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Localizing individual soniferous fish using passive acoustic monitoring

机译:使用被动声学监测本地化单独的讽刺鱼

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Identifying where fish inhabit is a fundamentally important topic in ecology and management allowing acoustically sensitive times and areas to be prioritized. Passive acoustic localization has the benefit of being a non-invasive and non-destructive observational tool, and provides unbiased data on the position and movement of aquatic animals. This study used the time difference of arrivals (TDOA) of sound recordings on a four-hydrophone array to pinpoint the location of male oyster toadfish, Opsanus tau, a cryptic fish that produces boatwhistles to attract females. Coupling the TDOA method with cross correlation of the different boatwhistles, individual toadfish were mapped during dawn (0523-0823), midday (1123-1423), dusk (1723-2023) and night (2323 - 0223) to examine the relationship between temporal and spatial trends. Seven individual males were identified within 0.5-24.2 m of the hydrophone array and 0.0-18.2 m of the other individuals. Uncertainty in passive acoustics localization was investigated using computer simulations as 2.0 m within a bearing of 033 to 148 degrees of the linear hydrophone array. Passive acoustic monitoring is presented as a viable tool for monitoring the positions of soniferous species, like the oyster toadfish. The method used in this study could be applied to a variety of soniferous fishes, without disturbing them or their environment. Understanding the location of fishes can be linked to temporal and environmental parameters to investigate ecological trends, as well as to vessel activity to discuss how individuals' respond to anthropogenic noise.
机译:识别鱼类居住的地方,生态和管理中的根本重要课题,允许声学的敏感时间和区域优先考虑。被动声学定位具有非侵入性和非破坏性观测工具的益处,并提供了关于水生动物的位置和运动的无偏的数据。本研究使用了四个水母阵列上的射击物(TDOA)的时间差,以确定雄性牡蛎蟾鱼,Opsanus tau,一种生产船只吸引女性的神秘鱼。在黎明期间映射了不同船舶的TDOA方法,在黎明(0523-0823),午举(1123-1423),黄昏(1723-2023)和夜间(2323 - 0223)期间映射了个体Toadfish的映射,检查了时间的关系和空间趋势。七种单独的男性在水听器阵列的0.5-24.2米范围内鉴定为0.0-18.2米。使用计算机仿真调查了被动声学定位的不确定性。 2.0米在033至148度的线性流水声阵列中。被动声监测作为一种可行的工具,用于监测有麻烦的物种的位置,如牡蛎蟾鱼。本研究中使用的方法可以应用于各种麻烦的鱼类,而不会扰乱它们或环境。了解鱼类的位置可以与时间和环境参数相关联,以调查生态趋势,以及船舶活动,讨论个体如何应对人为噪音。

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