Sequential Convex Program for Variable Speed Pump Scheduling in Water Distribution Systems

Pham Duc Dai
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Abstract

Operation of water distribution systems (WDSs) to reduction of water leakage can be achieved by properly operating variable speed pumps (VSPs). This practical problem can be casted into a nonlinear program (NLP) where decision variables are relative speeds of pumps while the state variables are flows and nodal heads. The formulated NLP consists of both convex and non-convex constraints, for this reason, we proposed to apply the sequential convex programming technique (SCP) for solving the NLP. The advantage of the SCP method lies in the fact that instead of solving the non-convex NLP, we solve sequential convex NLPs and, in this case, it requires less number of iterates for solution convergence than solving the problem directly by using standard NLP solvers. The effectiveness of the approach was demonstrated on two WDSs for optimal VSP scheduling problem
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配水系统中变速泵调度的序贯凸规划
通过正确操作变速泵,可使配水系统运行以减少漏水。这个实际问题可以转化为一个非线性程序(NLP),其中决策变量是泵的相对速度,状态变量是流量和节点头。公式化的NLP由凸约束和非凸约束组成,因此,我们提出应用序列凸规划技术(SCP)来求解NLP。SCP方法的优点在于,我们不求解非凸NLP,而是求解序列凸NLP,在这种情况下,与直接使用标准NLP求解器求解问题相比,它需要较少的迭代次数来求解收敛。在两个wds上验证了该方法对VSP优化调度问题的有效性
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