Project theme: Due to shortage of power generation in pakistan our aim is to design mulltilevel level inverter for increasing the capacity of national grid by producing our own power and then supplying to our national grid . Background: Du
GRID TIED INVERTER
Project theme:
Due to shortage of power generation in pakistan our aim is to design mulltilevel level inverter for increasing the capacity of national grid by producing our own power and then supplying to our national grid .
Background:
Due to the shortage of fossil fuels and environmental problems caused by conventional power generation, renewable energy, particularly solar energy, has become very popular. Solar-electric-energy demand has grown consistently by 20%– 25% per annum over the past 20 years, and the growth is mostly in grid-connected applications. With the extraordinary market growth in grid connected photovoltaic (PV) systems, there are increasing interests in grid-connected PV configurations.
Objective :

project implementation diagram
Cascaded inverters consist of several converters connected in series; thus, the high power and high voltage from the combination of the multiple modules would favor this topology in medium and large grid-connected PV systems. Similarly, cascaded inverter would maintain the benefits of “one converter per panel,” such as better utilization per PV module, capability of mixing different sources, and redundancy of the system. Major challenges in grid tie inverter are low total hormonic distortion (THD) and mismatch of phase and frequency. As per IEEE Standard the total hormonic distortion (THD) of the inverter should be less than 5% in order to feed power to grid similarly mismatch of frequency and phase may turn grid-tie-inverter into a load to grid. The cascaded multilevel inverter topology consists of H-bridge converters connecter in series . Each DC link is fed by a short string of PV panels. By different combinations of the fourswitchesin each H-bridge, three output voltage levels can be generated, –vdc, 0, or +vdc. A cascaded multilevel inverter with n input sources will provide 2n+1 level to synthesize the AC output waveform. This (2n+1)-level voltage waveform enables the reduction of harmonics in the synthesized current, reducing the output filters. Multilevel inverters also have other advantages such as reduced voltage stresses on the semiconductor switches, as well as having higher efficiency when compared to other converter topologies. As shown in Fig. 6, the cascaded multilevel inverter is connected to the grid through an L filter, which is used to reduce the switching harmonics in the current. There is also a local load connected in parallel. PV power is delivered to the load/grid according to the system operation conditions.
Cascaded inverters consist of several converters connected in series; thus, the high power and high voltage from the combination of the multiple modules would favor this topology in medium and large grid-connected PV systems. Similarly, cascaded inverter would maintain the benefits of “one converter per panel,” such as better utilization per PV module, capability of mixing different sources, and redundancy of the system. Major challenges in grid tie inverter are low total hormonic distortion (THD) and mismatch of phase and frequency. As per IEEE Standard the total hormonic distortion (THD) of the inverter should be less than 5% in order to feed power to grid similarly mismatch of frequency and phase may turn grid-tie-inverter into a load to grid.

schematic circuit of grid tie inverter
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| transistor | Equipment | 8 | 150 | 1200 |
| battery | Equipment | 2 | 4500 | 9000 |
| transformer | Equipment | 1 | 350 | 350 |
| PCB | Equipment | 1 | 1200 | 1200 |
| inductor | Equipment | 1 | 150 | 150 |
| capacitor | Equipment | 1 | 150 | 150 |
| controller | Equipment | 1 | 2000 | 2000 |
| prototype board | Equipment | 1 | 1500 | 1500 |
| fuel | Miscellaneous | 9 | 109 | 981 |
| lcd display | Equipment | 1 | 700 | 700 |
| connecting wires | Equipment | 1 | 1000 | 1000 |
| other hardware cost | Equipment | 1 | 1000 | 1000 |
| thesis binding and printing | Miscellaneous | 1 | 1500 | 1500 |
| Total in (Rs) | 20731 |
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