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首页> 外文期刊>IEEE Transactions on Communications >Diffusive MIMO Molecular Communications: Channel Estimation, Equalization, and Detection
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Diffusive MIMO Molecular Communications: Channel Estimation, Equalization, and Detection

机译:漫射MIMO分子通信:信道估计,均衡和检测

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摘要

In diffusion-based communication, for molecular systems, the achievable data rate depends on the stochastic nature of diffusion, which exhibits a severe inter-symbol-interference (ISI). Multiple-input multiple-output (MIMO) multiplexing improves the data rate at the expense of an interlink interference (ILI). This paper investigates training-based channel estimation schemes for diffusive MIMO (D-MIMO) systems and corresponding equalization methods. Maximum likelihood and least-squares estimators of mean channel are derived, and the training sequence is designed to minimize the mean square error (MSE). The numerical validations in terms of MSE are compared with Cramer-Rao bound derived herein. Equalization is based on decision feedback equalizer (DFE) structure as this is effective in mitigating diffusive ISI/ILI. Zero-forcing, minimum MSE, and least-squares criteria have been paired to DFE, and their performances are evaluated in terms of bit error probability. D-MIMO time interleaving is exploited as an additional countermeasure to mitigate the ILI with remarkable performance improvements. The configuration of nano-transceivers is not static but affected by a Brownian motion. A block-type communication is proposed for D-MIMO channel estimation and equalization, and the corresponding time-varying D-MIMO MC system is numerically evaluated.
机译:在基于扩散的通信中,对于分子系统,可达到的数据速率取决于扩散的随机性,这表现出严重的符号间干扰(ISI)。多输入多输出(MIMO)多路复用提高了数据速率,但以互连链路干扰(ILI)为代价。本文研究了用于扩散MIMO(D-MIMO)系统的基于训练的信道估计方案以及相应的均衡方法。推导了均值通道的最大似然估计和最小二乘估计,并且设计了训练序列以最小化均方误差(MSE)。将MSE方面的数值验证与本文推导的Cramer-Rao界进行比较。均衡基于决策反馈均衡器(DFE)结构,因为它可以有效缓解扩散ISI / ILI。强制零,最小MSE和最小二乘标准已与DFE配对,并且根据误码率评估了它们的性能。 D-MIMO时间交织被用作一种额外的对策,以显着提高性能来缓解ILI。纳米收发器的配置不是静态的,而是受布朗运动的影响。提出了一种用于D-MIMO信道估计和均衡的块式通信,并对相应的时变D-MIMO MC系统进行了数值评估。

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