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Data-Driven Model-Free Adaptive Current Control of a Wound Rotor Synchronous Machine Drive System

机译:伤口转子同步机驱动系统的数据驱动无模型自适应电流控制

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摘要

The lack of precise mathematical model of nonlinear systems, such as electric machines, brings certain limits to design a powerful controller for such systems. This article presents a model-free-adaptive-control (MFAC) scheme as a good alternative to the commonly used model-based-control (MBC) methods in order to improve the controller design limitations due to the need for system model information. In this regard, an MFAC is developed in this article for current control of a wound rotor synchronous machine (WRSM) drive system and compared with a proportional-integral (PI) controller as a well-known model-based controller. Since the controller performance can be affected by unexpected phenomena, such as model errors, parameter variations, and changes in operating point, beforehand, the robustness of developed MFAC is first tested under the mentioned conditions in the simulation area. Then, through experimental validation on a specifically designed test bench, a satisfactory performance was obtained for the MFAC scheme.
机译:非线性系统(如电机)缺乏精确的数学模型,为这些系统设计了一定的限制来设计一个强大的控制器。本文介绍了一种无模型 - 自适应 - 控制(MFAC)方案,作为常用模型的控制(MBC)方法的良好替代方案,以便由于系统模型信息的需要而改善控制器设计限制。在这方面,在本文中开发了MFAC,用于对伤口转子同步机(WRSM)驱动系统的电流控制,并与比例积分(PI)控制器相比作为众所周知的基于模型的控制器。由于控制器性能可能受到意外现象的影响,例如模型误差,参数变化和操作点的变化,事先,首先在仿真区域中提到的条件下测试开发的MFAC的稳健性。然后,通过对专门设计的测试台上的实验验证,为MFAC方案获得了令人满意的性能。

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