Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Control shunt active filter based on dq frame using current model prediction

View through CrossRef
The nonlinear loads present more in the power systems in the practice today by developing of electronic technology and using the small distributed power sources (solar power, wind power etc.), this causes the increasing the high frequency switch devices etc. in the power network. Nonlinear loads cause non-sinusoidal currents and voltages with harmonic components, increasing the reactive power, overload of power lines and electrical devices, low power factor and affecting badly to the networks. Shunt active filters (SAF) with current controlled voltage source inverters (CCVSI) are used effectively to reduce the harmonics and to balance the phases sinusoidal source currents by generating the currents to compensate the harmonic currents caused by the nonlinear loads. In this paper we suppose a control strategy to generate the compensation currents of SAF by using the current model predictive engineering. This method is better than the control strategy using PI controller in term of transient time. The desired compensation currents can track exactly the reference compensation currents on the dq frame. The simulation results implemented on the nonlinear load, a full bridge rectifier and 3 phase unbalance load, show that the transient period decrease from 0.1s to 0.02s in comparing with PI controller. The experimental results proof that the THD of source currents decrease from 24.8% to 5.4% when using the proposed method.
Title: Control shunt active filter based on dq frame using current model prediction
Description:
The nonlinear loads present more in the power systems in the practice today by developing of electronic technology and using the small distributed power sources (solar power, wind power etc.
), this causes the increasing the high frequency switch devices etc.
in the power network.
Nonlinear loads cause non-sinusoidal currents and voltages with harmonic components, increasing the reactive power, overload of power lines and electrical devices, low power factor and affecting badly to the networks.
Shunt active filters (SAF) with current controlled voltage source inverters (CCVSI) are used effectively to reduce the harmonics and to balance the phases sinusoidal source currents by generating the currents to compensate the harmonic currents caused by the nonlinear loads.
In this paper we suppose a control strategy to generate the compensation currents of SAF by using the current model predictive engineering.
This method is better than the control strategy using PI controller in term of transient time.
The desired compensation currents can track exactly the reference compensation currents on the dq frame.
The simulation results implemented on the nonlinear load, a full bridge rectifier and 3 phase unbalance load, show that the transient period decrease from 0.
1s to 0.
02s in comparing with PI controller.
The experimental results proof that the THD of source currents decrease from 24.
8% to 5.
4% when using the proposed method.

Related Results

Uncommon complications of ventriculoperitoneal shunt surgery: review of four cases and literature review
Uncommon complications of ventriculoperitoneal shunt surgery: review of four cases and literature review
Abstract Background Ventriculoperitoneal shunt is one of the most popular cerebrospinal fluid diversion procedures worldwide. Complications are common, but uncommon complications a...
CFD Simulation and Optimization of a Cake Filtration System
CFD Simulation and Optimization of a Cake Filtration System
Abstract This study presents a simulation of filter cake formation during the filtration of rice hull ash and liquid mixture using ANSYS Fluent software. Filter cake...
Assessing the Effectiveness of Neuro-Endoscopic Procedures in the Treatment of Hydrocephalus
Assessing the Effectiveness of Neuro-Endoscopic Procedures in the Treatment of Hydrocephalus
Objective: The purpose of this systematic study is to assess the mortality results of early vs. delayed VP shunt implantation for hydrocephalus caused by myelomeningocele and exami...
Cerebrospinal Fluid Shunt Complications after Urological Procedures in Children with Myelodysplasia
Cerebrospinal Fluid Shunt Complications after Urological Procedures in Children with Myelodysplasia
ABSTRACT OBJECTIVE Invasive urological procedures, commonly performed on patients with myelodysplasia, may contribute to the occ...
Ventriculoportal Shunt, a New Transomphalic Extraperitoneal Surgical Technique in Treatment of Hydrocephalus
Ventriculoportal Shunt, a New Transomphalic Extraperitoneal Surgical Technique in Treatment of Hydrocephalus
Aim. The aim of this article was to report a new transomphalic extraperitoneal surgical technique for treatment of hydrocephalus, called ventriculoportal shunt. Materials and Metho...
A Prospective Study On Ventriculoperitoneal Shunt Surgery Complications In Tertiary Care Hospital
A Prospective Study On Ventriculoperitoneal Shunt Surgery Complications In Tertiary Care Hospital
Background and Aim: Hydrocephalus is defined as enlargement in ventricles size due to the increase in cerebrospinal fluid volume. Impaired cerebrospinal fluids in terms of absorpti...
ANALYSIS OF THE TREATMENT RESULTS OF COMPLICATIONS OF VENTRICULOPERITONEAL SHUNTING SURGERY IN CHILDREN
ANALYSIS OF THE TREATMENT RESULTS OF COMPLICATIONS OF VENTRICULOPERITONEAL SHUNTING SURGERY IN CHILDREN
The purpose of this study was to analyze the demographic data of children who had complications associated with ventriculoperitoneal shunt surgery and to review the clinical charac...

Back to Top