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Energy storage opportunities and capabilities of a type 3 wind turbine generator

机译:3型风力发电机的储能机会和功能

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Wind power plants and other renewable power plants with power electronic interfaces are capable of delivering frequency response (both governor and/or inertial response) to the grid by a control action; thus, the reduction of available online inertia as conventional power plants are retired can be compensated by designing renewable power plant controls to include frequency response. The source of energy to be delivered as inertial response is determined by the type of generation and control strategy chosen. The cost of energy storage drops over time, and global research activities on energy storage are very active, funded both by the private industry and governments. Different industry sectors (e.g., transportation, energy) are the major drivers of the recent storage research and development. This work investigates the opportunities and capabilities of deploying energy storage in renewable power plants. In particular, we focus on wind power plants with doubly-fed induction generators, or Type 3 wind turbine generator (WTGs). We find that the total output power of a system with Type 3 WTGs with energy storage can deliver a power boost during inertial response that is up to 45% higher than one without energy storage without affecting the torque limit, thus enabling an effective delivery of ancillary services to the grid.
机译:具有电力电子接口的风力发电厂和其他可再生发电厂能够通过控制动作将频率响应(调速器和/或惯性响应)传递到电网。因此,可以通过设计可再生的发电厂控制装置以包括频率响应,来补偿传统发电厂退役后可利用的在线惯性的减少。作为惯性响应传递的能源取决于所选择的发电类型和控制策略。储能成本随着时间的推移而下降,并且全球的储能研究活动非常活跃,由私营企业和政府共同资助。不同行业(例如运输,能源)是最近存储研究与开发的主要驱动力。这项工作调查了在可再生能源发电厂中部署储能的机会和能力。特别是,我们专注于配备双馈感应发电机或3型风力涡轮发电机(WTG)的风力发电厂。我们发现,具有储能功能的3型WTG的系统的总输出功率可以在惯性响应期间提供比不储能的情况高出45%的惯性响应功率提升,而不会影响扭矩极限,从而可以有效地传递辅助功能网格服务。

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