The propagation of light underwater is tied closely to the optical properties of water. In particular, the underwater channel imposes attenuation on the optical signal in the form of scattering, absorption, and turbulence. These attenuation factors can lead to severe spatial and temporal dispersion, which restricts communication to a limited range and bandwidth. In this paper, we propose a statistical model to estimate the probability density function of the temporal dispersion in underwater wireless optical communication (UWOC) based Internet of Underwater Things (IoUTs) using discrete histograms. The underwater optical channel is modeled using Monte Carlo simulations, and the effects of temporal dispersion are presented by measuring the m...
Underwater optical wireless communication (UOWC) has recently become a major research subject as it ...
A resurgence is occurring in the area of underwater laser communications. While acoustic systems are...
In underwater optical wireless communications (UOWC)the channel impulse response is essential in cha...
The propagation of light underwater is tied closely to the optical properties of water. In particula...
Scattering by water molecules and particulate matters determines the path and distance of photon pro...
Abstract — We investigate in this paper channel modeling for underwater optical channels. In particu...
Underwater optical wireless communication (UOWC) offers the prospect of higher bandwidths and data r...
In underwater optical wireless communications (UOWC), scattering of the propagating light beam resul...
Optical wireless communications has shown tremendous potential for underwater applications as it can...
Optical signal propagation through underwater channels is affected by three main degrading phenomena...
Increasing interest in oceans increases the scientific, commercial and military studies in this fiel...
Optical signal propagation through underwater channels is affected by three main degrading phenomena...
In this paper, we are doing channel modeling for underwater optical channels. Particularly, we have ...
A comprehensive multiparameter model is proposed for underwater wireless optical communication (UWOC...
Non-sequential ray tracing simulations are commonly employed to model underwater visible light commu...
Underwater optical wireless communication (UOWC) has recently become a major research subject as it ...
A resurgence is occurring in the area of underwater laser communications. While acoustic systems are...
In underwater optical wireless communications (UOWC)the channel impulse response is essential in cha...
The propagation of light underwater is tied closely to the optical properties of water. In particula...
Scattering by water molecules and particulate matters determines the path and distance of photon pro...
Abstract — We investigate in this paper channel modeling for underwater optical channels. In particu...
Underwater optical wireless communication (UOWC) offers the prospect of higher bandwidths and data r...
In underwater optical wireless communications (UOWC), scattering of the propagating light beam resul...
Optical wireless communications has shown tremendous potential for underwater applications as it can...
Optical signal propagation through underwater channels is affected by three main degrading phenomena...
Increasing interest in oceans increases the scientific, commercial and military studies in this fiel...
Optical signal propagation through underwater channels is affected by three main degrading phenomena...
In this paper, we are doing channel modeling for underwater optical channels. Particularly, we have ...
A comprehensive multiparameter model is proposed for underwater wireless optical communication (UWOC...
Non-sequential ray tracing simulations are commonly employed to model underwater visible light commu...
Underwater optical wireless communication (UOWC) has recently become a major research subject as it ...
A resurgence is occurring in the area of underwater laser communications. While acoustic systems are...
In underwater optical wireless communications (UOWC)the channel impulse response is essential in cha...