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"Rule-based fuzzy controller for solid state transfer switch towards fa" by A. Z. Arsad, M. A. Hannan et al.

This paper deals with the development of an intelligent fuzzy logic controller for SSTS towards fast fault detection and power transfer to the alternative feeder. A set of fuzzy rules are developed for the controller which in turn shift the loads from the preferred feeder to the alternate feeder with quality power resolving fault interruption or voltage sags. The voltage and the current control loop generate a signal to the fuzzy control block to provide an on or off pulse for the switches upon activate fuzzy rules in the interference engine. In this study, a compilation of 35%, 50%, 70%, and 100% faults are created to demonstrate the effectiveness of the proposed fuzzy controller towards detecting fault levels and transferring power to the desired feeder. It was discovered that the proposed fuzzy logic controller detects faults in the range of 0.054 to 0.061 milliseconds and transfers power in the range of 1.742 to 3.107 milliseconds, which is significantly faster and more reliable th ....

Control Systems , Fault Analysis , Fault Detection , Fuzzy Logic , Power Quality , Sts System , Voltage Control ,

"An Adaptable Correlated Control for Maintaining Voltage Quality in Low" by Arian Zahedmanesh, Kashem Muttaqi et al.

Rooftop photovoltaic (PV) systems and plug-in electric vehicles (PEVs) will be increasingly utilized by residential customers due to their economic and environmental benefits. However, the intermittent power produced by PVs and the additional loads required for the PEV charging can cause power quality disturbances in the low voltage distribution networks (LVDN). An adaptable correlated control (ACC) is proposed for the decoupled optimization of the active and reactive power, where energy cost can be minimized through the local demand side management (DSM) of residential loads. Further, the optimal allocation of the sparse capacity of inverters for reactive power compensation to maintain the voltage variations and the mitigation of voltage unbalances within the allowable limits is proposed. The proposed ACC provides a supervisory control to observe and modify the voltage quality of the LVDN without the need for real-time collaboration between controllers. The impacts of the integration ....

Distributed Control , Distribution Networks , Ow Voltage Distribution Networks Lvdn , Lug In Electric Vehicle Pev , Reactive Power , Ooftop Photovoltaic Pv , Voltage Control , Oltage Quality ,