新能源电力系统全国重点实验室(华北电力大学), 北京市 昌平区,102206
纸质出版:2025
移动端阅览
张加卿, 郭春义. 跟网-构网光伏与火电打捆经传统直流外送系统次同步扭振机理研究[J]. 中国电机工程学报, 2025,45(20):7962-7973.
ZHANG Jiaqing, GUO Chunyi. Research on Sub-synchronous Torsional Vibration Mechanism for Grid-following and Grid-forming Photovoltaic and Thermal Power Bundling System via LCC-HVDC Transmission[J]. 2025, 45(20): 7962-7973.
张加卿, 郭春义. 跟网-构网光伏与火电打捆经传统直流外送系统次同步扭振机理研究[J]. 中国电机工程学报, 2025,45(20):7962-7973. DOI: 10.13334/j.0258-8013.pcsee.241019.
ZHANG Jiaqing, GUO Chunyi. Research on Sub-synchronous Torsional Vibration Mechanism for Grid-following and Grid-forming Photovoltaic and Thermal Power Bundling System via LCC-HVDC Transmission[J]. 2025, 45(20): 7962-7973. DOI: 10.13334/j.0258-8013.pcsee.241019.
针对规模化新能源与火电打捆经传统直流外送场景,不同电源出力配比下系统次同步扭振互作用(sub-synchronous torsional interaction,SSTI)阻尼的变化特征尚不明确,且构网型变流器占比对SSTI阻尼特性的影响未知。基于此,该文先建立含跟网-构网异构变流器的光伏与火电打捆经传统直流外送系统的状态空间模型和运动方程模型,并分解出表征系统SSTI阻尼特性的多条作用路径。然后,在光伏采用纯跟网型变流器情况下,解析光火不同配比下SSTI模式的阻尼变化特征,获得系统稳定传输额定功率所允许的火电最小占比,并辨识出主导SSTI模式阻尼变化的关键路径;进一步分析构网型光伏占比对SSTI模式阻尼特性的影响,得到低火电占比下维持系统稳定运行所需的最小构网占比,并依据不同作用路径的阻尼变化阐释其影响机理。结果表明:新能源占比过高时,跟网型变流器对弱电网的稳定支撑能力不足,导致SSTI阻尼减弱;构网型变流器代替跟网型变流器分担更多出力占比时,能够削弱跟网型变流器对电网支撑能力不足的负面影响,即加入构网型变流器可改善系统SSTI阻尼。
In the scenario of large-scale new energy and thermal power bundling system via line commutated converter-based high voltage direct current (LCC-HVDC) transmission
the variation characteristics of sub-synchronous torsional interaction (SSTI) damping under different power supply ratios are still unclear
and the proportion of grid-forming (GFM) converters on SSTI damping is unknown. This paper establishes the state space model and the motion equation model for photovoltaic (PV) with grid-following (GFL)-based and GFM-based converters and thermal power bundling system via LCC-HVDC transmission. Multiple paths reflecting the SSTI damping characteristics are decomposed. Subsequently
in the case of pure GFL-based PV
the damping variation characteristics of the SSTI mode under different thermal-PV ratios are investigated. The minimum proportion of thermal power to ensure the stable transmission of rated DC power is obtained
and the key path dominating the damping changing trend of the SSTI mode is identified. Furthermore
the influence characteristics of the GFM-based PV power proportion on SSTI mode damping are analyzed. The minimum proportion of GFM-based converters to stabilize the system with low thermal power proportion is calculated
and its influence mechanism is revealed according to the damping characteristics of different paths. The results indicate that
when the proportion of new energy power output is too high
the supporting capacity of GFL-based converters for the weak AC grid is insufficient
leading to the weakening of SSTI damping
when GFM-based converters undertake higher proportion of power output instead of GFL-based converters
the negative impact on AC grid caused by the insufficient support capacity of GFL-based converters can be weakened
i.e. the inclusion of GFM-based converter in the PV power plant can improve the SSTI damping.
0
浏览量
102
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621