A real-time TE system for pervasive DERs

R. Gupta, D. O'Mahony
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Abstract

The grid is witnessing an increasing emergence of small distributed energy resources (DERs), along with a greater prevalence of storage systems. These participants have highly dynamic properties and thus introduce several transactional challenges. We propose a rapidly convergent, privacy preserving, real-time transactive energy (TE) system which uses a dynamic pay-as-bid double auction. We describe a prototype which simulates the behavior of the auction system and its participants who negotiate prices with individual bidding strategies. The proposed system allows the participants to transact without seeking numerous quantity-price trading pairs, thereby protecting confidentiality of cost curves of each competing participant. A less information-rich input does introduce some element of higher price volatility as an outcome, which, in this context, can be tolerated as parties perform small-ticket transactions. Such a TE system can be a step forward in preparing for a future where large generating firms and smaller complementary DERs participate in the market on an equal footing.
一个实时TE系统,用于普及的DERs
电网正在见证小型分布式能源(DERs)的日益兴起,同时储能系统也越来越普及。这些参与者具有高度动态的属性,因此引入了一些事务性挑战。我们提出了一种快速收敛、隐私保护、实时的交易能源(TE)系统,该系统采用动态的按出价付费双拍卖。我们描述了一个原型,它模拟了拍卖系统及其参与者的行为,他们通过各自的竞标策略来协商价格。该系统允许参与者在不寻求大量数量-价格交易对的情况下进行交易,从而保护了每个竞争参与者成本曲线的机密性。信息不丰富的输入确实会带来一些更高价格波动的因素,在这种情况下,当各方进行小额交易时,这是可以容忍的。这样的电力系统可以为未来的大型发电公司和较小的互补电力公司平等参与市场做准备。
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