基于新疆电网2017年规划网架结构,±1 100 k V准东直流将作为第二条直流外送通道接入新疆送端电网。为了保障新疆送端电网的安全稳定运行,当±800 k V哈郑直流发生闭锁故障时,提出综合考虑±1 100 k V直流紧急功率支援、送...基于新疆电网2017年规划网架结构,±1 100 k V准东直流将作为第二条直流外送通道接入新疆送端电网。为了保障新疆送端电网的安全稳定运行,当±800 k V哈郑直流发生闭锁故障时,提出综合考虑±1 100 k V直流紧急功率支援、送端电网切机的稳控手段,分析两种不同稳控措施对于含双直流送端电网运行电压的影响。研究结果表明在满足新疆电网稳定运行前提下,稳控切机配合直流紧急功率支援能有效降低送端电网的切机量,平衡直流故障后的无功功率。该稳控措施对提高双直流送端电网的电压稳定及优化送端电网稳控切机不平衡量具有一定的参考价值。展开更多
The utilization of renewable energy in sending-end power grids is increasing rapidly,which brings difficulties to voltage control.This paper proposes a coordinated voltage control strategy based on model predictive co...The utilization of renewable energy in sending-end power grids is increasing rapidly,which brings difficulties to voltage control.This paper proposes a coordinated voltage control strategy based on model predictive control(MPC)for the renewable energy power plants of wind and solar power connected to a weak sending-end power grid(WSPG).Wind turbine generators(WTGs),photovoltaic arrays(PVAs),and a static synchronous compensator are coordinated to maintain voltage within a feasible range during operation.This results in the full use of the reactive power capability of WTGs and PVAs.In addition,the impact of the active power outputs of WTGs and PVAs on voltage control are considered because of the high R/X ratio of a collector system.An analytical method is used for calculating sensitivity coefficients to improve computation efficiency.A renewable energy power plant with 80 WTGs and 20 PVAs connected to a WSPG is used to verify the proposed voltage control strategy.Case studies show that the coordinated voltage control strategy can achieve good voltage control performance,which improves the voltage quality of the entire power plant.展开更多
文摘基于新疆电网2017年规划网架结构,±1 100 k V准东直流将作为第二条直流外送通道接入新疆送端电网。为了保障新疆送端电网的安全稳定运行,当±800 k V哈郑直流发生闭锁故障时,提出综合考虑±1 100 k V直流紧急功率支援、送端电网切机的稳控手段,分析两种不同稳控措施对于含双直流送端电网运行电压的影响。研究结果表明在满足新疆电网稳定运行前提下,稳控切机配合直流紧急功率支援能有效降低送端电网的切机量,平衡直流故障后的无功功率。该稳控措施对提高双直流送端电网的电压稳定及优化送端电网稳控切机不平衡量具有一定的参考价值。
基金supported by National Natural Science Foundation Joint Key Project of China(2016YFB0900900).
文摘The utilization of renewable energy in sending-end power grids is increasing rapidly,which brings difficulties to voltage control.This paper proposes a coordinated voltage control strategy based on model predictive control(MPC)for the renewable energy power plants of wind and solar power connected to a weak sending-end power grid(WSPG).Wind turbine generators(WTGs),photovoltaic arrays(PVAs),and a static synchronous compensator are coordinated to maintain voltage within a feasible range during operation.This results in the full use of the reactive power capability of WTGs and PVAs.In addition,the impact of the active power outputs of WTGs and PVAs on voltage control are considered because of the high R/X ratio of a collector system.An analytical method is used for calculating sensitivity coefficients to improve computation efficiency.A renewable energy power plant with 80 WTGs and 20 PVAs connected to a WSPG is used to verify the proposed voltage control strategy.Case studies show that the coordinated voltage control strategy can achieve good voltage control performance,which improves the voltage quality of the entire power plant.