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A learning backstepping controller for voltage source inverter with nonlinear loads

机译:具有非线性负载的电压源逆变器的学习反推控制器

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An inverter with an output LC filter can be used for generation of sinusoidal output voltage with low harmonic distortion, suitable for distributed generation systems. However, with the growing number of electronic devices with rectifiers at the front end of their power supply, the nonlinearities of the load current in power systems are increasing. As such designing an inverter system with a nonlinear controller that can take into account this nonlinearity in the load current and generate a high quality sinusoidal output voltage has become of great interest to the academic and industrial communities. In this paper, a nonlinear backstepping controller combined with a periodic disturbance learning observer is proposed for the control of a single-phase H-Bridge inverter with an output LC filter. A Lyapunov stability analysis is utilized to demonstrate system stability. Simulation results validate the performance of the control scheme in the presence of nonlinear loads in terms of tracking objective and system stability.
机译:具有输出LC滤波器的逆变器可用于产生具有低谐波失真的正弦输出电压,适用于分布式发电系统。然而,利用其电源前端的具有整流器的越来越多的电子设备,电力系统中的负载电流的非线性正在增加。如这种设计具有非线性控制器的逆变器系统,该系统可以考虑在负载电流中的这种非线性并产生高质量的正弦输出电压对学术和工业社区具有很大的兴趣。在本文中,提出了一种与周期性干扰学习观察者组合的非线性反向控制器,用于控制具有输出LC滤波器的单相H桥式逆变器。利用Lyapunov稳定性分析来证明系统稳定性。仿真结果在跟踪目标和系统稳定性方面验证了控制方案在存在非线性载荷的情况下的性能。

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