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A Control Strategy for Smooth Power Tracking of a Grid-Connected Virtual Synchronous Generator Based on Linear Active Disturbance Rejection Control

机译:基于线性主动干扰抑制控制的网格连接虚拟同步发电机平滑功率跟踪的控制策略

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摘要

The power quality of new energy resources has received tremendous attention recently. The control approach for the inverter, an interface between the new energy resources, and the infinite bus system is of vital importance. For the virtual synchronous generator (VSG), one of the research hotspots in the inverter control field, there are some challenges remaining to be dealt with. First is the contradiction between the rapid response and overshoot of active power output if VSG is connected to the grid. Secondly, the active power is deeply influenced by the fluctuation of gird frequency and this may bring power oscillation to VSG in weak grids. In this article, an active power controller for power tracking of grid-connected VSG is designed based on linear active disturbance rejection control (LADRC) by compensating for the lumped disturbance in a feedforward fashion. The parameters of the controller are analyzed and tuned in the frequency domain to acquire a desirable control performance. Moreover, the robustness of the control system is also considered. Simulation results show that the designed control system can transmit active power to the grid in a timely manner with no overshoot, as demanded. Additionally, it can output active power steadily according to the power reference without using a phase-locked loop (PLL) when the grid frequency has different features of fluctuation. In addition, the simulation results demonstrate that the improved VSG has strong robustness to the model parameter perturbation and mismatch.
机译:新能源资源的电能质量最近得到了极大的关注。逆变器的控制方法,新能源资源与无限总线系统之间的界面至关重要。对于虚拟同步发电机(VSG),逆变器控制领域的研究热点之一,还有一些挑战待地处理。首先,如果VSG连接到网格,则激活电源输出的快速响应和过冲之间的矛盾。其次,有功功率受到频率波动的深入影响,这可能会使电力振荡带来弱网格中的VSG。在本文中,通过补偿前馈顺为基于线性主动干扰抑制控制(Ladrc)设计了一种用于电网连接的VSG的电源跟踪的有源电力控制器。在频域中分析并调谐控制器的参数以获取期望的控制性能。此外,还考虑了控制系统的鲁棒性。仿真结果表明,设计的控制系统可以及时地向电网发射有效电力,没有要求的过冲。另外,当网格频率具有不同的波动特征时,它可以根据功率参考输出根据功率参考的电力参考输出有效功率。此外,仿真结果表明,改进的VSG对模型参数扰动和不匹配具有强大的鲁棒性。

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