Exact(7)
Controls using existing power system facilities have suggested to mitigate voltage collapse phenomena.
This system is capable to mitigate voltage disturbances at low voltage distribution system.
Currently distribution networks rely heavily on existing On Load Tap Changing (OLTC) transformers to mitigate voltage fluctuations.
The controllers are examined using the IEEE 123-bus feeder distribution system, and it is found that the controllers can effectively mitigate voltage magnitude fluctuations and that the appropriate choice of controller depends on the performance metrics of interest.
The simulation results approve the capability of the proposed controller to provide a sinusoidal output voltage and mitigate voltage fluctuation to a considerable level by using phase space method.
This paper focuses on the proper selection and design of suitable solid-state Fault Current Limiter configurations for application on the power systems to mitigate voltage sags in term of voltage magnitudes and phase angle jumps.
Similar(53)
Traditionally, oversizing of the generator was used, under the pretext of mitigating voltage sag.
However, there may be a conflict when mitigating voltage sag and load harmonic current at same time using UPQC-SRI, which will narrow down the UPQC-SRI region or cause the overcurrent of shunt converter.
This paper presents a new methodology for mitigating voltage problems in LV networks, in a future scenario with high integration of distributed energy resources (DER), taking advantage of these resources based on a smart grid type architecture.
This paper proposes a coordinated solution for matching the reactive power capabilities of solar inverters and the grid voltage regulation of the LV distribution transformer, to mitigate the voltage rise issue in a LV network.
As the comprehensive compensation equipment of power quality, unified power quality conditioner (UPQC) is especially appropriate for solving the problems above, which can mitigate both voltage and current quality issues such as harmonic, unbalance, voltage swell and sag [4].
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