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Efficient Large-Scale Energy Storage Dispatch: Challenges in Future High Renewable Systems

机译:高效的大规模储能调度:未来高可再生系统的挑战

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Future power systems with high penetrations of variable renewables will require increased levels of flexibility from generation and demand-side sources in order to maintain secure and stable operation. One potential flexibility source is large-scale energy storage, which can provide a variety of ancillary services across multiple time scales. In order for appropriate levels of investment to take place, and in order for existing assets to be utilized optimally, it is essential that market signals are present which encourage suitable levels of flexibility, either from storage or alternative sources. Suboptimal storage plant dispatch due to uncertainty and inefficient market incentives are represented as operational constraints on the storage plant, and the impact of these inefficiencies are highlighted. Thus, changes required in operational practices for storage plant at different installed wind capacity levels, and the challenges that private storage plant operators will face in generating appropriate bids in a market environment at high variable renewable penetrations are explored. The impacts on system generating costs and storage profits are explored under different plant operating assumptions.
机译:具有可变可再生能源的高渗透率的未来电力系统将需要提高发电和需求方来源的灵活性,以维持安全和稳定的运行。一种潜在的灵活性来源是大规模的能量存储,它可以在多个时间范围内提供各种辅助服务。为了进行适当水平的投资,并为了最佳地利用现有资产,必须提供市场信号,以鼓励适当水平的灵活性(来自存储或替代来源)。由于不确定性和无效的市场激励而导致的次优存储工厂调度被表示为对存储工厂的操作约束,并着重强调了这些效率低下的影响。因此,探讨了在不同安装风能水平下存储工厂的操作方法所需要的变化,以及私有存储工厂运营商在以可变的高可再生能源渗透率在市场环境中进行适当竞标时将面临的挑战。在不同的工厂运营假设下探讨了对系统发电成本和存储利润的影响。

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