可再生能源配电系统中采用可控制死区复数D-STATCOM集中电压控制方法

Naoyuki Takahashi, Y. Hayashi
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引用次数: 17

摘要

提出了采用可控制死区D-STATCOM集中控制的电压控制方法,对各节点电压进行动态控制。为了使可接受的RES值最大化,集中控制系统对安装D-STATCOM的各个节点电压进行测量,并根据每个节点电压对所有节点电压进行控制。变电站附近的D-STATCOM的目标电压通过另一个节点电压进行修改,使所有节点电压调节在适当范围内。目标电压的校正量由从死区上限和适当范围之间设置的阈值的偏差量决定。基于通信时间和无功指令计算的传统方法有可能由于时延而导致无功指令不正确。提出了一种基于延迟时间的预测控制补偿无功功率不足的方法。
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Centralized voltage control method using plural D-STATCOM with controllable dead band in distribution system with renewable energy
The authors propose voltage control method using centralized control of D-STATCOM with controllable dead band to control all the node voltages dynamically. To maximize the acceptable amount of RES, centralized control system meters each node voltage installed D-STATCOM, and control all the node voltages based on each node voltage. The target voltage of D-STATCOM near a substation is modified by another node voltage to regulate all the node voltages within proper range. The amount of correction for the target voltage is determined by the amount of deviation from a threshold which is set between upper limits of the dead band and proper range. Conventional method has potential to command inappropriate reactive power due to delay time based on communication time and calculation for commands of reactive power. Proposed method compensates for the lack of reactive power based on the delay time using the predictive control.
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A local energy management system for solar integration and improved security of supply: The Nice Grid project Centralized voltage control method using plural D-STATCOM with controllable dead band in distribution system with renewable energy A national project on Optimal Control and demonstration of the Japanese smart grid for massive integration of photovoltaic systems Controlling smart grid adaptivity Integration of heat pumps in distribution grids: Economic motivation for grid control
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