Achievable rate for a mobile molecular communication system invited paper

Qian Wu, Lin Lin, Zhan Luo, M. Ma, Fuqiang Liu, Hao Yan
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引用次数: 1

Abstract

Molecular communication (MC) enables conveying information by emitting and sensing molecules at a micro-to nano-scale. MC systems for fixed nanomachines have been extensively investigated. However, the scenarios for mobile MC are seldomly studied. In the paper, the mutual information and maximum achievable rate for the mobile MC is investigated. The movement of the receiver nanomachine is modeled as a 2-D random walk. The channel impulse response is changing due to the moving property of the nanomachine. The mutual information and maximum achievable rate are analytically derived for the mobile scenario. Numerical results evaluates the influence of different parameters such as original transmitter-receiver distance, signal-to-noise ratio, threshold, and priori probabilities of transmitted symbol to the mutual information and maximum achievable rate.
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一种可移动分子通信系统的可达速率邀请论文
分子通信(MC)可以通过发射和感知微纳米级的分子来传递信息。固定纳米机器的MC系统已经得到了广泛的研究。然而,对移动MC的情景研究却很少。本文研究了移动MC的互信息和最大可达速率。接收机纳米机器的运动建模为二维随机行走。由于纳米机器的移动特性,通道脉冲响应发生了变化。对移动场景的互信息和最大可实现速率进行了解析推导。数值结果评估了不同参数如原始收发距离、信噪比、阈值和传输符号的先验概率对互信息和最大可达速率的影响。
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