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      MOL-Eye: A New Metric for the Performance Evaluation of a Molecular Signal

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          Abstract

          Inspired by the eye diagram in classical radio frequency (RF) based communications, the MOL-Eye diagram is proposed for the performance evaluation of a molecular signal within the context of molecular communication. Utilizing various features of this diagram, three new metrics for the performance evaluation of a molecular signal, namely the maximum eye height, standard deviation of received molecules, and counting SNR (CSNR) are introduced. The applicability of these performance metrics in this domain is verified by comparing the performance of binary concentration shift keying (BCSK) and BCSK with consecutive power adjustment (BCSK-CPA) modulation techniques in a vessel-like environment with laminar flow. The results show that, in addition to classical performance metrics such as bit-error rate and channel capacity, these performance metrics can also be used to show the advantage of an efficient modulation technique over a simpler one.

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          Performance Analysis of Amplitude Modulation Schemes for Diffusion-Based Molecular Communication

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            Energy efficient ISI mitigation for communication via diffusion

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              On the Design of Matched Filters for Molecule Counting Receivers

              In this paper, we design matched filters for diffusive molecular communication systems taking into account the following impairments: signal-dependent diffusion noise, inter-symbol interference (ISI), and external interfering molecules. The receiver counts the number of observed molecules several times within one symbol interval and employs linear filtering to detect the transmitted data. We derive the optimal matched filter by maximizing the expected signal-to-interference-plus-noise ratio of the decision variable. Moreover, we show that for the special case of an ISI-free channel, the matched filter reduces to a simple sum detector and a correlator for the channel impulse response for the diffusion noise-limited and (external) interference-limited regimes, respectively. Our simulation results reveal that the proposed matched filter considerably outperforms the benchmark schemes available in literature, especially when ISI is severe.
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                Author and article information

                Journal
                16 September 2017
                Article
                1709.05604
                72a6b7dd-4f32-4945-9075-7946cea3170b

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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                cs.ET cs.IT math.IT

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