首页> 外文会议>2012 Sixth IEEE/PES Transmission and Distribution: Latin America Conference and Exposition. >Differences between the operations of the generation power system of Uruguay operated minimizing the expected value vs. minimizing the value at risk of the future operating costs
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Differences between the operations of the generation power system of Uruguay operated minimizing the expected value vs. minimizing the value at risk of the future operating costs

机译:乌拉圭发电系统运行之间的差异使期望值最小化与有未来运行成本风险的值最小化

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Hydrothermal systems optimal operation includes a step of optimizing the resources that are valued system storable. This optimization is performed traditionally by a stochastic dynamic programming in which the objective function to minimize is the expected value of future cost of operation, also known as Bellman function. While in theory, minimize the expected value of future cost of operation is “objective” in practice there are many reasons why the actual operation includes additional precautions, sometimes actually taken by operators who are the ones which have responsibility for the consequences of the operation or sometimes made based on safety considerations were not introduced in the optimization of the operation. This work shows the implementation on the platform Simulation of Electric Power Systems of stochastic dynamic programming algorithm for specifying the objective function cost reduction future with a certain probability of exceedance. This work was performed as part of the draft platform enhancements SimSEE with funding from the Energy Sector A(II. The paper presents the results of the operation to minimize the expected value of future cost and minimizing the risk value of 5% of being exceeded. Both operations are compared both costs achieved as in the qualitative aspects. The results allow evaluating the cost of being introduced by risk averse and also identify situations where there are major differences. It also discusses the impact on the marginal cost of system operation with a slogan risk averse. This value is relevant because it is the basis for calculating the Uruguayan market spot price. These scenarios correspond to the operation in 2017 with high penetration of wind energy in the system.
机译:水热系统的最佳运行包括优化系统可存储资源的步骤。传统上,此优化是通过随机动态规划执行的,其中要最小化的目标函数是未来操作成本的预期值,也称为Bellman函数。虽然从理论上讲,将实际操作的未来成本的期望值减至最小是实践中的“目标”,但实际操作中还包含许多预防措施的原因很多,有时由负责操作后果的操作人员实际采取其他预防措施,或者有时出于安全考虑而做出的建议并未引入操作的优化中。这项工作展示了随机动态规划算法在电力系统仿真平台上的实现,该算法以一定的超出概率指定未来的目标函数成本降低。这项工作是由能源部门A(II)资助的平台增强版SimSEE草案的一部分。本文介绍了该操作的结果,以最大程度地降低未来成本的预期值并最大程度降低超过5%的风险值。比较这两种操作在质量方面的实现成本,结果可以评估风险规避所带来的成本,还可以识别存在重大差异的情况,并以口号讨论对系统运行边际成本的影响此值是相关的,因为它是计算乌拉圭市场现货价格的基础,这些情况对应于系统中风能渗透率较高的2017年运营情况。

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