传输速率 吞吐量 效率
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Assessing Molecular Throughput and Efficiency through Simulation in Diffusion-Based Molecular Communication
Objectives: This study investigates the correlation of critical factors influencing throughput and efficiency in diffusion-based molecular communication systems. Method: The study presents a simulation model for 3-D diffusion-based molecular communication, incorporating essential parameters such as molecule size, transmission rate, diffusion rate, and transmitter-receiver distance. Findings: Through comprehensive simulations, the study reveals the effects of different parameters on throughput and efficiency in diffusion-based molecular communication. It highlights the critical trade-offs associated with system design and optimization. The study reveals the key factors influencing the transmission capabilities, the receiver congestion, and the overall efficiency of the communication system. Novelty: In this study, we give a study overview of the latest work of performance metrics in the field of molecular communication. A novel algorithm is proposed to find the throughput and efficiency of molecular communication. The proposed framework analyzes the intricate relationship between system parameters and performance metrics, emphasizing the potential for system optimization. Our simulation work demonstrates how the model parameters influence the performance of the molecular communication system, providing insights for enhancing the system's performance in applications such as targeted drug delivery in the future. Keywords: Molecular Communication, Diffusion, Transmission Rate, Throughput, Efficiency
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