Adil Khan 10 months ago
AdiKhanOfficial #FYP Ideas

Robust Control of Grid Connected Inverter

The grid tied converters are used to inject power from renewable energy sources into a utility grid. There exists number of challenges in order to achieve this such as; renewable sources are intermittent in nature thus result in variation in source power, power injected must be synchronized in form

Project Title

Robust Control of Grid Connected Inverter

Project Area of Specialization

Electrical/Electronic Engineering

Project Summary

The grid tied converters are used to inject power from renewable energy sources into a utility grid. There exists number of challenges in order to achieve this such as; renewable sources are intermittent in nature thus result in variation in source power, power injected must be synchronized in form of voltage, frequency and phase with that of grid parameters which have variations as well (voltage amplitude and frequency variations due to variable connected loads), injected power must satisfy quality parameters , furthermore injected power must be controlled in terms of input source/s and inverter ratings.

All these conditions result in complex power processing and it cannot be achieved without feedback. The resultant system is time variant and nonlinear requiring sound control law to achieve desirable outcome and stable system.

In this project model predictive control law will be applied to inject quality power within a national grid. The design will be verified first through simulations and then on a prototype hardware

Project Objectives

The objectives of the project are to apply model predictive controller on a grid inverter for injecting quality power in the national grid. and to affectively use renewable energy units and to promote clean energy. Following are the project objectives.

  • To design digital predictive controller for grid tie converters.
  • To design converter which will effectively utilize renewable generation units.
  • To design low pass LCL filter for the inverter.
  • To develop protected coupling unit for inverter and grid integration.
  • To promote utilization of neat and clean energy.

Project Implementation Method

Based on our objectives and by viewing the literature a system will be designed. The comprehensive mathematical model of the inverter system will be derived. This model will be used to design control law based on model predictive theory. System stability and performance will be evaluated by using simulations. Finally proposed design will be verified on prototype.

 A document will be compiled in the form of thesis that will be comprised of proposed techniques, equation formulation, simulation results and prototype results.

Project submissions would be:

  • Project report covering all details of the design.
  • Simulation files with detailed description for using simulation models and evaluating performance.
  • Hardware prototype including:
    • H-Bridge inverter
    • FPGA code
    • Design specifications, including connection diagrams

Benefits of the Project

In past, mostly converters used as a backup system for AC power source like UPS (Uninterruptible Power Supply). They do not require any synchronization like frequency and phase. Rather they require controlled voltage or controlled current. Now a day’s converters are not only used for backup power but also, they are used to supply power to the grid (Grid Connected Inverters).

Grid connected photovoltaic systems guarantee a home always has access to power, even if the solar energy fails or is insufficient. The system's inverter connects to a battery bank that can store energy to be used in a power failure. An advantage of grid connected systems is that they are not dependent on the sun shining. Off grid photovoltaic energy is only intermittent but grid connected systems ensure that any additional electricity needed is automatically delivered by the grid.

Technical Details of Final Deliverable

  1. Inverter: A 1KW grid tie inverter, consisting of power electronic full bridge inverter with fault protection gate drives and low pass LCL filter.
  2. FPGA Code: The digital predictive control law will be implemented on FPGA board (Spartan 3 3S400) the software Verilog based code will be included.
  3. Power Coupling Unit: Power coupling unit is required to connect inverter with that of national grid. It will also be included within deliverable items.
  4. Report: Finally, a compressive report detailing design, software usage description, and analyzing system using simulations will be included.

Final Deliverable of the Project

Hardware System

Core Industry

Energy

Other Industries

Core Technology

Clean Tech

Other Technologies

Sustainable Development Goals

Affordable and Clean Energy, Climate Action

Required Resources

Item Name Type No. of Units Per Unit Cost (in Rs) Total (in Rs)
FPGA board Equipment11500015000
Bidirectional meter Equipment11500015000
Transformers Equipment2645011700
Rectifiers Equipment20501000
Capacitors Equipment1050500
Capacitors Equipment102002000
Capacitors Equipment504200
Voltage Regulator IC Equipment2040800
heat sink for voltage regulator Equipment2020400
Connectors Equipment6010600
Connectors Equipment6010600
Connectors Equipment60201200
Switch Equipment2010200
PCB Equipment107007000
Power IGBT Equipment102002000
Driver for IGBT Equipment101501500
heat sink for IGBT Equipment1050500
Base for driver Equipment1010100
Screws Equipment1005500
Screws Equipment50201000
Resistors Equipment1020200
Resistors Equipment10550
capacitor Equipment1020200
Inductor Equipment210002000
Capacitor Equipment25001000
Feric Chloride Equipment101501500
Solder wire Equipment1800800
Wire connectors Equipment49052450
PCB Printing Paper Miscellaneous 100202000
PCB Printing Miscellaneous 100202000
Permanent Marker Miscellaneous 1050500
stationary Miscellaneous 110001000
Project Representation tools Miscellaneous 120002000
overheads Miscellaneous 125002500
Total in (Rs) 80000
If you need this project, please contact me on contact@adikhanofficial.com
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