Study on the stability mechanism of the sending-side three-machine-group system after multiple HVDC commutation failure

[1]  Chen Qia Study on the Mechanism of Disturbance Impact on Power System Transient Stability Based on Trajectory Eigenvalues , 2014 .

[2]  Liu Ping Power swing mechanism analysis of UHV AC pilot project , 2010 .

[3]  Ren Xianchen Unstable Modes Evolution and Its Influencing Factors Analysis in Interconnected Power Grids , 2013 .

[4]  Jian Zhang,et al.  Analysis of the sending-side system instability caused by multiple HVDC commutation failure , 2015 .

[5]  Tang Yon A Study on Effect of Fault Occurred in Remote End of Regional Power Grid on Transient Stability of Interconnected Power System , 2014 .

[6]  Jiang Man Research on Tie Line Power Flow Oscillation in Weak Interconnection Power Grids , 2011 .

[7]  Wu Tao Theoretical Analysis on Tie-Line Power Oscillation of Two-Area Interconnected System , 2011 .

[8]  J Liu A Method for Analyzing Large Disturbance Impact Characteristics on Tie-line in AC Interconnected Power Grid , 2013 .

[9]  Yi Jun,et al.  Research on dynamic characteristics and countermeasures of AC-DC hybrid power system with large scale HVDC transmission , 2014, 2014 International Conference on Power System Technology.

[10]  Qiang Guo,et al.  Fast Calculation of Power Oscillation Peak Value on AC Tie-Line After HVDC Commutation Failure , 2015, IEEE Transactions on Power Systems.

[11]  Zhou Qinyong,et al.  Analysis on Commutation Failures in Multi-Infeed HVDC Transmission Systems in North China and East China Power Grids Planned for UHV Power Grids in 2015 , 2011 .

[12]  Gu Zhuoyua The Effect of the Angle Swing of Weak-connection Generator Groups in a Regional Grid to the Angle Stability of the Interconnected Power System , 2015 .

[13]  Zheng Cha Study on the Oscillation Coupling Mechanism Between Interconnected Power System and Provincial Power Grid , 2014 .

[14]  Lin Weifang AC Tie-line Power Fluctuation Mechanism and Peak Value Calculation for Two-area Interconnected Power Systems , 2010 .