In this work it is proposed to validate an evolutionary tuning algorithm in plants composed by a grid connected inverter. The optimization aims the tuning of the slopes of P-Ω and Q-V curves so that the system is stable, damped and minimum settling time. Simulation and experimental results are presented to prove the feasibility of the proposed approach. However, experimental results demonstrate a compromising effect of grid frequency oscillations in the active power transferring. In addition, it was proposed an additional loop to compensate this effect ensuring a constant active power flow. © 2011 IEEE
Due to the popularity of renewable energy, e.g., wind power and solar energy, renewable energy gener...
In grid-connected photovoltaic systems significant improvements can be carried out in the design and...
This paper presents a new, hybrid genetic algorithm (GA) approach to solve optimal power flow (OPF) ...
In this work it is proposed an optimized dynamic response of parallel operation of two single-phase ...
Abstract — Most of the modern renewable energy technologies generate DC electric power, which is inc...
The amount of grid-connected power electronics is rapidly increasing and their effect to power quali...
This work demonstrates the application of Genetic Algorithm (GA) technique for the simultaneous stab...
The demand for renewable energy to sustain today’s vulnerability towards depleting fossil fue...
Due to the strong intermittency of micro-resources, the poor grid-tied power quality, and the high g...
The optimal coordinated tuning of a group of Static Var Compensators (SVC), in steady state, allows ...
Load and supply parameters may be uncertain in microgrids (MGs) due for instance to the intermittent...
© 2017 Zhiding WuThe microgrid is a new scheme of future distribution power grid with small scale an...
Distributed power generation systems are expected to deliver active power into the grid and support ...
Nowadays, the power plant is changing the power industry from a centralized and vertically integrate...
The high-level penetration of intermittent renewable power generation may limit power system inertia...
Due to the popularity of renewable energy, e.g., wind power and solar energy, renewable energy gener...
In grid-connected photovoltaic systems significant improvements can be carried out in the design and...
This paper presents a new, hybrid genetic algorithm (GA) approach to solve optimal power flow (OPF) ...
In this work it is proposed an optimized dynamic response of parallel operation of two single-phase ...
Abstract — Most of the modern renewable energy technologies generate DC electric power, which is inc...
The amount of grid-connected power electronics is rapidly increasing and their effect to power quali...
This work demonstrates the application of Genetic Algorithm (GA) technique for the simultaneous stab...
The demand for renewable energy to sustain today’s vulnerability towards depleting fossil fue...
Due to the strong intermittency of micro-resources, the poor grid-tied power quality, and the high g...
The optimal coordinated tuning of a group of Static Var Compensators (SVC), in steady state, allows ...
Load and supply parameters may be uncertain in microgrids (MGs) due for instance to the intermittent...
© 2017 Zhiding WuThe microgrid is a new scheme of future distribution power grid with small scale an...
Distributed power generation systems are expected to deliver active power into the grid and support ...
Nowadays, the power plant is changing the power industry from a centralized and vertically integrate...
The high-level penetration of intermittent renewable power generation may limit power system inertia...
Due to the popularity of renewable energy, e.g., wind power and solar energy, renewable energy gener...
In grid-connected photovoltaic systems significant improvements can be carried out in the design and...
This paper presents a new, hybrid genetic algorithm (GA) approach to solve optimal power flow (OPF) ...