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Voltage and power control used to stabilise the distributed generation system for stand-alone or grid-connected operation

机译:电压和功率控制用于稳定分布式发电系统的独立运行或并网运行

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摘要

This study presents a control strategy for managing power delivered to, or absorbed from, the grid, independent of local load or grid characteristics. To achieve this objective, the strategy requires the use of three levels of control structures. The first is related to phase-locked loop and grid-tie algorithms, which are employed to minimise disturbances during the grid connection. The second, which produces voltages with reduced harmonics levels at the distributed generation (DG) terminals, comprises the cascade voltage and current control. The third structure is the active and reactive power control mechanisms, which uses the angle of displacement and the adjusting of the DG voltage amplitude to keep the power flow through the grid at a specific set-point, independent of local load characteristics. In addition, the power control structures have to operate in a decoupled operation mode, whereby the active power control has to be faster than the reactive power control, or vice versa. In terms of their physical structure, a passive LCL filter is used to connect the voltage source inverter to the grid. To verify the findings and observations discussed in this study, a set of simulations and experimental results are presented.
机译:这项研究提出了一种独立于本地负载或电网特性的控制策略,用于管理输送至电网或从电网吸收的功率。为了实现这一目标,该策略要求使用三个级别的控制结构。第一个与锁相环和并网算法有关,这些算法用于使并网期间的干扰最小化。第二个在级联电压和电流控制中,在分布式发电(DG)端子上产生谐波电平降低的电压。第三种结构是有功和无功功率控制机制,它利用位移角度和DG电压幅度的调整来使流经电网的功率保持在特定的设定点,而与局部负载特性无关。另外,功率控制结构必须以解耦操作模式操作,由此有功功率控制必须比无功功率控制更快,反之亦然。就其物理结构而言,无源LCL滤波器用于将电压源逆变器连接到电网。为了验证本研究中讨论的发现和观察结果,提出了一组模拟和实验结果。

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