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Prediction and assessment of demand response potential with coupon incentives in highly renewable power systems

机译:高可再生电力系统优惠券激励需求响应潜力的预测与评估

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Demand Response (DR) provides both operational and financial benefits to a variety of stakeholders in the power system. For example, in the deregulated market operated by the Electric Reliability Council of Texas (ERCOT), load serving entities (LSEs) usually purchase electricity from the wholesale market (either in day-ahead or real-time market) and sign fixed retail price contracts with their end-consumers. Therefore, incentivizing end-consumers' load shift from peak to off-peak hours could benefit the LSE in terms of reducing its purchase of electricity under high prices from the real-time market. As the first-of-its-kind implementation of Coupon Incentive-based Demand Response (CIDR), the EnergyCoupon project provides end-consumers with dynamic time-of-use DR event announcements, individualized load reduction targets with EnergyCoupons as the incentive for meeting these targets, as well as periodic lotteries using these coupons as lottery tickets for winning dollar-value gifts. A number of methodologies are developed for this special type of DR program including price/baseline prediction, individualized target setting and a lottery mechanism. This paper summarizes the methodologies, design, critical findings, as well as the potential generalization of such an experiment. Comparison of the EnergyCoupon with a conventional Time-of-Use (TOU) price-based DR program is also conducted. Experimental results in the year 2017 show that by combining dynamic coupon offers with periodic lotteries, the effective cost for demand response providers in EnergyCoupon can be substantially reduced, while achieving a similar level of demand reduction as conventional DR programs.
机译:需求响应(DR)为电力系统中的各种利益相关者提供运营和财务效益。例如,在德克萨斯州电力可靠性委员会(ERCOT)的令人失调的市场中,负载服务实体(LSE)通常从批发市场购买电力(在前方或实时市场)和标志固定零售价合同与他们的最终消费者。因此,终端消费者从峰值到非高峰时段的负载转移可能会使LSE有益于降低实时市场的高价格购买的电力。作为优惠券的优惠券激励的需求响应(CIDR)的重点实施,能量COUPON项目为最终消费者提供了具有动态使用时间的博士事件通知,个性化负载减少目标,作为会议的激励这些目标,以及使用这些优惠券的定期彩票作为获胜美元价值礼品的彩票票。为这种特殊类型的DR程序开发了许多方法,包括价格/基线预测,个性化目标设置和彩票机制。本文总结了这种实验的方法,设计,关键发现以及这种实验的潜在概括。还进行了通过传统使用时间(TOU)基于价格的DR程序的能量CUPON的比较。 2017年的实验结果表明,通过将动态优惠券提供定期彩票,能源级需要的有效成本可以大大减少,同时实现与传统DR程序相似的需求水平。

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