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Non-Uniform BCSK Modulation in Nutrient-Limited Relay-Assisted Molecular Communication System: Optimization and Performance Evaluation

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arxiv 1903.04749 v5 pith:KY2J4EC5 submitted 2019-03-12 eess.SP

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keywords bcskmodulationnon-uniformperformancecommunicationmolecularoptimizationproblem
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In this paper, a novel non-uniform Binary Concentration Shift Keying (BCSK) modulation in the course of molecular communication is introduced. We consider the nutrient limiting as the main reason for avoiding the nanotransmitters to release huge number of molecules at once. The solution of this problem is in the utilization of the BCSK modulation. In this scheme, nanotransmitter releases the information molecules non-uniformly during the time slot. The 3-dimensional diffusion channel with 3-dimensional drift is considered in this paper. To boost the bit error rate (BER) performance, we consider a relay-assisted molecular communication via diffusion. Our computations demonstrate how the pulse shape of BCSK modulation affects the BER, and we also derive the energy consumption of non-uniform BCSK in the closed-form expression. We study the parameters that can affect the BER performance, in particular the distance between the nanotransmitter and the nanoreceiver, the drift velocity of the medium, and the symbol duration. Furthermore, we propose an optimization problem that is designed to find the optimal symbol duration value that maximizes the number of successful received bits. The proposed algorithm to solve the optimization problem is based on the bisection method. The analytical results show that non-uniform BCSK modulation outperforms uniform BCSK modulation in BER performance, when the aggregate energy is fixed.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Drug Release Management for Dynamic TDMA-Based Molecular Communication

    eess.SP 2019-08 reject novelty 5.0 of 10

    A BER analysis and four-case optimization for TDMA molecular communication are presented, claiming joint optimization of molecule counts and slot durations lowers error rates, but the derivation has algebraic and mode...

  2. Multiple-type Transmission Multiple-type Reception Framework on Molecular Communication

    eess.SP 2019-08 conditional novelty 5.0 of 10

    A MIMO molecular communication framework using multiple molecule types to eliminate inter-link interference, with optimized drug dosage allocation to minimize bit error rate.

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