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首页> 外文期刊>Journal of Electrical Engineering >Discrete–Time Integral Sliding Mode Control with Disturbances Compensation and Reduced Chattering for Pv Grid–Connected Inverter
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Discrete–Time Integral Sliding Mode Control with Disturbances Compensation and Reduced Chattering for Pv Grid–Connected Inverter

机译:光伏并网逆变器的离散时间积分滑模控制,具有扰动补偿和减少的颤动

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In the paper a new discrete-time integral sliding mode control (DISMC) with disturbances compensation and reduced chattering for grid-connected inverter is proposed for active and reactive power regulation. Differently by many SMC proposed in literature that have a time-continuous formulation in spite have been implemented with digital processor, the proposed DISMC is fully formulated in discrete-time, taking into account the effects introduced by a microprocessor-based implementation. As will be demonstrated such approach consents to reduce the chattering about the sliding manifold within a boundary layer of O(T2) thickness instead of O(T) (being T the sampling period of the control algorithm). Moreover it introduces a correction of the control vector which eliminates the influence of modeling error and external disturbances improving stability and robustness of the controlled system. Constant converter switching frequency is achieved by using space vector modulation, which eases the design of the ac harmonic filter. In the paper, after a detailed formalization of the proposed control algorithm, several numerical and experimental results on a three-phase grid-connected inverter prototype are shown, proving the effectiveness of the control strategy.
机译:本文提出了一种新的具有干扰补偿和减少颤振的离散时间积分滑模控制(DISMC),用于并网逆变器进行有功和无功功率调节。与文献中提出的许多具有时间连续公式的SMC不同,尽管已经使用数字处理器实现了该方案,但考虑到基于微处理器的实现方案引入的效果,提出的DISMC完全以离散时间制定。如将要证明的那样,这种方法同意减少关于O(T2)厚度而不是O(T)的边界层内的滑动歧管的颤动(成为控制算法的采样周期T)。此外,它引入了对控制矢量的校正,从而消除了建模误差和外部干扰的影响,从而提高了受控系统的稳定性和鲁棒性。通过使用空间矢量调制可实现恒定的转换器开关频率,从而简化了交流谐波滤波器的设计。在对提出的控制算法进行详细形式化之后,给出了三相并网逆变器原型的一些数值和实验结果,证明了该控制策略的有效性。

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