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Dynamic incorporation of nonlinearity into MILP formulation for short-term hydro scheduling

机译:非线性的动态掺入短期水电调度中的MILP制剂

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Optimization tools are widely used for solving the short-term hydro scheduling (STHS) problem in a cascaded hydro system. In a mixed integer linear programming (MILP)-based formulation, the nonlinear and non-convex hydropower production function (HPF) is represented by piecewise linear approximation. However, instead of using a set of predefined curves with static breakpoints or a preprocessing phase to define the complete relationship between the power output, the net head, and the water discharge, this paper proposes a novel method in which the breakpoints in the linearization are determined dynamically, taking into account the time-varying head effect, intake loss, penstock loss, tailrace loss, and head-dependent turbine efficiency. Only one binary variable is needed to indicate the on/off status and power generation of a unit per period. Furthermore, there are few studies available on how to represent the HPF precisely for the hydraulic system where penstocks are shared by multiple generating units. In this paper, we investigate three heuristics to explicitly incorporate the nonlinear and state-dependent power loss in shared penstocks into the STHS problem. The method and heuristics have been implemented in an operational STHS tool used by many hydropower producers in Nordic countries. We use a simple hydro system to illustrate the method and heuristics and a real hydro system in Northern Norway to study calculation efficiency and solution quality. The numerical results indicate that the proposed method can precisely represent the head-dependent and nonlinear operating characteristics of the generating units. The accurate modeling of a system with multi-level shared penstock configurations is crucial for obtaining the optimal unit commitment. The heuristics can effectively handle the power loss in shared penstock in various operating conditions.
机译:优化工具广泛用于求解级联水电系统中的短期水电调度(STHS)问题。在混合整数线性编程(基于MILP)的配方中,非线性和非凸水电生产函数(HPF)由分段线性近似表示。但是,除了使用静态断点或预处理阶段的一组预定义曲线来定义电力输出,网头和排水之间的完整关系,本文提出了一种新的方法,其中线性化中的断点是在动态确定,考虑到时变头效应,进气损失,钢笔损失,尾部损耗和头依赖性涡轮效率。只需要一个二进制变量来指示每个时段的单位的开/关状态和发电。此外,很少有关于如何精确地代表HPF的研究,其中液压系统由多个产生单元共享。在本文中,我们调查了三个启发式,明确地将共享的压路机中的非线性和状态依赖的功率损失纳入了STHS问题。该方法和启发式已经在北欧国家的许多水电生产商使用的运营STHS工具中实施。我们使用简单的水力系统来说明挪威北部的方法和启发式和真正的水电系统,以研究计算效率和解决方案质量。数值结果表明该方法可以精确地表示发电机的头部相关和非线性操作特性。具有多级共享对策配置的系统的精确建模对于获得最佳单位承诺至关重要。启发式可以在各种操作条件下有效地处理共用压钢中的功率损耗。

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