Week 14 (28th Oct 2019 - 1st Nov 2019)
For week 14, I search the future work that related to my project.
Future Work
Figure 2.4: Design and Implementation of
Automated Solar Tracking System
This
project proposes an algorithm to detect the sun’s location and implement this
control algorithm on a single solar tracking system with single axis. The
tracker consists of a photovoltaic panel and adjusts its surface to the right
angle to the sun in order to obtain as much photonic energy as possible to turn
it into electrical energy. Solar power is one of renewable energy’s most traditional
sources. The sun’s energy is infinite. But the main challenge remains in
effectively optimizing the amount of energy to absorb the rays from the sun and
directly convert energy to electricity. The introduction of a solar tracking
system for solar panels is one way to increase performance. This is done to
ensure that the sun’s rays fall perpendicularly on the solar panel and collect
the full solar energy available. The sensors tracks the sun’s course regularly
throughout the day so that the top of the board is always facing the sun. All
work performed by the solar tracking system up to these days is based on
virtually the same location sensing principle. Traditionally, monitoring is
achieved using various sensor types that sense the sun location. Instead of
standard algorithms, this paper proposes a special solar tracking algorithm.
Unlike the use of photo-conductors, light detection resistors or photodiode,
these can not operate independently and this new type of sensing algorithm
includes voltage bias based on solar panel induced voltage. When light rays
land on it, the solar panel produces voltage. The voltage produced varies with
the change in the angle of light incident. It measures the direction of the sun
by measuring the relative change in the angle of solar incidence. The plan also
proposes using a low-power microprocessor (such as ATmega32) to keep the
overall system going. The proposed design therefore simplifies solar monitoring
operations and reduces operational and maintenance costs.
Conclusion:
I have compile the future work with the previous work in Chapter 2. I also able to complete the whole Chapter 2 which is Literature Review
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