首页> 外文会议>IEEE Conference on Energy Internet and Energy System Integration >A Frequency Control Method Based on A Coordinated Active and Reactive Power Optimization Adjustment for Weak HVDC Sending-end Power Grid
【24h】

A Frequency Control Method Based on A Coordinated Active and Reactive Power Optimization Adjustment for Weak HVDC Sending-end Power Grid

机译:一种基于协调主动和无功优化调整的弱HVDC发送端电网的频率控制方法

获取原文

摘要

Block fault of large-capacity HVDC (high voltage direct current) transmission line will cause great impact on the weak HVDC sending-end power grid with high proportional renewable energy generation. A large power imbalance resulting from the week HVDC sending-end power block will lead to AC grid frequency increase accordingly. Therefore, active power adjustment is needed to maintain the AC grid power balance. However, it has been found that improper active power adjustment after the HVDC power block will cause steady state overvoltage problem although active power is balanced and grid frequency is satisfied. Based on the analysis of grid frequency and steady state voltage characteristics after the HVDC block fault, a coordinated active and reactive power optimization adjustment method is proposed in this paper. Objective function of active and reactive power coordinated optimization adjustment is to minimize the total power generation cost and grid active power loss such that both grid active power is balanced and voltage constraints are satisfied. Through coordinated optimization adjustment of active and reactive power, both grid frequency and bus voltage are within allowable operation range after the HVDC power block. Case studies carried out on the 3-machine 9-bus system and the actual Qingyu HVDC system validate the effectiveness of the proposed frequency control method.
机译:大容量HVDC(高压直流)传输线的块故障将对具有高比例可再生能源产生的弱HVDC发送端电网产生重大影响。由星期HVDC发送端电源块产生的大功率不平衡将导致交流电网频率相应地增加。因此,需要有效功率调整以维持AC电网电力平衡。但是,已经发现,HVDC电源块在HVDC电源块导致稳态过压问题后不正确的电力调节,尽管有效功率是平衡的并且满足网格频率。基于HVDC块故障后网格频率和稳态电压特性的分析,本文提出了协调的主动和无功优化调整方法。主动和无功协调优化调整的客观函数是最小化总发电成本和电网有源功率损耗,使得两个网格有源功率都是平衡的,并且满足电压约束。通过协调优化调整主动和无功功率,电网频率和母线电压都在HVDC电源块之后的允许操作范围内。在3机9总线系统上进行的案例研究和实际的Qingyu HVDC系统验证了所提出的频率控制方法的有效性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号