Adaptive Roles of Islanded Microgrid Components for Voltage and Frequency Transient Responses Enhancement


This paper introduces a completely unique framework of coordinated voltage and frequency control strategy for islanded microgrid (MG) operation. The proposed management schemes depend on native measurements as communication-free management approach. Therefore, the distributed controllers of the MG elements have been deployed based on their slow, medium, and quick dynamic responses to take care of the voltage and frequency in adherence to IEEE Standards 1547 and 929. The various voltage and frequency control responses associated with reactive power management scheme are efficiently utilized based on well-outlined states of operation and transient management scheme. In every state, the roles of each device for voltage and frequency rules are outlined with its regulation capability, and response time primarily based on its native measurements. Consequently, the fast reactive power compensation and speedy frequency regulation are ensured primarily based on the inverter-based mostly devices at difficult operating conditions. Therefore, the proposed management strategy improves the voltage and frequency regulation, transient response, and MG stability. A comprehensive simulation study has verified the superior performance of the communication-free approach during steady state and in response to severe disturbances.

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