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A STUDY OF INTERLINE POWER FLOW ANALYSIS BASED ON A NEW MATHEMATICAL MODEL OF INTERCONNECTED POWER SYSTEM WITH IPC

机译:基于IPC互联电力系统新数学模型的中线功率流分析研究

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At present, a large parts of power networks are connected by AC tie-lines. Yet, there are some problems in the operation of AC interconnected power systems, such as fault spreading and the power fluctuation on tie-line. As a new FACTS device, IPC has several advantages such as fault current restriction and the robust control of tie-line power flow. After taking action to enhance the synchronous ability, IPC can play well effects to control tie-line power flow of interconnect power systems. Based on IPC network analytic equation, tracking estimation technology of Thevenin equivalent parameters for area network and the short-time-step dynamic power flow considering the frequency difference of area network, a mathematical model of frequency decoupling is established in this paper. Wholly considering the facts such as tie-line transmission capacity, port voltages of sending and receiving networks, the voltages of IPC capacitor and reactor, the parameter preferences are given. And the strategy of changing IPC parameters is used to control the tie-line power. The simulation of North China and Northeast interconnected power system is emulated to validate the proposed methods and to analyze the relative slippage between the two subsystems.
机译:目前,电力网络的大部分通过交流系线连接。然而,在AC互联电力系统的操作中存在一些问题,例如故障扩展和系绳上的功率波动。作为新的事实设备,IPC具有若干优点,如故障电流限制和扎线功率流量的鲁棒控制。采取行动以提高同步能力之后,IPC可以效果效果,以控制互连电力系统的连接线电流。基于IPC网络分析方程,在面积网络中临时相同参数的跟踪估计技术以及考虑区域网络频率差的频率差的短时间动态功率流,本文建立了频率去耦的数学模型。完全考虑的事实,如系列传输能力,发送和接收网络的端口电压,IPC电容和电抗器的电压,给出了参数偏好。改变IPC参数的策略用于控制绑定线功率。模拟华北和东北互连电力系统以验证所提出的方法,并分析两个子系统之间的相对滑动。

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