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Small hydropower plants operations optimization in the market conditions

机译:市场条件下小型水电站的运行优化

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This paper intends to give an overview and identifies best practice designs for European feed-in tariffs targeted to support renewable generation. Furthermore, it introduces and compares feed-in premium designs of different European countries. The main purpose of this work is to develop optimal short-term planning models for price taker hydropower producer working in the existing regimes. Those models have to deal with the high level of uncertainty which is the water power introduces into the power system. We intend to provide guidance in decision-making aimed at maximizing the profit. A detailed analysis is made of a simpler reservoir configuration, which indicates that even though the problem is nonlinear, a bang-bang type of control is optimal, where the power stations are operated at maximum rates of flow. Some simple relationships between price and timing of decisions are calculated directly. A numerical algorithm is also developed. The task of a small HPP operation regime is solved for the maximum income within the cases of the known variation of prices at the market. An optimization tool known as generalized reduced gradient method for nonlinear optimization tasks is used to plan hydropower production under uncertainties.
机译:本文旨在概述并确定旨在支持可再生能源发电的欧洲上网电价的最佳实践设计。此外,它介绍并比较了不同欧洲国家的馈电高级设计。这项工作的主要目的是为在现有制度下工作的价格接受者水电生产商开发最佳的短期计划模型。这些模型必须处理高水平的不确定性,这是水力引入电力系统中的不确定性。我们打算在旨在最大程度地提高利润的决策方面提供指导。对较简单的水库配置进行了详细分析,这表明,即使问题是非线性的,爆炸式控制也是最佳的,其中电站以最大流量运行。价格和决策时间之间的一些简单关系可以直接计算。还开发了一种数值算法。在已知的市场价格变化的情况下,可以通过小规模的HPP操作方案来解决最大收入的问题。用于非线性优化任务的称为广义归一化梯度法的优化工具用于规划不确定性下的水力发电。

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