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Artificial Life Algorithm for Management of Multi-reservoir River Systems

机译:多水库河流系统管理的人工生命算法

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摘要

The design and operation of civil engineering systems, particularly water resources systems, has been pursued from the perspective of minimizing costs and related negative impacts, maximizing benefits, or a combination thereof. Due to the complex, nonlinear nature of the majority of systems, together with an increase in digital computing capabilities, global search algorithms are becoming a common means of meeting these objectives. This paper employs an artificial life algorithm, derived from the artificial life paradigm. The algorithm is evaluated using standard optimization test functions and is subsequently applied to determine optimal dam operations in multi-reservoir river systems. The optimal dam operation scheme is that which indirectly minimizes environmental impacts caused by short-term water level fluctuations. Optimal releases are sought by coupling an artificial life algorithm with FLDWAV, a one-dimensional, steady flow simulation model. The resulting multi-reservoir management model is successfully applied to a portion of the Illinois River Waterway.
机译:从最小化成本和相关的负面影响,最大化收益或其组合的角度出发,追求了土木工程系统,特别是水资源系统的设计和运行。由于大多数系统的复杂性,非线性性质以及数字计算功能的增强,全局搜索算法已成为满足这些目标的常用手段。本文采用了人工生命算法,该算法源自人工生命范例。使用标准优化测试功能对算法进行评估,然后将该算法应用于确定多水库河流系统中的最佳大坝运行。最佳的大坝运行方案是间接减少由短期水位波动引起的环境影响的方案。通过将人工寿命算法与一维稳定流动模拟模型FLDWAV结合来寻求最佳释放。由此产生的多水库管理模型已成功应用于伊利诺伊河水道的一部分。

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