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A new control structure for grid-connected LCL PV inverters with zero steady-state error and selective harmonic compensation

机译:具有零稳态误差和选择性谐波补偿的并网LCL光伏逆变器的新控制结构

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The PI current control of a single-phase inverter has well known drawbacks: steady-state magnitude and phase error and limited disturbance rejection capability. When the current controlled inverter is connected to the grid, the phase error results in a power factor decrement and the limited disturbance rejection capability leads to the need of grid feed-forward compensation. However the imperfect compensation action of the feed-forward control results in high harmonic distortion of the current and consequently noncompliance with international standards. In this paper a new control strategy aimed to mitigate these problems is proposed. Stationary-frame generalized integrators are used to control the fundamental current and to compensate the grid harmonics providing disturbance rejection capability without the need of feed-forward grid compensation. Moreover the use of a grid LCL-filter is investigated with the proposed controller. The current control strategy has been experimentally tested with success on a 3 kW PV inverter.
机译:单相逆变器的PI电流控制具有众所周知的缺点:稳态幅度和相位误差以及有限的干扰抑制能力。当将电流控制的逆变器连接到电网时,相位误差会导致功率因数减小,而受限的抗干扰能力会导致需要电网前馈补偿。然而,前馈控制的不完善的补偿作用导致电流的高次谐波失真,并因此不符合国际标准。在本文中,提出了一种旨在减轻这些问题的新控制策略。固定框架广义积分器用于控制基本电流并补偿电网谐波,从而提供抗扰能力,而无需前馈电网补偿。此外,还通过提出的控制器研究了网格LCL滤波器的使用。电流控制策略已在3 kW光伏逆变器上成功进行了实验测试。

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