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Absorption and scattering effects of Maalox,chlorophyll, and sea salt on a micro-LED-based underwater wireless optical communication [Invited] 被引量:4
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作者 Pengfei Tian Honglan Chen +12 位作者 Peiyao Wang Xiaoyan Liu Xinwei Chen gufan zhou Shuailong Zhang Jie Lu Pengjiang Qiu Zeyuan Qian Xiaolin zhou Zhilai Fang Lirong Zheng Ran Liu Xugao Cui 《Chinese Optics Letters》 SCIE EI CAS CSCD 2019年第10期57-64,共8页
In this work,a blue gallium nitride(GaN)micro-light-emitting-diode(micro-LED)-based underwater wireless optical communication(UWOC)system was built,and UWOCs with varied Maalox,chlorophyll,and sea salt concentrations ... In this work,a blue gallium nitride(GaN)micro-light-emitting-diode(micro-LED)-based underwater wireless optical communication(UWOC)system was built,and UWOCs with varied Maalox,chlorophyll,and sea salt concentrations were studied.Data transmission performance of the UWOC and the influence of light attenuation were investigated systematically.Maximum data transmission rates at the distance of 2.3 m were 933,800,910,and 790 Mbps for experimental conditions with no impurity,200.48 mg/m3 Maalox,12.07 mg/m3 chlorophyll,and 5 kg/m3 sea salt,respectively,much higher than previously reported systems with commercial LEDs.It was found that increasing chlorophyll,Maalox,and sea salt concentrations in water resulted in an increase of light attenuation,which led to the performance degradation of the UWOC.Further analysis suggests two light attenuation mechanisms,e.g.,absorption by chlorophyll and scattering by Maalox,are responsible for the decrease of maximum data rates and the increase of bit error rates.Based on the absorption and scattering models,excellent fitting to the experimental attenuation coefficient can be achieved,and light attenuation by absorption and scattering at different wavelengths was also investigated.We believe this work is instructive apply UWOC for practical applications. 展开更多
关键词 SCATTERING COMMUNICATION OPTICAL
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