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An inexact programming approach for supporting ecologically sustainable water supply with the consideration of uncertain water demand by ecosystems

机译:考虑生态系统不确定的需水量的不精确规划方法来支持生态可持续的供水

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This paper presents the development and the first application of an inexact quadratic programming (IQP) approach for sustainable water supply under multiple uncertainties. The developed IQP improves conventional nonlinear programming by tackling multiple uncertainties within an individual parameter; IQP is also superior to existing inexact methods due to its reflection of economies of scale and reduction of computational requirements. An interactive solution algorithm with high computational efficiency was also proposed. The application of IQP to long-term planning of a multi-source multi-sector water supply system demonstrated its applicability. The close reflection of system complexities, such as multiple uncer tainties, scale economies and dynamic parameters, could enhance the robustness of the optimization process as well as the acceptability of obtained results. Corresponding to varied system conditions and decision priorities, the interval solutions from IQP could help generate a series of long-term water supply strategies under a number of eco nomic, environmental, ecological, and water-security targets.
机译:本文介绍了不精确二次规划(IQP)方法在多种不确定性下可持续供水的发展和首次应用。通过解决单个参数中的多个不确定性,开发的IQP改进了常规的非线性编程。 IQP还反映了规模经济和减少了计算需求,因此它也优于现有的不精确方法。还提出了一种具有高计算效率的交互式求解算法。 IQP在多源多部门供水系统的长期规划中的应用证明了其适用性。系统复杂性(例如多个不确定性,规模经济和动态参数)的紧密反映可以增强优化过程的鲁棒性以及所获得结果的可接受性。与不同的系统条件和决策优先级相对应,IQP的区间解决方案可以帮助在一系列经济,环境,生态和水安全目标下制定一系列长期供水策略。

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