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Utilizing Sequential Action Control Method in GaN-Based High-Speed Drive for BLDC Motor

机译:顺序动作控制方法在基于BLDC的GaN基高速驱动器中的应用

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This paper presents a hybrid model?¢????based control algorithm that combines Model Predictive Control (MPC) and Sequential Action Control (SAC) deployed in a high-speed drive for Brushless DC (BLDC) motor by using a DC-DC converter with Gallium Nitride (GaN) switches. GaN FETs are selected because of their higher speed and lower power loss as compared with traditional Si switches. In the proposed framework, SAC processes the initial values of the control variables as well as their time of application and their duration in MPC loop. After receiving the underlying estimation of future contribution from SAC, MPC consolidates it with current input and predicts future control values by using the system state space model. This hybrid control conserves control effort and reduces sensitivity to initial conditions. In this way, converter?¢????s output voltage is controlled to produce the reference speed at the motor output. National Instrument PXIe-6356 module is utilized as the interface between software and hardware that is a multi-function, LabVIEW-compatible data acquisition device. The viability of the proposed hybrid optimization for the high-speed drive is confirmed numerically by utilizing MATLAB/Simulink and approved experimentally using a Gallium Nitride (GaN) half-bridge DC-DC converter.
机译:本文提出了一种基于混合模型的控制算法,该算法结合了模型预测控制(MPC)和顺序动作控制(SAC),该控制算法通过DC-DC部署在用于无刷DC(BLDC)电机的高速驱动器中氮化镓(GaN)开关的转换器。选择GaN FET是因为与传统的Si开关相比,它们具有更高的速度和更低的功耗。在提出的框架中,SAC处理控制变量的初始值,它们的应用时间以及它们在MPC循环中的持续时间。在收到来自SAC的对未来贡献的基础估算之后,MPC将其与当前输入合并,并通过使用系统状态空间模型预测未来的控制值。这种混合控制节省了控制工作,并降低了对初始条件的敏感性。这样,转换器的输出电压被控制以在电动机输出端产生参考速度。 National Instruments PXIe-6356模块用作软件和硬件之间的接口,这是一种多功能的LabVIEW兼容数据采集设备。通过使用MATLAB / Simulink在数值上证实了所建议的高速驱动混合优化的可行性,并使用氮化镓(GaN)半桥DC-DC转换器进行了实验验证。

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