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Real time simulation of an Intelligently Optimized Controller to Control the Frequency of an Islanded AC Microgrid: MBA-MBIMC Tuning Approach

机译:智能优化控制器的实时模拟,以控制岛立交流微电网的频率:MBA-MBIMC调谐方法

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This paper exhibits an attempt for controlling the frequency of an independent microgrid (MG) system by using modified bias (MB) and Internal Model Control (IMC) based PID Controller with mine blast algorithm (MBA) under extreme unfavorable scenarios. Frequency deviation occurred in the system because of mismatch between Actual Generated power and total load demand. To address this issue the IMC-based the frequency regulation and gain parameters of the Microgrid are taken into consideration for finding the limits of control parameters for MBA, which will make sure that the search points produced by MBA are robust and stable. In real-time simulation environments using the digital simulator OPAL-RT, simulation of the proposed (MBA based MB-IMC) controller-based MG model has been appropriately tested. In various real-life situations, the system performance is obtained using the MBA-MBIMC controller and system outputs are closely investigated. The performance of MBA-MBIMC Controller is compared with that of PSO-MBIMC, MBIMC and MB-LDR controllers. The result shows that, in forms of peak deviation, time of settling and a smaller no. of oscillations, the proposed MBA-MBIMC controller provides the most optimum adaptive output.
机译:本文展示了通过在极端不利场景下使用基于Mine Blast算法(MBA)的改进的偏置(MB)和内部模型控制(IMC)的PID控制器来控制独立微电网(MG)系统的频率的尝试。由于实际产生的功率和总负载需求之间的不匹配,系统发生在系统中发生频率偏差。为了解决此问题,考虑到查找MBA的控制参数的限制,考虑基于IMC的基于IMC的频率调节和增益参数,这将确保MBA产生的搜索点是坚固且稳定的。在使用数字模拟器OPAL-RT的实时仿真环境中,建议的仿真(基于MBA的MB-IMC)基于控制器的MG模型已被适当地测试。在各种现实生活中,使用MBA-MBIMC控制器获得系统性能,并密切研究系统输出。 MBA-MBIMC控制器的性能与PSO-MBIMC,MBIMC和MB-LDR控制器的性能进行了比较。结果表明,以峰值偏差的形式,沉降时间和较小的不。振荡,所提出的MBA-MBIMC控制器提供最佳的自适应输出。

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