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Contract-based Time-of-use Pricing for Energy Storage Investment

机译:基于合同的储能投资使用时间价格定价

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Time-of-use (ToU) pricing is widely used by the electricity utility. A carefully designed ToU pricing can incentivize end-users’ energy storage deployment, which helps shave the system peak load and reduce the system social cost. However, the optimization of ToU pricing is highly non-trivial, and an improperly designed ToU pricing may lead to storage investments that are far from the social optimum. In this paper, we aim at designing the optimal ToU pricing, jointly considering the social cost of the utility and the storage investment decisions of users. Since the storage investment costs are users’ private information, we design low-complexity contracts to elicit the necessary information and induce the proper behavior of users’ storage investment. The proposed contracts only specify three contract items, which guides users of arbitrarily many different storage-cost types to invest in full, partial, or no storage capacity with respect to their peak demands. Our contracts can achieve the social optimum when the utility knows the aggregate demand of each storage-cost type (but not the individual user’s type). When the utility only knows the distribution of each storage-cost type’s demand, our contracts can lead to a near-optimal solution. The gap with the social optimum is as small as 1.5% based on the simulations using realistic data. We also show that the proposed contracts can reduce the system social cost by over 30%, compared with no storage investment benchmark.
机译:使用时间(TOU)定价被电力效用广泛使用。精心设计的TOU定价可以激励最终用户的能量存储部署,这有助于刮起系统峰值负荷并降低系统社会成本。然而,TOU定价的优化是非常非凡的,并且设计不当的TOU定价可能导致远离社会最佳的存储投资。在本文中,我们的目标是设计最佳的TOU定价,共同考虑了用户的社会成本和用户的存储投资决策。由于存储投资成本是用户的私人信息,我们设计低复杂性合同,以引出必要的信息并诱导用户存储投资的适当行为。拟议的合同仅指出三个合同项目,指导用户的用户是完全,部分或没有储存能力的完全,部分或没有储存能力。当实用程序知道每个存储成本类型的总需求(但不是单个用户类型)时,我们的合同可以实现社交最佳。当实用程序仅知道每个存储成本类型的需求的分配时,我们的合同可能会导致近最佳解决方案。使用现实数据的模拟,具有社会最佳最佳的间隙为1.5%。我们还表明,与无存储投资基准相比,拟议的合同可以将系统社会成本降低超过30%。

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