火电机组交互影响对次同步振荡的作用机理研究Study on the mechanism of interaction between thermal power units on subsynchrouns oscillation
臧德春,赵荣臻,杨超,祝新驰
ZANG Dechun,ZHAO Rongzhen,YANG Chao,ZHU Xinchi
摘要(Abstract):
有研究表明,多机系统发生SSO(次同步振荡)时,机组间具有相近扭振频率。为此,分析了相近频率机组轴系间的交互影响,及系统串补度、机组间电气距离和相近扭振频率对次同步振荡的作用机理。首先,基于特征矩阵,推导两台火电机组并列送出系统的复转矩系数表达式。然后,将单机的简化复转矩系数法扩展到多机系统,推导了双火电机组电气阻尼的简化表达式,分析了其他机组对待研机组阻尼的作用,结果表明,串补度、机组电气距离以及相近扭振频率都会影响到系统阻尼和稳定性。最后,通过算例验证了各影响因素对系统次同步稳定性的作用机理。
Research findings indicate that in multi-unit systems experiencing subsynchronous oscillations(SSO), the units tend to exhibit similar torsional vibration frequencies. Therefore, an analysis was conducted on the interactive effects among shaft systems of units with similar frequencies, as well as the mechanisms of system series compensation, electrical distances between units. Additionally, the paper delved into the mechanisms through which system series compensation, electrical distances between units, and similar torsional vibration frequencies impact the SSO. Firstly, based on characteristic matrices, the expression for the complex torque coefficients of two parallel thermal power units in the system was derived. Subsequently, the simplified complex torque coefficient method for a single unit was extended to encompass multi-unit systems, resulting in a streamlined expression for the electrical damping of dual thermal power units. The analysis further examined the influence of other units on the damping of the target unit, revealing that series compensation, electrical distances between units, and similar torsional vibration frequencies all exert an influence on system damping and stability. Finally, the mechanisms through which influencing factors affect the subsynchronous stability of the system were validated through numerical examples.
关键词(KeyWords):
次同步振荡;相近扭振频率;简化复转矩系数;交互影响;电气阻尼
SSO;similar torsional vibration frequency;simplified complex torque coefficient;interactive effects;electrical damping
基金项目(Foundation): 中国电力科学研究院有限公司科技项目(2021YFB2400805)
作者(Author):
臧德春,赵荣臻,杨超,祝新驰
ZANG Dechun,ZHAO Rongzhen,YANG Chao,ZHU Xinchi
DOI: 10.19585/j.zjdl.202402003
参考文献(References):
- [1]张鹏,毕天姝,杨奇逊,等.相近扭振频率并联发电机组次同步振荡研究[J].中国电机工程学报,2015,35(20):5181-5187.ZHANG Peng,BI Tianshu,YANG Qixun,et al.Research on subsynchronous oscillation of parallel connected generators with close torsional frequencies[J].Proceedings of the CSEE,2015,35(20):5181-5187.
- [2]任必兴.基于电压源换流器控制的电力装置对电力系统动态交互的影响研究[D].北京:华北电力大学,2019.REN Bixing.Impact of voltage source converter controlled power devices on power system dynamic interaction[D].Beijing:North China Electric Power University,2019.
- [3]周长春,徐政,王冠.多机电力系统扭振相互作用的研究综述[J].电网技术,2004,28(6):1-4.ZHOU Changchun,XU Zheng,WANG Guan. A survey on torsional interaction in multi-machine power grid[J].Power System Technology,2004,28(6):1-4.
- [4]周长春.高压直流输电系统次同步振荡阻尼特性研究[D].杭州:浙江大学,2004.ZHOU Changchun.Research on the SSO damping characteristics of HVDC systems[D].Hangzhou:Zhejiang University,2004.
- [5]朱鑫要,孙海顺,文劲宇,等.基于CPCM的复转矩系数法在复杂电力系统SSR问题研究中的应用[J].中国电机工程学报,2013,33(4):77-84.ZHU Xinyao,SUN Haishun,WEN Jinyu,et al.Application of complex torque coefficient basing on CPCM to SSR study of complex power system[J]. Proceedings of the CSEE,2013,33(4):77-84.
- [6]许建庭.复转矩系数扫描分析方法及阻尼特性研究[D].北京:华北电力大学,2014.XU Jianting.Complex torque coefficient scanning analysis method and damping characteristics research[D].Beijing:North China Electric Power University,2014.
- [7]赵欣.含并联型FACTS的电力系统次同步振荡分析与抑制[D].南京:东南大学,2014.ZHAO Xin.Electricity power system analysis and suppression with parallel FACTS[D]. Nanjing:Southeast University,2014.
- [8]倪以信,陈寿孙,张宝霖.动态电力系统的理论和分析[M].北京:清华大学出版社,2002.
- [9]程时杰,曹一家,江全元.电力系统次同步振荡的理论与方法[M].北京:科学出版社,2009.
- [10]李吉芳.复转矩系数法应用于多机电力系统的修正[J].继电器,2004,32(8):5-7.LI Jifang.Complex torque coefficients method extended to the rectification of multi-machine power systems[J]. Relay,2004,32(8):5-7.
- [11]吴小刚.可控串补抑制电力系统次同步振荡的应用研究[D].成都:西南交通大学,2014.WU Xiaogang. Study on suppression of subsynchronous oscillation in power system applied TCSC[D].Chengdu:Southwest Jiaotong University,2014.
- [12]徐衍会.复杂多机系统次同步振荡的分析与抑制[J].电力系统保护与控制,2011,39(11):83-89.XU Yanhui.Analysis and damping of subsynchronous oscillation in complex multi-machine system[J].Power System Protection and Control,2011,39(11):83-89.
- [13]肖湘宁,郭春林,高本锋.电力系统次同步振荡及其抑制方法[M].北京:机械工业出版社,2013.
- [14]SEIRANYAN A P.Collision of eigenvalues in linear oscillatory systems[J]. Journal of Applied Mathematics and Mechanics,1994,58(5):805-813.
- [15]PADIYAR K R,SAIKUMAR H V. Investigations on strong resonance in multimachine power systems with STATCOM supplementary modulation controller[J].IEEE Transactions on Power Systems,2006,21(2):754-762.
- 次同步振荡
- 相近扭振频率
- 简化复转矩系数
- 交互影响
- 电气阻尼
SSO - similar torsional vibration frequency
- simplified complex torque coefficient
- interactive effects
- electrical damping