Frequency Selectivity Analysis Based on Inductively Coupled Channel for Current Transmission Through Seawater

Author:

Zheng Yu,Fei Chen,Lu Yan-fang,Li Hong-zhi

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Ocean Engineering,Renewable Energy, Sustainability and the Environment,Oceanography

Reference23 articles.

1. Boyle, G.R., Robertson, W.C. and Johnigan, R.A., 2014. Wireless Data Transmission via Inductive Coupling Using Di/Dt As the Magnetic Modulation Scheme and Hysteresis, US Patent 9294151.

2. Che, X.H., Wells, I., Dickers, G., Kear, P. and Gong, X.C., 2010. Reevaluation of RF electromagnetic communication in underwater sensor networks, IEEE Communications Magazine, 48(12), 143–151.

3. Cox, R.A., Culkin, F., Greenhalgh, R. and Riley, J.P., 1962. Chlorinity, conductivity and density of sea-water, Nature, 193(4815), 518–520.

4. Deng, Y. and Wang, X., 2008. Technology of inductive coupling data transmission and application in a new seawater temperature-salinity-depth sensor chain, Meteorological, Hydrological and Marine Instruments, (3), 1–4. (in Chinese)

5. Han, X.Y., Peng, Y.F. and Ma, Z.J., 2016. The electric conductivity characteristics of seawater ionic solution under the influence of magnetic field, International Journal of Modern Physics B, 30(24), 1650172.

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