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Dispatching strategies of AGC units in energy-saving dispatching environment

机译:调度AGC单位在节能调度环境中的策略

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The implementation of energy-saving dispatch represents a significant change from the current economic dispatch and will impose some challenges for the secure operation of power systems concerned such as automatic generation control (AGC). In this work, the impacts of energy-saving generation dispatching on power system security especially on the operation performance and control strategies of AGC units will be clarified first. Then, the problem of AGC control strategies in the energy-saving dispatching environment is investigated. A mathematical model for the AGC units' selection in the energy-saving dispatching environment is developed as a constrained integer nonlinear programming (INLP) with the minimization of fuel consumption and emission as the dual objectives. This optimization problem is solved by employing the well-developed branch and bound algorithm embedded in the famous software package LINGO (Linearnteractive and General Optimizer). Simulation results are served for demonstrating the feasibility and efficiency of the developed model and method.
机译:节能派遣的实施代表了当前经济调度的重大变化,并将对自动生成控制(AGC)的电力系统的安全运行施加一些挑战。在这项工作中,首先将首先阐明节能发电对电力系统安全性对电力系统安全性的影响将首先阐明AGC单位的操作性能和控制策略。然后,研究了节能调度环境中AGC控制策略的问题。节能调度环境中AGC单位选择的数学模型被开发为受限的整数非线性编程(INLP),其燃料消耗最小化和作为双目标的发射。通过采用嵌入着名软件包Lingo(Linearnteractive和General Optimizer)的嵌入式分支和绑定算法来解决这种优化问题。仿真结果用于展示开发模型和方法的可行性和效率。

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