Power house I/O curves considering head dependency

S. Mariano, M. Coimbra, M. Calado, L. Ferreira
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引用次数: 3

Abstract

Deregulation and liberalization of electric power industry, among other things, has created new requirements for the market participants. The power system engineer, operator, and, in general, the market participant is being faced with requirements for which he does not have adequate training and the proper software tools. Particularly for the generation companies (GenCo) the exploitation of hydro power plants is foremost concern. In this scenario the powerhouse input-output characteristics (I/O) of hydro power plants are major curves for the optimization problem of central exploitation. Some methods had been applied for the I/O curves determination without the head loss effect consideration and neglecting the non-linearity characteristic or considering as stepwise approximation. This paper presents a new method that takes into account both the non-linearity characteristic and the head loss effect. This method, due to unit's non-linearity proper characteristics, requires that the cost of each unit (water flow through powerhouse) must be expressed in terms of quadratic costs. Through this approach, the obtained results are optimal, but referring to a convex objective function (approximated to the original function), with added advantage on reduced computation time.
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考虑水头依赖性的发电厂I/O曲线
除其他事项外,电力工业的放松管制和自由化对市场参与者提出了新的要求。电力系统工程师、操作员,以及一般的市场参与者,都面临着缺乏足够培训和适当软件工具的需求。特别是对于发电公司(GenCo)来说,水力发电厂的开发是他们最关心的问题。在这种情况下,水电厂的机组投入产出特性(I/O)是集中开发优化问题的主要曲线。在不考虑水头损失效应、忽略非线性特性或采用逐步逼近法确定I/O曲线时,有几种方法被应用。本文提出了一种既考虑非线性特性又考虑水头损失效应的新方法。该方法由于机组本身的非线性特性,要求每台机组(通过机组的水流)的成本必须用二次成本来表示。通过这种方法,得到的结果是最优的,但指的是一个凸目标函数(近似于原始函数),具有减少计算时间的优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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