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Dive into the research topics where Javad Khazaei is active.

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Featured researches published by Javad Khazaei.


IEEE Transactions on Sustainable Energy | 2015

Impedance Model-Based SSR Analysis for TCSC Compensated Type-3 Wind Energy Delivery Systems

Lakshan Piyasinghe; Zhixin Miao; Javad Khazaei; Lingling Fan

Summary form only given. This paper employs impedance-model-based frequency domain analysis to detect subsynchronous resonances (SSR) in Type 3 wind farms with Thyristor Controlled Series Capacitor (TCSC). The contributions of this paper are (i) the derivation of dynamic phasor based TCSC impedance model and (ii) the application of such impedance model in Type 3 wind energy systems for SSR analysis. Impedance models for TCSC with constant firing angle control and impedance control are derived in this paper. With the derived impedance models, Nyquist-stability-criterion is applied to compare SSR stability in Type 3 wind farm with TCSC or with fixed capacitor compensation. This paper employs analytical models to demonstrate TCSCs capability in avoiding SSR in Type 3 wind generator interconnection systems. The analytical results obtained through impedance models are validated by detail model-based (with thyristor switch modeled) time-domain simulation in Matlab/SimPowerSystems.


power and energy society general meeting | 2014

Real-time digital simulation modeling of single-phase PV in RT-LAB

Javad Khazaei; Lakshan Piyasinghe; Zhixin Miao; Lingling Fan

In this paper, the real-time simulation model of a single-phase single-stage Photovoltaic (PV) has been developed in RT-LAB. The model is composed of a detailed model of a PV with Maximum Power Point Tracking (MPPT), a Phase Locked Loop (PLL), a proportional resonance (PR) controller, and a full bridge inverter. As the RT-LAB works in discrete time domain, modifications have been applied to the MPPT and the PR controller. The paper presents the control structures in discrete domain. Two categories of case studies have been carried out. In the first case, an irradiance signal composed of a ramp and a step change was applied. In the second case, the irradiance was generated by a Chroma controllable voltage source to emulate the random irradiance and it has been sent to the RT-LAB as an input signal. Outputs from the RT-lab were captured in oscilloscopes. The paper demonstrates the use of the developed PV model for real-time digital simulation and for hardware integration.


power and energy society general meeting | 2015

Real-time simulation and hardware-in-the-loop tests of a battery system

Javad Khazaei; Lakshan Piyasinghe; Vahid R. Disfani; Zhixin Miao; Lingling Fan; George Gurlaskie

In this paper, a real time model of the microgrid with an energy storage system has been implemented in RT-Lab. Coordinated control of the battery storage system with a PV system is simulated. To be more realistic, hardware-in-the-loop (HIL) testbed has been implemented with a real battery cell (3.2-V, 40-Ahr) connected to the real-time simulation model of the microgrid. A programmable current source (Magna) and programmable load (Bk 8500) have been used to create charging and discharging paths between the energy storage unit and the RT-LAB.


power and energy society general meeting | 2015

Initialization of unbalanced radial distribution systems for small signal stability analysis

Javad Khazaei; Zhixin Miao; Lakshan Piyasinghe; Lingling Fan

This paper investigates the application of sweeping method in initializing the state variables of an unbalanced radial distribution system for small signal analysis. The unbalance is caused by a single-phase PV system. The system is composed of a three-phase induction machine (IM), a single-phase PV, a load, and a power factor correction (PFC) unit. The IM is modeled in positive-, negative-, and zero- sequence dynamic phasors and then converted into in a abc dynamic phasors frame. The PV, load and PFC and radial network are all modeled in phase-based dynamic phasors. The sweeping method along with embedded Newton-Raphson iterations is implemented to find the equilibrium point for initialization. The iterative procedures are illustrated and demonstrated by case studies. A dynamic simulation case study is also presented.


power and energy society general meeting | 2015

Impedance model-based SSR analysis for TCSC compensated type-3 wind energy delivery systems

Lakshan Piyasinghe; Zhixin Miao; Javad Khazaei; Lingling Fan

This paper employs impedance model-based frequency domain analysis to detect subsynchronous resonances (SSRs) in Type-3 wind farms with thyristor-controlled series capacitor (TCSC). The contributions of this paper are 1)the derivation of dynamic phasor-based TCSC impedance model and 2)the application of such an impedance model in Type-3 wind energy systems for SSR analysis. Impedance models for TCSC with constant firing angle control and impedance control are derived in this paper. With the derived impedance models, Nyquist stability criterion is applied to compare SSR stability in Type-3 wind farm with TCSC or with fixed capacitor compensation. This paper employs analytical models to demonstrate TCSCs capability in avoiding SSR in Type-3 wind generator interconnection systems. The analytical results obtained through impedance models are validated by detail model-based (with thyristor switch-modeled) time-domain simulation in MATLAB/SimPowerSystems.


north american power symposium | 2013

Modeling of Z-source converter for renewable energy integration

Yin Li; Javad Khazaei; Lingling Fan; Zhixin Miao

In this paper, switching modulation schemes for Z-source converters used for renewable energy integration are investigated. Both dc-dc converters and dc-ac converters are discussed. Input/output voltage relationships for the two types of converters (half-bridge dc-dc and three-phase three-bridge dc-ac) are analyzed based on circuit analysis. The two converters are built and simulated in PSCAD. Simulation results give validation of the analysis results.


International Journal of Electrical Power & Energy Systems | 2013

Sub-Synchronous Resonance damping via Doubly Fed Induction Generator

M. Mokhtari; Javad Khazaei; Daryoosh Nazarpour


IEEE Transactions on Power Systems | 2015

Dynamic Phasor-Based Modeling of Unbalanced Radial Distribution Systems

Zhixin Miao; Lakshan Piyasinghe; Javad Khazaei; Lingling Fan


Electric Power Systems Research | 2015

Minimizing DC System Loss in Multi-Terminal HVDC Systems through Adaptive Droop control

Javad Khazaei; Zhixin Miao; Lakshan Piyasinghe; Lingling Fan


Electric Power Systems Research | 2015

Real-time digital simulation-based modeling of a single-phase single-stage PV system

Javad Khazaei; Zhixin Miao; Lakshan Piyasinghe; Lingling Fan

Collaboration


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Lingling Fan

University of South Florida

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Zhixin Miao

University of South Florida

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Lakshan Piyasinghe

University of South Florida

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Durgesh Manjure

University of South Florida

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George Gurlaskie

University of South Florida

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Weiqing Jiang

University of South Florida

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Yin Li

University of South Florida

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