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The Total Harmonic Distortion (THD) of load voltage is analyzed.
Load voltage regulation against supply voltage and load disturbances are demonstrated through experimental results.
The effects of TSC and TSR-based SVC devices on load voltage are also analyzed.
The control objective aims to regulate the load voltage and frequency.
The converter with conventional sliding mode controller results in a steady state error in load voltage.
A separate resonant controller is used to regulate the homopolar components of the load voltage.
However, the power capability is easily affected by dynamic load, voltage variation and temperature.
A vector control system based in two synchronous rotating d-q axes is used to regulate the load voltage.
Furthermore, it decreases the fluctuation of load voltage and raises the utilization rate of ultra-capacitors' energy reserve.
Further using the model, a fractional order Proportional Integral (FOPI) controller has been designed for regulating the load voltage.
To improve the latter the load voltage deviation problem is applied to improve the system voltage profile.
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