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Energy-Saving Variable Bias Current Optimization for Magnetic Bearing Using Adaptive Differential Evolution

机译:基于自适应差分进化的电磁轴承节能可变偏置电流优化

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This study proposes an adaptive differential evolution (ADE)-based variable bias current control strategy to improve the energy efficiency of an active magnetic bearing (AMB) system. In the AMB system, the drive current is composed of a control current and a superimposed bias current in which the former is controlled by an external controller used to regulate the rotor position while the latter is set as a pre-designed constant used to improve the linearity and dynamic performance. Generally, the bias current causes power loss even if no force is required. In this regard, the ADE-based variable bias current control strategy is proposed to minimize the energy consumption of the AMB control system without altering the control performance. Experimental results demonstrate the high-accuracy control and significant energy saving performances of the proposed method. The energy improvements compared to baseline were 20.24% and 17.65% for the operation periods of 10 s and 50 s, respectively.
机译:这项研究提出了一种基于自适应差分进化(ADE)的可变偏置电流控制策略,以提高主动磁轴承(AMB)系统的能效。在AMB系统中,驱动电流由控制电流和叠加偏置电流组成,其中前者由用于调节转子位置的外部控制器控制,而后者则被设置为用于改善转子电流的预先设计常数。线性和动态性能。通常,即使不需要力,偏置电流也会导致功率损耗。在这方面,提出了基于ADE的可变偏置电流控制策略,以在不改变控制性能的情况下最小化AMB控制系统的能耗。实验结果证明了该方法的高精度控制和显着的节能性能。在10 s和50 s的运行时间段中,与基准相比,能量改善分别为20.24%和17.65%。

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