2022
DOI: 10.11591/ijpeds.v13.i1.pp620-630
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Adaptive charging control using ANN-PID controllers on multiple DC loads with varying battery voltages

Abstract: Various rechargeable electronic devices currently have batteries with different capacities and voltages, while the available chargers are generally fixed for one device. This is considered less effective because different types of electronic devices will require different battery chargers. Therefore, the adaptive power charge is needed to recharge batteries with different voltages and capacities through a single port by adjusting the type of load connected. This system uses buck converter with duty cycle setti… Show more

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Cited by 2 publications
(2 citation statements)
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“…The NN of living things inspires many technologies. Researchers from many disciplines have designed NN to solve pattern recognition, prediction, optimization, and control systems [27]- [30]. The NN can operate beyond a defined boundary and become an alternative solution for control systems.…”
Section: Figure 1 Schematic Diagram Grid Connection With Mvdc Systemmentioning
confidence: 99%
“…The NN of living things inspires many technologies. Researchers from many disciplines have designed NN to solve pattern recognition, prediction, optimization, and control systems [27]- [30]. The NN can operate beyond a defined boundary and become an alternative solution for control systems.…”
Section: Figure 1 Schematic Diagram Grid Connection With Mvdc Systemmentioning
confidence: 99%
“…By modifying the duty cycle value, it can reduce the voltage from a higher voltage to a lower voltage [7], [8]. The smart charger must be able to detect the load, identify the connected load type, produce an output value that matches to the load, and be able to maintain output stability in order to finish the charging process correctly [9]. To do this, a more complex special method that can carry out the load identification process more accurately is required [10].…”
Section: Introductionmentioning
confidence: 99%