近年来,风能资源大力发展,风火打捆经直流送出成为中国目前及未来开发和利用的主要方式,风电机群和高压直流输电(high voltage direct current,HVDC)对同步发电机组(synchronous generator,SG)轴系扭振各模态电气阻尼的影响规律有待深...近年来,风能资源大力发展,风火打捆经直流送出成为中国目前及未来开发和利用的主要方式,风电机群和高压直流输电(high voltage direct current,HVDC)对同步发电机组(synchronous generator,SG)轴系扭振各模态电气阻尼的影响规律有待深入研究。针对直驱风电机群、火电机组和直流输电,建立了系统的线性化模型,分析了接入设备对火电机组电气阻尼的交互耦合关系和风火打捆经直流送出系统中火电机组轴系扭振的机理。基于复转矩系数法,研究了风电机群运行风速、控制参数和直流输电输送功率、控制参数等因素对同步发电机组电气阻尼系数的影响。最后,在PSCAD/EMTDC中搭建风火打捆经直流送出系统的时域仿真模型,通过时域仿真和时频分析,验证了电气阻尼系数分析结果的有效性。展开更多
This work is based on a direct current(DC)natural current commutation topology,which uses load-carrying branch contacts carrying rated current and multiple sets of series arcing branch contacts in parallel to achieve ...This work is based on a direct current(DC)natural current commutation topology,which uses load-carrying branch contacts carrying rated current and multiple sets of series arcing branch contacts in parallel to achieve circuit breaking.The proposed topology can meet the new requirements of higher voltage DC switches in aviation,aerospace,energy and other fields.First,a magneto-hydrodynamic arc model is built using COMSOL Multiphysics,and the different arc breaking characteristics of the arcing branch contacts in different gas environments are simulated.Then,a voltage uniformity coefficient is used to measure the voltage sharing effect in the process of dynamic interruption.In order to solve the dispersion of arcing contact action,a structural control method is adopted to improve the voltage uniformity coefficient.The uniform voltage distribution can improve the breaking capacity and electrical life of the series connection structure.展开更多
文摘近年来,风能资源大力发展,风火打捆经直流送出成为中国目前及未来开发和利用的主要方式,风电机群和高压直流输电(high voltage direct current,HVDC)对同步发电机组(synchronous generator,SG)轴系扭振各模态电气阻尼的影响规律有待深入研究。针对直驱风电机群、火电机组和直流输电,建立了系统的线性化模型,分析了接入设备对火电机组电气阻尼的交互耦合关系和风火打捆经直流送出系统中火电机组轴系扭振的机理。基于复转矩系数法,研究了风电机群运行风速、控制参数和直流输电输送功率、控制参数等因素对同步发电机组电气阻尼系数的影响。最后,在PSCAD/EMTDC中搭建风火打捆经直流送出系统的时域仿真模型,通过时域仿真和时频分析,验证了电气阻尼系数分析结果的有效性。
基金National Natural Science Foundation of China(No.51977002)the Third International Symposium on Insulation and Discharge Computation for Power Equipment(IDCOMPU2021).
文摘This work is based on a direct current(DC)natural current commutation topology,which uses load-carrying branch contacts carrying rated current and multiple sets of series arcing branch contacts in parallel to achieve circuit breaking.The proposed topology can meet the new requirements of higher voltage DC switches in aviation,aerospace,energy and other fields.First,a magneto-hydrodynamic arc model is built using COMSOL Multiphysics,and the different arc breaking characteristics of the arcing branch contacts in different gas environments are simulated.Then,a voltage uniformity coefficient is used to measure the voltage sharing effect in the process of dynamic interruption.In order to solve the dispersion of arcing contact action,a structural control method is adopted to improve the voltage uniformity coefficient.The uniform voltage distribution can improve the breaking capacity and electrical life of the series connection structure.