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Power Optimization Method for Interactive Operation of Integrated Energy Distribution System and Superior Power Grid

机译:集成能量分配系统交互式操作功率优化方法和优质电网

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Integrated energy distribution system (IEDS) plays an important role in improving energy utilization efficiency, promoting efficient utilization of renewable energy, and enhancing system reliability. IEDS can respond to the instructions of the superior power grid and realize the effective cooperation with the superior power grid. The interactive power optimization with the superior power grid is conducive to the stable operation of the superior power grid, and reflects the flexible characteristics of energy coupling. Firstly, a distribution system model considering system power flow constraints, node voltage constraints and branch current constraints, a gas distribution system model considering gas flow constraints, gas pressure constraints and pipeline flow constraints, and an energy station model considering energy flow constraints and equipment output constraints are established. Then, this paper introduces the optimization method of interactive power between IEDS and the superior power grid. This method takes the minimum deviation between the set value and the actual value of interactive power between IEDS and superior power grid as the optimization objective, and considers the operation and security constraints of IEDS, and uses YALMIP toolbox to solve the problem. Finally, the results of the upper and lower limits of interactive power, power of energy station equipment and interactive optimization are analyzed through an example. The results show that this method can better respond to the superior power grid instructions, so as to further guarantee the safe and stable operation of the superior power grid.
机译:集成能量分配系统(IED)在提高能源利用效率,促进可再生能源的有效利用率以及提高系统可靠性方面起着重要作用。 IED可以响应上功率电网的指示,并实现与上电网的有效合作。具有卓越电网的交互式功率优化有利于上功率栅格的稳定运行,并反映了能量耦合的柔性特性。首先,考虑系统电流限制,节点电压约束和分支电流约束,考虑气体流量限制,气体压力约束和管道流量约束的气体分配系统模型以及考虑能量流量限制和设备输出的能量站模型约束是建立的。然后,本文介绍了IED与优质电网之间的交互式功率的优化方法。该方法在IED和卓越的电网之间的设定值和卓越电网之间的实际值之间的最小偏差,以及优化目标,并考虑IED的操作和安全约束,并使用Yalmip工具箱来解决问题。最后,通过示例分析了互动功率,能源站设备的功率和交互式优化的上下限制的结果。结果表明,该方法可以更好地响应上级电网指令,以进一步保证上功率栅格的安全稳定运行。

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