Technical Characteristics of the system
·
Ability to
track torque-speed and power-speed characteristics of a wind turbine at
different wind speeds and pitch angle.
·
Plotting
Cp-λ curve to show the turbine characteristics at a particular pitch angle.
·
Real time
tracking of λ could be utilized to track the optimal λ of a turbine.
·
Maximum
power point tracking opportunity based on the generated voltage and current
feedback.
·
Ability to
control DC link voltage using bidirectional converter in stand-alone mode.
·
Research
on Microgrid possible as the DC link can accommodate other renewable sources
such as PV.
·
Power flow
and quality supplied to the grid can be controlled and analysed.
·
Further
exploration of control techniques for smart grid implementation possible.
·
Continuous
sensing of grid side voltage and currents provide opportunity to implement
advanced control algorithms to control the behaviour as per grid conditions.
·
Implementing
different maximum power point algorithm in Wind Turbine Emulator system
·
Maintaining
minimum reactive power at inverter output to achieve unity power factor and
maximise the usable power generation.
·
Using
different differential equations to emulate different Wind Turbine models.
·
Implementing
Anti-islanding protection using fault detection at different loads
·
Comparative
analysis of different PV panels using PV emulator.
·
Series-parallel
behaviour of different PV panels could be analysed for both stand-alone and
grid connected systems.
·
Study the
buck and boost mode of operation of bidirectional converter in the battery
back-up system
·
Study
system performance with three renewable sources connected together to form a DC
micro grid with battery as the energy storage device.
·
Study
integration of DC micro-grid to the main AC grid using a 3-phase inverter.
·
Study the
operation of DC micro-grid under various load conditions by applying various DC
and AC loads.