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Harmonious Integration of Faster-Acting Energy Storage Systems Into Frequency Control Reserves in Power Grid With High Renewable Generation

机译:高可再生能源电网中快动作储能系统与频率控制储备的和谐整合

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This paper presents a method for harmoniously coordinating roles between generators and faster-acting energy storage systems (ESSs), e.g., batteries, to improve their frequency response and regulation services to the grid, particularly at the high wind penetration. This paper theoretically demonstrates that the proposed droop with the state of charge (SOC) feedback (DaSOF) provides a unified frequency control framework for distributed and energy-constrained ESS, seamlessly fitting the conventional primary and secondary frequency control practice. The ESS autonomously takes charge of high-frequency components of a frequency deviation and thus complements the frequency controls of the incumbent generators. By securing the SOC of the ESS at the desired level, the method provides the capability to provide other ancillary services from the energy-constrained ESS. These coordinated roles are represented and validated through time- and frequency-domain analyses. Rigorous case studies using DIgSILENT/PowerFactory demonstrate the efficacy of the proposed method to support the high level of variable renewable energy, which should help in improving the value of operating the ESS and scale up renewable energy.
机译:本文提出了一种协调协调发电机和速效储能系统(ESS)(例如电池)之间作用的方法,以改善其对电网的频率响应和调节服务,特别是在高风速下。本文从理论上证明,所提出的带电荷状态(SOC)反馈的下垂(DaSOF)为分布式和受能量限制的ESS提供了统一的频率控制框架,无缝地适应了常规的一次和二次频率控制实践。 ESS自主负责频率偏差的高频分量,从而补充了现有发电机的频率控制。通过将ESS的SOC确保在期望的水平,该方法提供了从能量受限的ESS提供其他辅助服务的能力。这些协调的角色通过时域和频域分析来表示和验证。使用DIgSILENT / PowerFactory进行的严格案例研究证明了所提出方法支持高水平的可变可再生能源的功效,这将有助于提高ESS的运营价值并扩大可再生能源的规模。

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