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首页> 外文期刊>International journal of electrical power and energy systems >Robust multisampled capacitor voltage active damping for grid-connected power converters
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Robust multisampled capacitor voltage active damping for grid-connected power converters

机译:并网功率转换器的稳健的多采样电容器电压有源阻尼

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摘要

The derivative feedback of the capacitor voltage is one of the most extended active damping strategies, used to eliminate stability problems in grid-connected power converters with an LCL filter. This strategy is equivalent to the implementation of a virtual impedance in parallel with the filter capacitor. This virtual impedance is strongly affected by the control loop delays and frequency, creating changes in the sign of the emulated virtual resistor, and raising instability regions where the active damping is ineffective. As a consequence, the LCL resonance frequency is restricted to vary, as the effective grid inductance changes, within the active damping stability region. This is an additional restriction imposed on the LCL filter design that can compromise the achievement of an optimised design. For this reason, in this work, a different strategy is presented; by adjusting the delay in the active damping feedback path, it becomes stable within the range where the LCL resonance frequency can be located for a given filter design, achieving a robust damping. Analytical expressions are provided to adjust this delay. To widen the stability region of the capacitor voltage derivative active damping, a multisampled derivative is implemented, overcoming its limitations close to the control Nyquist frequency. Experimental and simulation results validate the active damping strategy presented.
机译:电容器电压的微分反馈是最广泛的有源阻尼策略之一,用于消除带有LCL滤波器的并网功率转换器的稳定性问题。该策略等效于与滤波电容器并联的虚拟阻抗的实现。该虚拟阻抗受控制环路延迟和频率的强烈影响,在仿真虚拟电阻器的符号中产生变化,并增加了有源阻尼无效的不稳定区域。结果,随着有效栅极电感的变化,在有源阻尼稳定区域内,LCL谐振频率被限制为变化。这是对LCL滤波器设计的附加限制,可能会限制优化设计的实现。因此,在这项工作中提出了一种不同的策略。通过调节有源阻尼反馈路径中的延迟,该延迟在给定滤波器设计可定位LCL谐振频率的范围内变得稳定,从而实现稳健的阻尼。提供了分析表达式来调整此延迟。为了加宽电容器电压导数有源阻尼的稳定性区域,实施了多采样导数,以克服其接近控制奈奎斯特频率的局限性。实验和仿真结果验证了所提出的主动阻尼策略。

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