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Hybrid intervention scheme-based optimization algorithm for real-time management of reactive power resources

机译:基于混合介入方案的无功功率资源实时管理优化算法

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This article introduces a Hybrid Intervention Scheme Based Optimization (HIBO) algorithm solving an Optimal Reactive Power Management (ORPM) problem in real-time using a Mixed Integer Linear Programming (MILP) solver. The ORPM problem presented here contains a linear objective function containing four objectives separated using a set of static penalty factors for each area. The non-linear optimization problem has been assumed linear by localizing the search for solution, this is done by introducing a penalty on the change from the original state or the base case scenario. Thereby, optimizing the non-linear ORPM in linear steps makes it a fast solver for small changes in power system state. A contingency analysis (for N-1 voltage violations) is included for ensuring the safety and reliability of the power system. The results are used to update the ORPM problem or stop if the system is secure. The optimization variables used to represent transformer taps and shunt device switches are handled as discrete integers and remaining variables as continuous real numbers. The intervention scheme, objectives and constraints used in the HIBO have been derived through surveys conducted at a transmission system control center and are supported using literature. Validation of the HIBO algorithm was performed on the Dutch transmission network model after dividing it into four regional areas. Convergence characteristics of the HIBO algorithm are compared using results. From the results, it is concluded that the HIBO algorithm is a competitive optimization solver, suitable for deployment in the secondary voltage control scheme within system operations domain for transmission system operators.
机译:本文介绍了一种基于混合干预方案的优化(HIBO)算法,使用混合整数线性编程(MILP)求解器实时解决最佳无功功率管理(ORPM)问题。这里呈现的orpm问题包含包含使用每种区域的一组静态惩罚因子分离的四个目标的线性目标函数。通过本地化搜索解决方案来假设非线性优化问题,这是通过在原始状态或基本情况场景的变化上引入惩罚来完成的。因此,优化线性步骤中的非线性垂直使其成为电力系统状态的小变化的快速求解器。包括应急分析(用于N-1电压违规),用于确保电力系统的安全性和可靠性。如果系统是安全的,结果用于更新ORPM问题或停止。用于表示变压器抽头和分流器件交换机的优化变量作为离散整数处理和剩余变量作为连续实数。 HIBO中使用的干预方案,目的和约束已经通过传输系统控制中心进行的调查来得出并使用文献支持。将HIBO算法验证在将其划分为四个区域区域之后对荷兰传输网络模型进行。使用结果比较Hibo算法的收敛特性。结果,结论是Hibo算法是一种竞争优化求解器,适用于用于传输系统操作员的系统操作域中的二次电压控制方案中的部署。

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