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CPS Compliance-Constrained AGC Optimization Model for Interconnected Power Grid

机译:CPS互联受限互联电网的合适约束AGC优化模型

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This paper presents a novel mixed integer linear programming (MILP) model of the optimal automatic generation control (AGC) strategy under the control performance standard (CPS) for the interconnected power grid. Generally, the orders of AGC regulation can be represented as three-state variables, but the optimization model with three-state variables are difficult to solve. In order to reduce the model's complexity and make the solution of the model effective, the presented model changes the traditional three-state variables to the two-state variables, and the nonlinear minimum acceleration/deceleration time constraints are linearized as well. The simulation of a practical power system shows that the proposed model is promising due to improving the CPS performance and reducing the orders of AGC more than 70%. Thus, the reliability and economy of the power system can be guaranteed. The proposed model has significance in both theory and application.
机译:本文介绍了互联电网控制性能标准(CPS)下最佳自动生成控制(AGC)策略的新型混合整数线性编程(MILP)模型。通常,AGC调节的订单可以表示为三个状态变量,但是具有三个状态变量的优化模型难以解决。为了降低模型的复杂性并使模型的解决方案有效,所提出的模型将传统的三个状态变量改变为两个状态变量,并且也是线性化的非线性最小加速/减速时间约束。实用电力系统的仿真表明,由于提高了CPS性能并将AGC的订单减少了70%,所提出的模型是有前途的。因此,可以保证电力系统的可靠性和经济性。拟议的模型在理论和应用中具有重要意义。

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