Blame it on Sun! Average Solar PLFs not satisfactory
Blame it on Sun! Average Solar PLFs not satisfactory
Poor performance of solar projects has become a cause of worry recently. As a benchmark the large field based projects were expected to generate around 1500 kWh of electricity for each KW of solar panels installed in the Northern India. However the performance of these projects has not been satisfactory. The table below shows the actual number of units generated per kW of solar panels as recently announced by the Agencies for different Northern India states for the year 2012-13.
| States | Capacity (MW) | 2012-13 (PLF) | 2012-13: Equivalent kWh generated per kW |
| Haryana | 7.8 | 14.50% | 1270.2 |
| Punjab | 6 | 10.50% | 919.8 |
| Rajasthan | 11 | 16.00% | 1401.6 |
| Uttar Pradesh | 7 | 8.16% | 714.816 |
| Uttarakhand | 5 | 14.70% | 1287.72 |
Few solar plants have not reported data for all the months for various reasons. Overall the data has released for 69 power plants and the corresponding average PLFs of all the states for the year 2012-13.
Of course some of these projects have generated electricity as expected but many have not.
The performance of the project in terms of electricity generation depends on the quality of panel. It implies that a 15% efficiency panel should convert 15% of the radiation falling on it to the useful electricity. Also polysilicon panels should not be having performance degradation more than 0.7% to 1% year on year.
The electricity generation will also depend on the sun radiation available in that year.
Experts say that the generation also depends on the tilt of the panels installed. The radiation available on a flat surface would be significantly lower than that on the tilted surface.
Jury is still out to understand what caused the poor performance of these projects. A high radiation with humid condition does not support high generation for example.
Year 2013 remained a year when Indian witnessed an extra-ordinary monsoon. PID problem of Indian solar panel manufacturers still remain and need to be resolved.
For the time being we can blame it on Sun! Sun was not kind enough to provide sufficient radiation. Hopefully we get better radiations and better generation in future years and for the two years that have already passed.
Suggested Articles

Solar Charge Controller Explained: Purpose, Need & Advantages
A charge controller is a vital component of any solar system. Learn what it does, how it works, and why a solar system cannot function safely without it.

Developers fear unfair state-specific levies will make solar more expensive
Developers in India are concerned that state-specific levies on solar projects could increase costs, slow adoption, and impact the growth of renewable energy across residential, commercial, and industrial sectors.

Importance of MPPT in Solar System: Maximizing Solar Power Efficiency
MPPT plays a crucial role in solar systems by extracting maximum power from panels under varying conditions. Learn how MPPT improves efficiency, performance, and savings.

UP Discoms Propose 9.21% Electricity Tariff Hike for 2015-16
Uttar Pradesh Discoms propose a 9.21% increase in electricity tariffs for 2015-16, impacting residential, commercial, and industrial consumers across the state.

How to Calculate Battery Capacity for Solar Off-Grid Applications
Sizing a solar battery correctly is vital for off-grid performance and energy independence. This guide explains how to calculate battery capacity, choose the right type, and design a balanced off-grid system for uninterrupted power supply.

Solar PV Fault Diagnosis During Power Interruptions
A complete guide to identifying faults in solar PV systems during power generation interruptions, including troubleshooting techniques, root cause analysis, and corrective maintenance.

Solar Structure Alignment and Leveling Guide for Installers
A step-by-step guide to solar tracking system installation, covering setup, alignment, and best practices for maximum efficiency and performance.

India and Japan Strengthen Renewable Energy Cooperation
India and Japan have initiated a partnership under the Asia Energy Transition Initiative (AETI) to support India’s clean energy transition. India has set an ambitious target of achieving net-zero by 2070, while Japan aims to achieve the same by 2050.