详细信息
文献类型:会议论文
英文题名:The Radiating Sound Signals of Golden Pomfret Farming in a Large Cage
作者:Zhang, Peizhen[1]; Gao, Shouyong[2]; Wang, Zhenpeng[3]; Liu, Huan[1]; Shen, Chen[1]; Mo, Qingshu[1]
机构:[1] Guangdong Ocean University, College of Electronic and Information Engineering, Zhanjiang, China; [2] National Key Laboratory of Science and Technology on Underwater Acoustic Antagonizing, Zhanjiang, China; [3] Chinese Academy of Sciences, Goangzhou Institute of Energy Conversion, Guangzhou, China
会议论文集:2021 OES China Ocean Acoustics, COA 2021
会议日期:July 14, 2021 - July 17, 2021
会议地点:Harbin, China
语种:英文
外文关键词:Excited states - Acoustic variables measurement - Wave energy conversion - Feeding - Oceanography - Ships
外文摘要:The radiating sound characteristics of golden pomfret farming in a large cage powered by wave energy and photovoltaic generation are studied. Radiating sound signals in time and spectral domain of fish in the cage are measured during 24 hours. The testing contents include: the fish are in a quiet free-swimming state, the fish are excited by outside interference of a large ship, and are stimulated by feeding. The conclusions are as follows: the external disturbance caused by the power equipment and small fishing boats have no obvious effect on the vocalization of fish; When the golden pomfret are in the state of quiet and free-swimming late at night or early in the morning, they do not eat and send the sounds weakly or even keep silence, and average SPL(sound pressure level) of the ocean background is about 70dB. During the feeding process, the fish produce knocking and chewing sounds with frequency band ranged from 300-1100Hz, and the center frequency is 670Hz. The highest SPL in the spectrum is about 88dB. When the fish are disturbed by an passing large ship and feeding activities occur at the same time, the highest SPL is about 103dB with the central frequency of 630Hz. The radiating sound of the fish is superimposed with the interference signal of 100-2400Hz. The results show that under strong background noise, the sound production of fish can be measured by passive sonar. The studies are helpful for mastering time and frequency characteristics of the radiating sound by fish in the large cage. The main purpose of this study is to provide a reference for analysis and evaluation of the correlation between the biological behavior and acoustic ecology of the ocean. ? 2021 IEEE.
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