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Model Predictive Load Frequency Control of two-area Interconnected Time Delay Power System with TCSC

机译:用TCSC模型预测载荷频率控制两区域互连时间延迟电力系统

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摘要

In order to reduce the influence of non-linear constraint and time delay on load frequency control of interconnected power system, this paper, based on Model Predictive Control (MPC), designed a load frequency control scheme for two-area interconnected power system with TCSC device. First, considering the Generation Rate Constraint (GRC) and time delay, this paper builds the dynamics model of two-area interconnected power system with Thyristor Controlled Series Compensation device (TCSC). Then the whole system is decomposed into two subsystems. And each subsystem has its own local area MPC controller. Second, collaborative control is implemented by integrating the control information (measurement value, predictive value, etc.) of subsystems' MPC controllers into the local control goal. In the end, under consideration of physical constraints, the Matlab simulation is conducted. The calculation results showed that the MPC strategy has better dynamic performance and robustness compared to the traditional PI control.
机译:为了降低非线性约束和时间延迟对互联电力系统负载频率控制的影响,本文基于模型预测控制(MPC),设计了具有TCSC的两域互连电力系统的负载频率控制方案设备。首先,考虑到生成率约束(GRC)和时间延迟,本文构建了具有晶闸管控制串联补偿装置(TCSC)的双面积互连电力系统的动力学模型。然后整个系统被分解成两个子系统。每个子系统都有自己的本地MPC控制器。其次,通过将子系统的MPC控制器的控制信息(测量值,预测值等)集成到本地控制目标来实现协作控制。最后,在考虑物理限制的情况下,进行MATLAB仿真。计算结果表明,与传统PI控制相比,MPC策略具有更好的动态性能和鲁棒性。

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