In this paper, we propose a system model by considering turbulence, scattering and absorption effects and noises including shot noise, thermal noise and background noise, for underwater optical wireless communications. The results are shown for the three different types of water by considering the different effects in the model. The results are shown for the eye diagrams as well as the bit error rates over a range of transmission span
Underwater optical wireless communication (UOWC) offers the prospect of higher bandwidths and data r...
In the last decade, the field of wireless optical communication has gathered immense interest due to...
In underwater optical wireless communications (UOWC) the link performance is greatly affected by the...
In this paper, we propose a system model by considering turbulence, scattering and absorption effect...
In underwater optical wireless communications (UOWC), scattering of the propagating light beam resul...
A comprehensive multiparameter model is proposed for underwater wireless optical communication (UWOC...
In this paper, we are doing channel modeling for underwater optical channels. Particularly, we have ...
In this study, the performance of underwater optical wireless communication systems employing spatia...
Increasing interest in oceans increases the scientific, commercial and military studies in this fiel...
The propagation of light underwater is tied closely to the optical properties of water. In particula...
The growing need for underwater observation and subsea monitoring systems has stimulated considerabl...
Abstract-Recent interest in ocean exploration has brought about a desire for developing wireless com...
The underwater wireless optical communication (UWOC) system gives very high rate of underwater data ...
The propagation of light underwater is tied closely to the optical properties of water. In particula...
Turbulence affects the performance of underwater wireless optical communications (UWOC). Although mu...
Underwater optical wireless communication (UOWC) offers the prospect of higher bandwidths and data r...
In the last decade, the field of wireless optical communication has gathered immense interest due to...
In underwater optical wireless communications (UOWC) the link performance is greatly affected by the...
In this paper, we propose a system model by considering turbulence, scattering and absorption effect...
In underwater optical wireless communications (UOWC), scattering of the propagating light beam resul...
A comprehensive multiparameter model is proposed for underwater wireless optical communication (UWOC...
In this paper, we are doing channel modeling for underwater optical channels. Particularly, we have ...
In this study, the performance of underwater optical wireless communication systems employing spatia...
Increasing interest in oceans increases the scientific, commercial and military studies in this fiel...
The propagation of light underwater is tied closely to the optical properties of water. In particula...
The growing need for underwater observation and subsea monitoring systems has stimulated considerabl...
Abstract-Recent interest in ocean exploration has brought about a desire for developing wireless com...
The underwater wireless optical communication (UWOC) system gives very high rate of underwater data ...
The propagation of light underwater is tied closely to the optical properties of water. In particula...
Turbulence affects the performance of underwater wireless optical communications (UWOC). Although mu...
Underwater optical wireless communication (UOWC) offers the prospect of higher bandwidths and data r...
In the last decade, the field of wireless optical communication has gathered immense interest due to...
In underwater optical wireless communications (UOWC) the link performance is greatly affected by the...