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Analytical Models for Particle Diffusion and Flow in a Horizontal Cylinder with a Vertical Force

机译:垂直力作用下水平圆柱体中颗粒扩散和流动的解析模型

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This paper considers particle propagation in a cylindrical molecular communication channel, e.g. a simplified model of a blood vessel. Emitted particles are influenced by diffusion, flow, and a vertical force induced e.g. by gravity or magnetism. The dynamics of the diffusion process are modeled by multi dimensional transfer functions in a spatio-temporal frequency domain. Realistic boundary conditions are incorporated by the design of a feedback loop. The result is a discrete-time semi-analytical model for the particle concentration in the channel. The model is validated by comparison to particle-based simulations. These numerical experiments reveal that the particle concentration of the proposed semi-analytical model and the particle-based model are in excellent agreement. The analytical form of the proposed solution provides several benefits over purely numerical models, e.g. high flexibility, existence of low run-time algorithms, extendability to several kinds of boundary conditions, and analytical connection to parameters from communication theory.
机译:本文考虑了颗粒在圆柱分子通讯通道中的传播,例如血管的简化模型。发射的颗粒受扩散,流动和垂直力的影响,例如垂直方向的影响。通过重力或磁力。扩散过程的动力学通过时空频域中的多维传递函数建模。现实的边界条件通过反馈回路的设计而被纳入。结果是通道中颗粒浓度的离散时间半分析模型。通过与基于粒子的模拟进行比较,对模型进行了验证。这些数值实验表明,所提出的半分析模型和基于颗粒的模型的颗粒浓度非常吻合。提出的解决方案的分析形式提供了优于纯数值模型的一些优势,例如高灵活性,低运行时间算法的存在,对多种边界条件的可扩展性以及通信理论对参数的分析联系。

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