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An enhanced microgrid power sharing strategy based on multiple second order generalized integrators harmonic detection and adaptive virtual impedance

机译:基于多个二阶广义积分器谐波检测和自适应虚拟阻抗的增强型微电网功率共享策略

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摘要

When microgrid which adopt droop control operate in island mode, the difference of line impedance from the distributed generation (DG) units to the common coupling point (PCC) will lead to a poor sharing performance of reactive power, harmonic power and unbalanced power. This paper introduces a novel control method based on multiple second-order generalized integrator harmonic detection, which can dynamically adjust the two DG virtual impedance by processing the error between steady active power and transient active power with an integrator. Then the reactive power, harmonic power and unbalanced power control are added through respectively injecting small frequency disturbances to achieve power sharing. The proposed control method achieves accurate reactive power, harmonic power and unbalanced power sharing at the steady state even on the condition that the information of line impedance and AC bus voltage is unknown. Simulation and experimental results verify the effect of the proposed control method.
机译:当采用下垂控制在岛模式下操作的微电网时,从分布式发电(DG)单元到公共耦合点(PCC)的线路阻抗的差异将导致无功功率,谐波功率和不平衡功率的不良分担性能。本文介绍了一种基于多次二阶通用积分器谐波检测的新型控制方法,可以通过使用积分器处理稳定的有功功率和瞬态电力功率之间的误差来动态调整两个DG虚拟阻抗。然后通过分别注入小频率干扰来增加无功功率,谐波功率和不平衡功率控制以实现电力共享。即使在线阻抗和交流总线电压未知的条件,所提出的控制方法也能以稳态处于稳态处实现精确的无功功率,谐波功率和不平衡功率共享。仿真和实验结果验证了所提出的控制方法的效果。

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