Electric Power ›› 2025, Vol. 58 ›› Issue (7): 147-161.DOI: 10.11930/j.issn.1004-9649.202411092
• New Energy and Energy Storage • Previous Articles Next Articles
					
													TAN Lingling1(
), ZHANG Wenlong1, KANG Zhihao1, YE Pingfeng2(
), GAO Yehao3(
), ZHANG Yumin3
												  
						
						
						
					
				
Received:2024-11-28
															
							
															
							
															
							
																	Online:2025-07-30
															
							
							
																	Published:2025-07-28
															
							
						Supported by:TAN Lingling, ZHANG Wenlong, KANG Zhihao, YE Pingfeng, GAO Yehao, ZHANG Yumin. Grid-Forming Storage Planning for Renewable Energy Bases Considering the Co-optimization of Inertia Response and Primary Frequency Regulation Parameters[J]. Electric Power, 2025, 58(7): 147-161.
| 参数名称 | 数值 | |
| 基于惯量支撑的一阶惯性时间常数/s | 0.5 | |
| 基于一次调频的一阶惯性时间常数/s | 5.5 | |
| 风机一次调频系数 | 20 | |
| 阻尼系数 | 100 | |
| 最大频率偏差/Hz | 0.5 | |
| 稳态频率偏差/Hz | 0.2 | |
| 系统允许的最大频率变化率/(Hz·s–1) | 1 | |
| 调频死区/Hz | 0.03 | |
| 跟网型风电场延时/s | 0.1 | |
| 基准频率/Hz | 50 | 
Table 1 The relevant control parameters of the simulation operation optimization considering inertia support
| 参数名称 | 数值 | |
| 基于惯量支撑的一阶惯性时间常数/s | 0.5 | |
| 基于一次调频的一阶惯性时间常数/s | 5.5 | |
| 风机一次调频系数 | 20 | |
| 阻尼系数 | 100 | |
| 最大频率偏差/Hz | 0.5 | |
| 稳态频率偏差/Hz | 0.2 | |
| 系统允许的最大频率变化率/(Hz·s–1) | 1 | |
| 调频死区/Hz | 0.03 | |
| 跟网型风电场延时/s | 0.1 | |
| 基准频率/Hz | 50 | 
| 参数 | 数值 | |
| 额定功率/MW | ||
| 规划容量/(MW·h) | ||
| 日均投资成本/元 | ||
| 日均维护成本/元 | ||
| 日均运行成本/元 | 
Table 2 Energy storage configuration planning results
| 参数 | 数值 | |
| 额定功率/MW | ||
| 规划容量/(MW·h) | ||
| 日均投资成本/元 | ||
| 日均维护成本/元 | ||
| 日均运行成本/元 | 
| 典型 场景  | 弃风弃 光成本  | 风电备 用成本  | 弱交流系统 支撑功率成本  | 总运行 成本  | ||||
| 1 | ||||||||
| 2 | ||||||||
| 3 | ||||||||
| 4 | 0 | 
Table 3 Analysis of the operating cost results of typical scenarios of new energy bases 单位:万元
| 典型 场景  | 弃风弃 光成本  | 风电备 用成本  | 弱交流系统 支撑功率成本  | 总运行 成本  | ||||
| 1 | ||||||||
| 2 | ||||||||
| 3 | ||||||||
| 4 | 0 | 
| 最小时 段数/h  | 爬坡能力/ (MW·h–1)  | 储能配置 | ||||
| 额定容量/(MW·h) | 额定功率/MW | |||||
| 6 | ||||||
| 4 | 672.3 | |||||
| 2 | 669.5 | |||||
Table 4 The impact of the minimum number of periods on the energy storage configuration
| 最小时 段数/h  | 爬坡能力/ (MW·h–1)  | 储能配置 | ||||
| 额定容量/(MW·h) | 额定功率/MW | |||||
| 6 | ||||||
| 4 | 672.3 | |||||
| 2 | 669.5 | |||||
| 最小时 段数/h  | 爬坡能力/ (MW·h–1)  | 储能配置 | ||||
| 额定容量/(MW·h) | 额定功率/MW | |||||
| 4 | 672.3 | |||||
| 651.5 | ||||||
| 741.0 | 634.1 | |||||
Table 5 The impact of ramp-up capacity on energy storage configuration
| 最小时 段数/h  | 爬坡能力/ (MW·h–1)  | 储能配置 | ||||
| 额定容量/(MW·h) | 额定功率/MW | |||||
| 4 | 672.3 | |||||
| 651.5 | ||||||
| 741.0 | 634.1 | |||||
| 方案 | 容量/(MW·h) | 功率/MW | ||
| 1 | ||||
| 2 | 
Table 6 The impact of parameter optimization on energy storage configuration
| 方案 | 容量/(MW·h) | 功率/MW | ||
| 1 | ||||
| 2 | 
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