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Long-term scheduling of cascaded hydro energy system with distributed water usage allocation constraints

机译:分布式水分配限制级联水电能量系统的长期调度

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In a hydro energy and water resource system it is desirable to optimize hydropower production with considerations of flood control, residential, agricultural and industrial water supply, navigation, environmental and ecological requirements, etc. Incorporating complicated constraints of cascaded reservoirs and government regulation on water resource usage allocation, this paper presents a long-term scheduling problem of hydro energy and water resource system based on chance-constrained programming with uncertainties of natural water inflows and water demands of different regions. The water usage regulation with uncertain natural inflow is modeled as probabilistic chance constraints. The nonlinear and noconvex hydro plant production function is converted into mixed integer formulation and a general mixed integer linear programming (MILP) method is applied to solve this complicated scheduling problem. Preliminary numerical testing results for a river basin with cascaded reservoirs show that based on the problem formulation presented in the paper, the long-term scheduling is solved efficiently and accurately. Numerical testing for a more complex hydro system is being conducted.
机译:在水电和水资源系统中,可以通过考虑洪水控制,住宅,农业和工业供水,导航,环境和生态要求等来优化水电生产等。将复杂的水库和政府监管对水资源进行复杂的制约使用分配,基于机会约束规划的水力能量和水资源系统的长期调度问题,其不同地区的天然水流量的不确定性和水需求。具有不确定的自然流入的水分法规被建模为概率机会限制。非线性和NoConvex水力植物生产功能转换为混合整数配方,并且应用了一般混合整数线性编程(MILP)方法来解决这种复杂的调度问题。具有级联水库的河流盆地的初步数值测试结果表明,基于本文介绍的问题制定,有效准确地解决了长期调度。正在进行更复杂的水力系统的数值测试。

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