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High-Performance AC Power Source by Applying Robust Stability Control Technology for Precision Material Machining

机译:高性能AC电源通过应用鲁棒稳定性控制技术进行精密材料加工

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This paper presents a high-performance AC power source by applying robust stability control technology for precision material machining (PMM). The proposed technology associates the benefits of finite-time convergent sliding function (FTCSF) and firefly optimization algorithm (FOA). The FTCSF maintains the robustness of conventional sliding mode, and simultaneously speeds up the convergence speed of the system state. Unfortunately, when a highly nonlinear loading is applied, the chatter will occur. The chatter results in high total harmonic distortion (THD) output voltage of AC power source, and even deteriorates the stability of PMM. The FOA is therefore used to remove the chatter, and the FTCSF still preserves finite system-state convergence time. By combining FTCSF with FOA, the AC power source of PMM can yield good steady-state and transient performance. Experimental results are performed in support of the proposed technology.
机译:本文通过应用鲁棒稳定性控制技术来提高精密材料加工(PMM)的高性能交流电源。所提出的技术将有限时间收敛滑动功能(FTCSF)和萤火虫优化算法(FOA)的益处相关联。 FTCSF保持常规滑动模式的稳健性,同时加速系统状态的收敛速度。遗憾的是,当应用高度非线性加载时,将发生喋喋不休。颤壳导致高总谐波失真(THD)交流电源的输出电压,甚至会劣化PMM的稳定性。因此,FOA用于去除聊天器,并且FTCSF仍然保留有限的系统状态收敛时间。通过将FTCSF与FOA组合,PMM的交流电源可以产生良好的稳态和瞬态性能。实验结果是为了支持所提出的技术。

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