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Optimization of a multiple-scale renewable energy-based virtual power plant in the UK

机译:在英国优化基于多级可再生能源的虚拟电厂

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Commercial Virtual Power Plants (CVPPs) have recently emerged as one of the most promising solutions for enabling intermittent renewable energy generation sources to efficiently trade the energy they generate in the electricity market. In this study, we develop several optimization and forecasting methods, and apply them to model the operation of multiple renewable generators across Scotland, trading energy as a single CVPP. The aim of the techniques developed is to optimize the scheduling of the CVPP, such as to maximize revenues and reduce the penalties resulting from forecasting errors, while considering operational and market constraints, such as variable costs, ramping rates, start-up costs, day-ahead and imbalance prices. The practical application is based on a case study of operational renewable energy plants in Scotland, and optimizes the CVPP operation for 3 months in winter and summer of 2017, respectively. Renewable generation output, day-ahead prices and imbalance prices are obtained from historical data for the same year. The numerical results show a profit increase of around 12% for the CVPP compared to standalone operation of renewable plants. This increase is observed for different market and imbalance settlement strategies.
机译:商业虚拟电厂(CVPP)最近成为最有希望的解决方案之一,它使间歇性可再生能源产生源能够有效地交易其在电力市场中产生的能源。在这项研究中,我们开发了几种优化和预测方法,并将其应用于整个苏格兰多个可再生发电机的运行建模,将能源作为一个CVPP进行交易。所开发技术的目的是优化CVPP的调度,以最大化收益并减少因预测错误而导致的罚款,同时考虑到运营和市场约束,例如可变成本,加速费率,启动成本,天数。 -提前和价格失衡。实际应用基于苏格兰运营中的可再生能源工厂的案例研究,并分别优化了CVPP运行于2017年冬季和夏季的3个月。可再生能源发电量,日前价格和不平衡价格是从同一年的历史数据中获得的。数值结果显示,与独立运行可再生能源工厂相比,CVPP的利润增长了约12%。对于不同的市场和不平衡结算策略,观察到这种增加。

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