This research focuses on developing a proportional integral derivative controller based on a single artificial neural network (PID-SANN). The proposed control strategy drives the direct current (DC-DC) boost converter output voltage to follow the desired reference value. This controller calculates the PID gains via a learning algorithm based on an artificial single-neuron network, which overcomes the computational complexity of PID gains using analytical methods and automatically adjusts the controller parameters. The developed PID-SANN method offers the boost converter the appropriate duty ratio, which permits controlling the output voltage value despite fluctuations in the resistive load or input voltage. The obtained results confirm that...
A low-cost analog neural network control scheme for the inverters of Uninterruptible Power Supplies ...
This paper proposes a neural network control voltage tracking scheme of a DC-DC Flyback converter. I...
Electrical distribution system suffers from problems like reactive power burden, unbalance loading a...
This paper introduced a “PID-NN” based on Particle Swarm Optimization control that was applied to a ...
The rapid growth of renewable energy technology enables the concept of microgrid (MG) to be widely a...
Due to the negative effects of the non-linear semiconductor devices and the passive electrical compo...
Since power electronics converters behave nonlinear, conventional control strategies such as PID are...
In research related to control of DC/DC converters, artificial intelligence techniques are a great i...
This paper presents a method to control both the dc boost and the ac output voltage of Z-source inve...
Inductive power transfer (IPT) systems facilitate contactless power transfer between two sides and a...
Attempts have recently been made to apply Neural Networks to control systems where they are to deal ...
This paper proposes a neural network control voltage tracking scheme of a DC-DC Flyback converter. I...
This paper presents simulation, design methodology and implementation of a Half Bridge DC-DC Convert...
This paper proposes an artificial neural network (ANN) voltage tracking of multi-input interleaved b...
The conventional PID (proportional-integral derivative) controller is widely applied to industrial a...
A low-cost analog neural network control scheme for the inverters of Uninterruptible Power Supplies ...
This paper proposes a neural network control voltage tracking scheme of a DC-DC Flyback converter. I...
Electrical distribution system suffers from problems like reactive power burden, unbalance loading a...
This paper introduced a “PID-NN” based on Particle Swarm Optimization control that was applied to a ...
The rapid growth of renewable energy technology enables the concept of microgrid (MG) to be widely a...
Due to the negative effects of the non-linear semiconductor devices and the passive electrical compo...
Since power electronics converters behave nonlinear, conventional control strategies such as PID are...
In research related to control of DC/DC converters, artificial intelligence techniques are a great i...
This paper presents a method to control both the dc boost and the ac output voltage of Z-source inve...
Inductive power transfer (IPT) systems facilitate contactless power transfer between two sides and a...
Attempts have recently been made to apply Neural Networks to control systems where they are to deal ...
This paper proposes a neural network control voltage tracking scheme of a DC-DC Flyback converter. I...
This paper presents simulation, design methodology and implementation of a Half Bridge DC-DC Convert...
This paper proposes an artificial neural network (ANN) voltage tracking of multi-input interleaved b...
The conventional PID (proportional-integral derivative) controller is widely applied to industrial a...
A low-cost analog neural network control scheme for the inverters of Uninterruptible Power Supplies ...
This paper proposes a neural network control voltage tracking scheme of a DC-DC Flyback converter. I...
Electrical distribution system suffers from problems like reactive power burden, unbalance loading a...