Fault Tolerant Control of a Dual Star Induction Machine Drive System using Hybrid Fractional Controller

Mokhtar Nesri, Hichem Benkadi, K. Nounou, Guedida Sifelislam, M. Benkhoris
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Abstract

This paper presents a novel fault tolerant control (FTC) strategy for a dual star induction machine (DSIM) based on the combination of two types of robust controllers, namely a proportional resonant (PR) controller for current regulation and a fractional order PI (FOPI) for speed regulation. This FTC is associated with an indirect rotor indirect rotor field-oriented control (IRFOC) strategy. Fault feedforward compensation of the current components is introduced using the residual signal generated by the calculations passing through the PR controller. The fractional-order PI controller is applied as a feedforward fractional-order perturbation observer to the speed control loop, which attempts to minimise the error induced by the fault. In this context, a fault-tolerant control scheme is achieved. The performance characteristics of the proposed fault tolerant control for a dual star induction machine drive are compared with the fault tolerant control based on the conventional integer order IP (IOPI) to verify the effectiveness of the proposed FTC scheme under various conditions, by examining the robustness of the control in the presence of faults. To evaluate the performance of the proposed technique, simulation results are obtained using the Matlab/Simulink environment. According to the obtained simulation results, the proposed FTC system achieves significantly better responses than the conventional IRFOC system in terms of harmonics in the stator currents, and low oscillations in the electromagnetic torque response.
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使用混合分数控制器对双星感应机驱动系统进行容错控制
本文针对双星感应机(DSIM)提出了一种新型容错控制(FTC)策略,该策略基于两种鲁棒控制器的组合,即用于电流调节的比例谐振(PR)控制器和用于速度调节的分数阶 PI(FOPI)控制器。这种 FTC 与间接转子间接转子磁场导向控制(IRFOC)策略相关联。利用通过 PR 控制器的计算产生的残差信号对电流分量进行故障前馈补偿。分数阶 PI 控制器作为前馈分数阶扰动观测器应用于速度控制环路,试图将故障引起的误差降至最低。在这种情况下,就实现了容错控制方案。针对双星感应机驱动器提出的容错控制的性能特征与基于传统整数阶 IP(IOPI)的容错控制进行了比较,以验证所提出的 FTC 方案在各种条件下的有效性,并检查了控制在出现故障时的鲁棒性。为评估所提技术的性能,使用 Matlab/Simulink 环境获得了仿真结果。根据获得的仿真结果,与传统的 IRFOC 系统相比,所提出的 FTC 系统在定子电流的谐波和电磁转矩响应的低振荡方面实现了明显更好的响应。
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Real-Time Implementation of a Hybrid ESC Approach for Maximising the Extracted Photovoltaic Power Under Partial Shading Conditions A Novel Proportional Multi-Resonant Current Controller Strategy for Reduced DC Voltage fed D-STATCOM with Internal LCL Resonance Damping An Impact of Switching Frequency and Model Accuracy on Model Predictive Current Control Performance for Reluctance Synchronous Motors Novel Speed Sensorless DTC Design for a Five-Phase Induction Motor with an Intelligent Fractional Order Controller Based-MRAS Estimator Fault Tolerant Control of a Dual Star Induction Machine Drive System using Hybrid Fractional Controller
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