
Research Article
Binary Concentration Shift Keying with Multiple Measurements of Molecule Concentration in Mobile Molecular Communication
@INPROCEEDINGS{10.1007/978-3-030-57115-3_4, author={Yutaka Okaie and Tadashi Nakano}, title={Binary Concentration Shift Keying with Multiple Measurements of Molecule Concentration in Mobile Molecular Communication}, proceedings={Bio-inspired Information and Communication Technologies. 12th EAI International Conference, BICT 2020, Shanghai, China, July 7-8, 2020, Proceedings}, proceedings_a={BICT}, year={2020}, month={8}, keywords={Mobile molecular communication Binary concentration shift keying Multiple measurements}, doi={10.1007/978-3-030-57115-3_4} }
- Yutaka Okaie
Tadashi Nakano
Year: 2020
Binary Concentration Shift Keying with Multiple Measurements of Molecule Concentration in Mobile Molecular Communication
BICT
Springer
DOI: 10.1007/978-3-030-57115-3_4
Abstract
Binary concentration shift keying in molecular communication is a modulation technique that transforms binary information onto the concentration of molecules. Transmitter releases a pre-specified number of molecules into the environment according to the information it wishes to transmit to receiver. In this paper, we consider binary concentration shift keying in mobile molecular communication where a mobile receiver performs multiple measurements of molecule concentration to demodulate information that the transmitter transmits. Numerical experiments are conducted to evaluate the performance of mobile molecular communication with the binary concentration shift keying with multiple measurements of molecule concentration in terms of achievable information transmission rate.