2017•Unpublished venueRequires access

Increase detection algorithm for concentration-encoded diffusion-based molecular communication

Haoyang Zhai, Tadashi Nakano, Athanasios V. Vasilakos, Kun Yang, Qiang Liu

Open publisher page 2 citations

Abstract

In this paper, we propose a demodulation technique, the increase detection algorithm (IDA), to improve the reliability of concentration-encoded diffusion-based molecular communication. The proposed demodulation technique detects an increase (i.e., a relative concentration value) in molecule concentration to demodulate information as opposed to detecting an absolute concentration value. We evaluate the proposed demodulation technique in terms of bit error rate (BER) and demonstrate that the proposed demodulation technique successfully isolates ISI from concentration-encoded diffusion-based molecular communication to achieve a lower BER than a commonly used demodulation technique.

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What this paper is about

In this paper, we propose a demodulation technique, the increase detection algorithm (IDA), to improve the reliability of concentration-encoded diffusion-based molecular communication. The proposed demodulation technique detects an increase (i.e., a relative concentration value) in molecule concentration to demodulate information as opposed to detecting an absolute concentration value. We evaluate the proposed demodulation technique in terms of bit error rate (BER) and demonstrate that the proposed demodulation technique successfully isolates ISI from concentration-encoded diffusion-based molecular communication to achieve a lower BER than a commonly used demodulation technique.

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Available abstract

In this paper, we propose a demodulation technique, the increase detection algorithm (IDA), to improve the reliability of concentration-encoded diffusion-based molecular communication. The proposed demodulation technique detects an increase (i.e., a relative concentration value) in molecule concentration to demodulate information as opposed to detecting an absolute concentration value. We evaluate the proposed demodulation technique in terms of bit error rate (BER) and demonstrate that the proposed demodulation technique successfully isolates ISI from concentration-encoded diffusion-based molecular communication to achieve a lower BER than a commonly used demodulation technique.

Key concepts: Demodulation, Molecular communication, Diffusion, Algorithm, Bit error rate, Computer science, Reliability (semiconductor), Value (mathematics)

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