Large-capacity synchronous condenser can provide a powerful dynamic reactive power for the HVDC transmission system. The dynamic characteristic of reactive power is mainly related to the parameters of synchronous condenser. Therefore, it is very important to study the influence of transient parameters on the voltage stability of AC-DC system. In this paper, the model of HVDC system with the synchronous condenser connected is built. Taking the voltage sag of sending-end system as an example, firstly the paper presents the influences of transient and sub-transient reactance (x′d, x″d) and time constant (F′d0, T″d0) on reactive power characteristic of synchronous condenser and the voltage stability of HVDC. Then the reactive power response speed of synchronous condenser and the recovery time of system voltage are compared and analyzed under the different transient and sub-transient parameters. In addition, the results show that the recovery time of system voltage increases by 0.36s as the transient reactance increasing to 1.3 times actual value, and the recovery time of system voltage increases by 0.43s as the transient time constant changes to 1.3 times actual value. Finally the sub-transient parameters have almost no effect on the system voltage and the results provide an important theoretical basis for the operation of synchronous condenser connected to HVDC.
[1]
Chanan Singh,et al.
Reliability Evaluation of Double 12-Pulse Ultra HVDC Transmission Systems
,
2016,
IEEE Transactions on Power Delivery.
[2]
Guo Qiang,et al.
Security Evaluation of UHV Synchronized Power Grid
,
2007
.
[3]
Tang Yong.
A Discussion about Standard Parameter Models of Synchronous Machine
,
2007
.
[4]
Liu Xiaofang,et al.
Influence of Different Practical Models on the First Swing Stability of Turbine Generators
,
2015
.
[5]
Shi Jiquan.
DC Transmission Impact Analysis on AC/DC Interconnected System Self-organized Criticality
,
2012
.
[6]
Wang Kang.
Dynamic Voltage Stability Analysis on UHVDC Accessing to Jiangxi Power Grid
,
2011
.
[7]
Kang Jinping.
Comparison of Large Disturbance Characteristics of Different Generator Practical Models
,
2012
.