Control Strategies of Three - Phase Distributed Generation Inverters and Multilevel Inverter for Grid Unbalanced Voltage Compensation
نویسنده
چکیده
Due to the wide spread of power electronics equipment in modern electrical systems, the increase of the harmonics disturbance in the ac mains currents has became a major concern due to the adverse effects on all equipment. Power electronic converters are commonly used for interfacing distributed generation (DG) systems to the electrical power network. However, the unbalanced voltage compensation may cause adverse effects on the IFCs' operation such as output active power oscillation and DC link voltage variations. Moreover, since the compensation is realized through the available rating of IFCs, it is equally important to consider the effectiveness of control strategy for unbalanced voltage compensation. Specially, the first control strategy aims at minimizing the IFC's active power oscillation and reducing the adverse effects of unbalanced voltage compensation on IFC's operation. In DG systems a fast and accurate positive-sequence, fundamental grid voltage frequency and magnitude tracking is required to synchronize grid connected converter systems with the mains. The proposed System deals with a Multi level inverter for DG systems mitigating power quality issues, such as harmonics and reactive power compensation for grid-connected operation. It performs the nonlinear load current harmonic compensation, mitigates harmonics yielding more accurate and pure sine wave output. So Instead of using inverter we can use multilevel inverters in the power system equipment.
منابع مشابه
Control of Inverter-Interfaced Distributed Generation Units for Voltage and Current Harmonics Compensation in Grid-Connected Microgrids
In this paper, a new approach is proposed for voltage and current harmonics compensation in grid-connected microgrids (MGs). If sensitive loads are connected to the point of common coupling (PCC), compensation is carried out in order to reduce PCC voltage harmonics. In absence of sensitive loads at PCC, current harmonics compensation scenario is selected in order to avoid excessive injection of...
متن کاملGrid-Connected Modular Cascaded H-Bridge Multilevel PV Inverter Using Fuzzy Logic Controller
In this paper, the principle of modularity is used to derive the different multilevel voltage and current source converter topologies by fuzzy logic controller. The paper is primarily focused on highpower applications and specifically on high-voltage dc systems. The derived converter cells are treated as building blocks and are contributing to the modularity of the system. The modular cascaded ...
متن کاملSimulation and Comparison of Twenty Five Level Diode Clamped & Cascaded H-Bridge Multilevel Inverter
This paper presents the comparative study of three phase twenty five level diode clamped and cascaded H-bridge multilevel inverters. The comparison is made in respect of requirement of devices, quality of output voltage and reduction of total harmonic distortion at the multilevel inverter terminals. In this work multicarrier sinusoidal pulse modulation control methods of Phase disposition (PD-P...
متن کاملDynamic Compensation of Electrical Power Systems Using Multilevel Voltage Source Inverter
A New Static Var Generator (SVG), using cascaded full-bridge inverters (FBI) with binary output levels and the parallel connections of two cascaded inverters by means of current sharing reactor in each phases is introduced. The new M-level inverter, where M is 2n+2 - 3, consists of only 2n single-phase full bridges for each phases. The proposed technique not only increases the current capacity ...
متن کاملAn LCL-filtered Single-phase Multilevel Inverter for Grid Integration of PV Systems
Integration of the PV into the electrical grid needs power electronic interface. This power electronic interface should have some key features and should come up with grid codes. One of the important criteria is the quality and harmonic contents of the current being injected to the grid. High-order harmonics of the grid current should be very limited (lower than 0.3% of the fundamental current)...
متن کامل