Pump Scheduling for Water Supply Production using Mathematical Programming

Chansiri Singhtaun, Wichitra Rungraksa
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Abstract

This research proposes a mathematical model and a solution for a pump scheduling problem applied in a water supply production plant of the Provincial Waterworks Authority so that the minimum electricity cost is achieved. The branch and cut algorithm in OpenSolver is used to solve the problem. Five pump scheduling scenarios are studied. In the first scenario, the pump scheduling program is implemented in the present production system without production condition changes. In the other scenarios, four main factors are adjusted to analyze the effect on the electricity cost. These factors are the minimum volume of water in a clear water tank, the stock of finished water, the piping capacity, and water demand. The results of the first scenario show that the proposed pump schedules can reduce the electricity cost by 7.87%. The results of the other scenarios indicate that all main factors, except the capacity of the pipe line affect the pump schedules and the electricity cost. The experimental results of these four scenarios yield significant information in regard to production system improvement.
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基于数学规划的供水生产水泵调度
本文针对省水务局供水生产厂的水泵调度问题,提出了以电力成本最小为目标的数学模型和解决方案。利用OpenSolver中的分支切断算法求解该问题。研究了五种泵调度方案。在第一种情况下,在不改变生产条件的情况下,在现有生产系统中执行泵调度程序。在其他情况下,调整四个主要因素来分析对电力成本的影响。这些因素是清水箱中的最小水量、成品水的存量、管道容量和用水需求。第一种方案的结果表明,所提出的水泵调度方案可使电力成本降低7.87%。其他方案的结果表明,除管道容量外,所有主要因素都影响泵的调度和电费。这四种情景的实验结果为生产系统的改进提供了重要的信息。
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