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Robust tracking method of a DC-AC PWM converter for green energy applications

机译:绿色能源应用DC-AC PWM转换器的鲁棒跟踪方法

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This paper proposes a robust tracking method with application to the DC-AC PWM converter of the green energy. The proposed method has the merits of hyperbolic tangential sliding hyperplane (HTSH), grey prediction (GP) and firefly algorithm (FA). The HTSH has the robustness of classical sliding mode control (SMC) and increases the system's convergence speed. However, once a highly nonlinear load occurs, the chatter and steady-state errors still exist. The chatter and steady-state errors may yield high total harmonic distortion (THD) in DC-AC PWM converter output-voltage, even leads to the instability of green energy system. The GP is thus employed to reduce the chatter when system uncertainty bounds are overestimated, and simultaneously the control gains of the HTSH can be tuned by the FA so that steady-state errors problem can be resolved. By combining HTSH, GP, and FA, the DC-AC PWM converter of green energy system will yield high-quality AC output. Simulation and experimental results are given to conform that the proposed converter can obtain low THD and fast dynamic response.
机译:本文提出了一种具有应用于绿色能量的DC-AC PWM转换器的鲁棒跟踪方法。该方法具有双曲线切线滑动超平面(HTSH),灰色预测(GP)和萤火虫算法(FA)的优点。 HTSH具有古典滑模控制(SMC)的稳健性,并提高了系统的收敛速度。然而,一旦发生高度非线性负载,仍存在颤振和稳态误差。聊天和稳态误差可以在DC-AC PWM转换器输出电压中产生高总谐波失真(THD),甚至可以导致绿色能量系统的不稳定性。因此,当系统不确定性界限大高估时,GP被采用以减少喋喋不休,并且同时可以由FA调节HTSH的控制增益,从而可以解决稳态错误问题。通过组合HTSH,GP和FA,绿色能源系统的DC-AC PWM转换器将产生高质量的交流输出。仿真和实验结果符合所提出的转换器可以获得低THD和快速动态响应。

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