Extending the Reach of Traditional Frequency Control for Fast Responses

Jean Ubertalli, Tim Brian Littler
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引用次数: 1

Abstract

This paper investigates the role of grid-level battery energy storage in delivering measured reserve to supplant traditional synchronous units for frequency response support in the context of high renewable generation penetration. Dynamic simulation is performed on a modified 39-Bus New England model to assess and evaluate the impact of embedded storage for fast frequency support. The paper proposes a response strategy for sudden changes in frequency with storage acting in the dual role of limiting frequency nadir excursion while delivering synthetic inertia to the grid.
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扩展传统频率控制的范围,实现快速响应
本文研究了在可再生能源发电普及率高的情况下,电网级电池储能在提供实测储备以取代传统同步机组以提供频率响应支持方面的作用。在改进的39总线新英格兰模型上进行了动态仿真,以评估和评估嵌入式存储对快速频率支持的影响。本文提出了一种针对频率突变的响应策略,储能系统在向电网传递综合惯性的同时,还具有限制频率最低点偏移的双重作用。
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