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A new virtual-flux-vector based droop control strategy for parallel connected inverters in microgrids

机译:一种新的基于虚拟通量矢量的微扰并联逆变器下垂控制策略

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摘要

Voltage and frequency droop method is commonly used in microgrids to achieve proper autonomous power sharing without rely on intercommunication systems. This paper proposes a new control strategy for parallel connected inverters in microgrid applications by drooping the flux instead of the inverter output voltage. Firstly, the relation between the inverter flux and the active and reactive power is mathematically obtained. Secondly, a novel flux droop method is then developed in order to regulate the active and reactive powers by drooping the flux amplitude and the phase angle, respectively. In addition, a small- signal model is developed in order to design the main control parameters and study the system dynamics and stability. The proposed control scheme includes a direct flux control (DFC) algorithm, which avoids the use of PI controllers and PWM modulators. Furthermore, in order to reduce the flux ripple, a model predictive control (MPC) scheme is integrated into the DFC. The obtained results shows that the proposed flux droop strategy can achieve active and reactive power sharing with much lower frequency deviation and better transient performance than the conventional droop method, thus which make it very attractive, highlighting the potential use in microgrid applications.
机译:电压和频率下垂方法通常用于微电网中,以实现适当的自主功率共享,而无需依赖内部通信系统。本文提出了一种微电网应用中并联逆变器的新控制策略,它通过降低磁通量而不是逆变器输出电压来实现。首先,通过数学方法获得逆变器磁通与有功功率和无功功率之间的关系。其次,为了抑制有功功率和无功功率分别通过降低磁通幅度和相角来开发一种新颖的磁通降低方法。此外,还开发了一个小信号模型,以设计主要控制参数并研究系统动力学和稳定性。所提出的控制方案包括直接磁通控制(DFC)算法,该算法避免了使用PI控制器和PWM调制器。此外,为了减少磁通纹波,将模型预测控制(MPC)方案集成到DFC中。获得的结果表明,与传统的下垂方法相比,所提出的磁通下垂策略可以实现有功和无功功率共享,具有更低的频率偏差和更好的瞬态性能,因此使其具有很大的吸引力,突出了在微电网应用中的潜在用途。

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