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Reactive power planning using PSO with modified dynamic inertia parameter

机译:使用具有修改后的动态惯性参数的PSO进行无功功率规划

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This paper presents Modified Particle Swarm Optimisation (PSO) technique with dynamic inertia parameter to find optimal values of Shunt Capacitor (ShC) admittances, off-nominal tap ratios of Online Tap Changers (OLTC), and reactive power generations of alternators for reactive power planning. A new modified inertia parameter is proposed which is dynamic and compels particles to explore the space more randomly and vigorously once a local minimum is reached. Using the obtained optimal values, voltages of buses are improved and transmission losses are reduced, resulting in annual operational cost reduction. The active power loss of transmission lines and optimum values of bus voltage are calculated by Newton Raphson method. In this paper standard IEEE 14 bus system and standard IEEE 30 bus systems are used to demonstrate the result by varying number of particles and generations.
机译:本文提出了具有动态惯性参数的改进粒子群优化(PSO)技术,以找到并联电容器(ShC)导纳的最佳值,在线分接开关(OLTC)的非标称分接比以及用于无功计划的交流发电机的无功发电量。提出了一个新的修改后的惯性参数,该参数是动态的,一旦达到局部最小值,就会迫使粒子更随机,更剧烈地探索空间。使用获得的最佳值,可改善总线电压并减少传输损耗,从而每年可降低运营成本。传输线的有功功率损耗和母线电压的最佳值通过牛顿拉夫森法计算。在本文中,标准的IEEE 14总线系统和标准的IEEE 30总线系统用于通过改变粒子数量和世代来演示结果。

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