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Bidding System Design for Multiperiod Electricity Markets: Pricing of Stored Energy Shiftability

机译:多层次电力市场的竞标系统设计:储存能源移动性定价

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In this paper, we design a bidding system for a multiperiod electricity market in which market players participate with power generators and energy storage resources. For the bidding system design, we first develop a sequential procedure to determine a separate multidimensional bid function, i.e., an ensemble of period-specific bid functions, which enables to regard the multiperiod electricity market as an ensemble of conventional period-specific electricity markets. This sequential determination also enables to construct a distributed approximate scheme for multiperiod electricity market clearing. Then, based on a basis transformation similar to the Fourier transformation, we propose a bidding system with explicit consideration of the pricing of energy shiftability. It is shown that, in the situation where the optimal price profile levels off due to high penetration of energy storage, the distributed approximate scheme in the Fourier-like basis can attain the optimal market clearing with the minimal social cost. In addition, we numerically investigate the resultant deadweight loss, i.e., an increase of social costs caused by approximation, varying the levels of energy storage penetration.
机译:在本文中,我们设计了一个用于多层次电力市场的招标系统,其中市场参与者参与发电机和能量存储资源。对于竞标系统设计,我们首先开发一个顺序过程,以确定单独的多维出价功能,即,特定于期特定的出价功能的集合,这使得多级电力市场成为传统时期特定电力市场的集合。该顺序确定还可以实现用于多层次电力市场清除的分布式近似方案。然后,基于类似于傅里叶变换的基础转换,我们提出了一种具有明确考虑能量移动性定价的竞标系统。结果表明,在最佳价格轮廓由于能量存储的高渗透而关闭的情况下,傅里叶的基础上的分布式近似方案可以实现最佳的社会成本清算。此外,我们在数值上调查了所得的重量损失,即增加了由近似引起的社会成本,改变能量储存渗透水平。

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