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A continuous compact model for cascaded hydro-power generation and preventive maintenance scheduling

机译:级联水力发电和预防性维护调度的连续紧凑模型

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This paper proposes a new nonlinear model for cascaded hydro-power generation and preventive maintenance scheduling. The reservoir level and the maintenance scheduling are optimized, simultaneously, to minimize the thermal generation complement and to maximize the future water value. To achieve better accuracy, the productivity was modeled considering the head effect. Since the model considers individualized plants, the water flow balance must be taken into account. By means of a transformation, this constraint can be modeled only with the reservoir volume. Also, by means of a simple nonlinear transformation, the maintenance scheduling was modeled as continuous variable, instead of the usual binary models. The maintenance start date is a continuous variable, so, it allows the maintenance to begin within the time period. These simplifications altogether define a compact continuous nonconvex problem. The proposed model was successfully solved by a Differential Evolution (DE) algorithm in Brazilian cascades. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了一种用于梯级水力发电和预防性维护调度的新非线性模型。同时优化水库水位和维护计划,以最大程度减少热能发电量补充并最大化未来水价。为了获得更好的精度,对生产率进行了建模,考虑了头部效应。由于该模型考虑了个性化工厂,因此必须考虑水流平衡。通过转换,可以仅使用储层体积对此约束进行建模。此外,通过简单的非线性变换,将维护计划建模为连续变量,而不是通常的二进制模型。维护开始日期是一个连续变量,因此,它允许维护在该时间段内开始。这些简化总共定义了一个紧凑的连续非凸问题。所提出的模型已通过巴西级联中的差分进化(DE)算法成功求解。 (C)2015 Elsevier Ltd.保留所有权利。

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