论文标题

分子通信的集中时间混合调制方案

A Concentration-Time Hybrid Modulation Scheme for Molecular Communications

论文作者

Gursoy, Mustafa Can, Seo, Daewon, Mitra, Urbashi

论文摘要

明显的符号间干扰(ISI)挑战通过扩散实现可靠的高数据速率分子通信。在本文中,提出了基于脉冲位置和浓度的混合调制来减轻ISI。通过利用时间维,分子浓度和位置调制(MCPM)可以增加可实现的数据速率,而不是常规浓度和基于位置的调制。此外,与多分子方案不同,该混合方案采用单分子类型,因此简化了收发器的实现。在本文中,提供了所提出的调制的最佳序列检测器以及降低的复杂性检测器(两阶段,位置浓度检测器,TPCD)。提出并采用了基于TPCD检测器的可拖动成本函数,并采用了来优化混合调制方案的设计。另外,得出了MCPM-TPCD系统误差的近似可能性,并且相对于模拟性能而言是紧密的。从数值上讲,MCPM在低传输功率和高率状态下的标准浓度和基于脉冲位置方案的性能提高了。此外,MCPM提供了针对同步误差的鲁棒性。

Significant inter-symbol interference (ISI) challenges the achievement of reliable, high data-rate molecular communication via diffusion. In this paper, a hybrid modulation based on pulse position and concentration is proposed to mitigate ISI. By exploiting the time dimension, molecular concentration and position modulation (MCPM) increases the achievable data rate over conventional concentration and position-based modulations. In addition, unlike multi-molecule schemes, this hybrid scheme employs a single-molecule type and so simplifies transceiver implementations. In the paper, the optimal sequence detector of the proposed modulation is provided as well as a reduced complexity detector (two-stage, position-concentration detector, TPCD). A tractable cost function based on the TPCD detector is proposed and employed to optimize the design of the hybrid modulation scheme. In addition, the approximate probability of error for the MCPM-TPCD system is derived and is shown to be tight with respect to simulated performance. Numerically, MCPM shows improved performance over standard concentration and pulse position-based schemes in the low transmission power and high bit-rate regime. Furthermore, MCPM offers increased robustness against synchronization errors.

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