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Striking the Balance: Long-Term Groundwater Monitoring Design for Conflicting Objectives

机译:取得平衡:针对矛盾目标的长期地下水监测设计

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摘要

This study demonstrates the use of high-order Pareto optimization (i.e., optimizing a system for more than two objectives) on a long-term monitoring (LTM) application. The LTM application combines quantile kriging and the nondominated sorted genetic algorithm-II (NSGA-II) to successfully balance four objectives: (1) minimizing sampling costs, (2) maximizing the accuracy of interpolated plume maps, (3) maximizing the relative accuracy of contaminant mass estimates, and (4) minimizing estimation uncertainty. Optimizing the LTM application with respect to these objectives reduced the decision space of the problem from a total of 500 million designs to a set of 1,156 designs identified on the Pareto surface. Visualization of a total of eight designs aided in understanding and balancing the objectives of the application en route to a single compromise solution. This study shows that high-order Pareto optimization holds significant potential as a tool that can be used in the balanced design of water resources systems.
机译:这项研究证明了在长期监控(LTM)应用程序中使用高阶Pareto优化(即针对两个以上目标优化系统)。 LTM应用程序将分位数克里金法和非支配排序遗传算法II(NSGA-II)相结合,成功地平衡了四个目标:(1)最小化采样成本;(2)最大化内插羽状图的准确性;(3)最大化相对精度污染物质量估算,以及(4)最小化估算不确定性。针对这些目标优化LTM应用程序将问题的决策空间从总共5亿个设计减少到帕累托表面上确定的1156个设计。总共八个设计的可视化有助于理解和平衡应用程序目标,从而达到一个折衷解决方案。这项研究表明,高阶帕累托优化作为可用于水资源系统平衡设计的工具具有巨大的潜力。

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