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Optimal PID-self regulating controller for micro hydro-fuel cell green Energy Management Scheme

机译:微型水燃料电池绿色能源管理方案的最佳PID自调节控制器

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This paper presents a novel Electric Energy Management compensator based on Multi Objective Particle Swarm Optimization search technique MOPSO for use in hydrogen and island electricity generation. It combines a fuel cell power source and a micro hydro water turbine. The novel control strategy is designed to achieve the high-efficiency coordinated operation of the two individual power sources and to regulate current and voltage for maximum utilization, without compromising the power quality and performance of the overall system. To achieve these conflicting objectives, a novel dual action Modulated Power Filter and Compensator at the AC bus (MPFC) and Green Power Filter GPF scheme at the DC bus using real time self regulating error tracking scheme for voltage stability, energy conservation, loss reduction, power factor correction, and power quality enhancement for hybrid multi source energy utilization systems. Multi Objective Optimization MOPSO technique is used to find the optimal control gain settings that dynamically minimize the global dynamic error.
机译:本文提出了一种基于多目标粒子群优化搜索技术MOPSO的新型电能管理补偿器,用于氢气和海岛发电。它结合了燃料电池电源和微型水力水轮机。这种新颖的控制策略旨在实现两个单独电源的高效协调运行,并调节电流和电压以实现最大利用率,而又不损害整个系统的电能质量和性能。为了实现这些相互矛盾的目标,AC总线(MPFC)上采用了新颖的双作用调制功率滤波器和补偿器,而DC总线上采用了实时自调节误差跟踪方案,以实现电压稳定,节能,降低损耗,混合多源能源利用系统的功率因数校正和功率质量增强。多目标优化MOPSO技术用于找到动态最小化全局动态误差的最佳控制增益设置。

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