Atkins Summer, Hager William W, Martcheva Maia
Department of Mathematical Sciences, University of Alabama in Huntsville, AL 35899, USA.
Department of Mathematics, University of Florida, FL 32601, USA.
Math Biosci Eng. 2024 May 30;21(5):6123-6149. doi: 10.3934/mbe.2024269.
In this paper, we investigate an optimal harvesting problem of a spatially explicit fishery model that was previously analyzed. On the surface, this problem looks innocent, but if parameters are set to where a singular arc occurs, two complex questions arise. The first question pertains to Fuller's phenomenon (or chattering), a phenomenon in which the optimal control possesses a singular arc that cannot be concatenated with the bang-bang arcs without prompting infinite oscillations over a finite region. 1) How do we numerically assess whether or not a problem chatters in cases when we cannot analytically prove such a phenomenon? The second question focuses on implementation of an optimal control. 2) When an optimal control has regions that are difficult to implement, how can we find alternative strategies that are both suboptimal and realistic to use? Although the former question does not apply to all optimal harvesting problems, most fishery managers should be concerned about the latter. Interestingly, for this specific problem, our techniques for answering the first question results in an answer to the the second. Our methods involve using an extended version of the switch point algorithm (SPA), which handles control problems having initial and terminal conditions on the states. In our numerical experiments, we obtain strong empirical evidence that the harvesting problem chatters, and we find three alternative harvesting strategies with fewer switches that are realistic to implement and near optimal.
在本文中,我们研究了一个先前已分析过的空间显式渔业模型的最优捕捞问题。从表面上看,这个问题似乎并无异常,但如果将参数设置到出现奇异弧的情况,就会出现两个复杂的问题。第一个问题与富勒现象(或颤振)有关,在这种现象中,最优控制具有奇异弧,该奇异弧无法与砰砰弧相连,否则会在有限区域内引发无限振荡。1)在我们无法通过解析证明这种现象的情况下,如何通过数值方法评估一个问题是否会发生颤振?第二个问题聚焦于最优控制的实施。2)当最优控制存在难以实施的区域时,我们如何找到既次优又切实可行的替代策略来使用?尽管前一个问题并非适用于所有最优捕捞问题,但大多数渔业管理者应该关注后一个问题。有趣的是,对于这个特定问题,我们回答第一个问题的技术也得出了第二个问题的答案。我们的方法包括使用切换点算法(SPA)的扩展版本,该版本可处理状态具有初始条件和终端条件的控制问题。在我们的数值实验中,我们获得了有力的经验证据表明捕捞问题会发生颤振,并且我们找到了三种切换次数较少的替代捕捞策略,这些策略切实可行且接近最优。