This paper proposes a novel imperfect transmitter (TX) model, namely the membrane fusion (MF)-based TX, that adopts MF between a vesicle and the TX membrane to release molecules encapsulated within the vesicle. For the MF-based TX, the molecule release probability and the fraction of molecules released from the TX membrane are derived. Incorporating molecular degradation and a fully-absorbing receiver (RX), the channel impulse response (CIR) is derived for two scenarios: 1) Both TX and RX are static, and 2) both TX and RX are diffusion-based mobile. Moreover, a sequence of bits transmitted from the TX to the RX is considered. For the mobile scenario, the probability mass function (PMF) of the number of molecules absorbed is calculated. Based on the derived PMF, the average bit error rate (BER) is derived for both scenarios. Furthermore, a simulation framework is proposed for the MF-based TX, based on which the derived analytical expressions are validated. Simulation results show that a low MF probability or low vesicle mobility slows the release of molecules and reduces the molecule hitting probability at the RX. Simulation results also indicate the difference between the MF-based TX and an ideal point TX in terms of the inter-symbol interference (ISI).
翻译:本文提出一个新的不完善发报机(TX)模型,即以膜膜聚合为基础的基于MF(MF)的TX(MF)模型,该模型在输卵管和TX(TX)膜膜之间采用MF(MF)来释放在输卵管内封装的分子。对于以MF为基础的TX(TX),将分子释放概率和从TX膜膜内释放的分子的分数计算出来。结合分子降解和完全吸收接收器(RX),为两种情况得出频道脉冲反应(1)TX和RX(MF)都是静态的,2)TX和RX(RX)都是以扩散为基础的移动为基础的移动。此外,TX(TX)和T(T)轴中导出的分析表达方式的模拟框架,也表明T(T)T(MFX)中低MF(ML)分子流流流率和ML(ML(ML)之间低概率值的模拟框架,也表明SIMX(MF),T(ML)流流中,T(ML)流流流流中,T(MX(ML)的低概率/ML)之间。