基于共识的孤立微电网多节点下垂控制综合

Lin-Yu Lu, C. Chu
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引用次数: 104

摘要

微电网的自主电力共享任务通常是通过对单个接口电源转换器进行分散下垂控制来实现的,而这种控制可能会受到输出线阻抗的影响。在线路阻抗极不均匀的情况下,会产生不准确的无功分担。由于微电网固有的分布式和异构特性,它成为共识控制算法应用的理想平台。针对现有下垂控制方法的不足,提出了基于共识的稀疏通信网络下垂控制方法。特别是当电网的线路阻抗呈均匀R/X比有损性甚或纯电阻性时,共识下垂控制仍然是实现实功和无功自主共享的有效方法。此外,在所提出的基于共识的下垂控制方法在一定条件下可以通过能量函数方法保证闭环系统的稳定性。通过对两个微电网系统的实时仿真,验证了基于共识的下垂控制方法的可行性。
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Consensus-based droop control synthesis for multiple DICs in isolated micro-grids
The task of autonomous power sharing in a micro-grid is usually achieved by decentralized droop control on individual interface power converters, which may suffer from the dependence on output line impedances. Inaccurate reactive power sharing will occur under strongly non-uniform line impedances. Due to inherently distributed and heterogeneous nature of the micro-grid, it becomes an ideal platform for applications of consensus control algorithms. In this paper, the consensus-based droop control with sparse communication network is proposed to overcome the drawback of existing droop control methods. In particular, when line impedances of the power grid are either lossy with the uniform R/X ratio or even pure resistive, the consensus droop control is still an effective method for autonomous real and reactive power sharing. In addition, closed-loop system stability of the proposed consensus-based droop control method can be ensured} by the energy function approach under certain conditions. Real-time simulations of two micro-grid systems are studied to validate the feasibility of the proposed consensus-based droop control method.
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