Analysis of an agent-based model for predicting the behavior of bighead carp (Hypophthalmichthys nobilis) under the influence of acoustic deterrence

Craig Garzella, J. Gaudy, Karl R. B. Schmitt, A. Mansuri
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Abstract

Bighead carp (Hypophthalmichthys nobilis) are an invasive, voracious, highly fecund species threatening the ecological integrity of the Great Lakes. This agent-based model and analysis explore bighead carp behavior in response to acoustic deterrence in an effort to discover properties that increase likelihood of deterrence system failure. Results indicate the most significant (p < 0.05) influences on barrier failure are the quantity of detritus and plankton behind the barrier, total number of bighead carp successfully deterred by the barrier, and number of native fishes freely moving throughout the simulation. Quantity of resources behind the barrier influence bighead carp to penetrate when populations are resource deprived. When native fish populations are low, an accumulation of phytoplankton can occur, increasing the likelihood of an algal bloom occurrence. Findings of this simulation suggest successful implementation with proper maintenance of an acoustic deterrence system has potential of abating the threat of bighead carp on ecological integrity of the Great Lakes.
基于智能体的高头鱼在声阻作用下的行为预测模型分析
鳙鱼(Hypophthalmichthys nobilis)是一种入侵的、贪婪的、高产的物种,威胁着五大湖的生态完整性。这个基于主体的模型和分析探讨了高头鲤鱼对声威慑的行为反应,以发现增加威慑系统失败可能性的特性。结果表明,影响屏障破坏最显著的因素是屏障后的碎屑和浮游生物数量、被屏障成功阻止的鳙鱼总数以及在整个模拟过程中自由移动的本地鱼类数量。当资源被剥夺时,屏障后面的资源数量会影响鳙鱼的渗透。当本地鱼类数量减少时,浮游植物的积累就会发生,从而增加了发生藻华的可能性。模拟结果表明,通过适当维护声学威慑系统,成功实施有可能减轻鳙鱼对五大湖生态完整性的威胁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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