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Proceedings of the 2nd International Conference on Current Trends in Engineering and Management ICCTEM -2014 
INTERNATIONAL JOURNAL OF ELECTRICAL ENGINEERING & 
17 – 19, July 2014, Mysore, Karnataka, India 
TECHNOLOGY (IJEET) 
ISSN 0976 – 6545(Print) 
ISSN 0976 – 6553(Online) 
Volume 5, Issue 8, August (2014), pp. 141-147 
© IAEME: www.iaeme.com/IJEET.asp 
Journal Impact Factor (2014): 6.8310 (Calculated by GISI) 
www.jifactor.com 
IJEET 
© I A E M E 
HYBRID POWER GENERATION USING RENEWABLE ENERGY SOURCES 
141 
 
FOR DOMESTIC PURPOSES 
Gopala Reddy. K1, Akshatha. K2, Bhushith. M.K2, Meganashree. H. R2 
1Assoc.Prof. Dept EEE, VVCE, Mysore 
2Students of EE, VVCE, Mysore 
ABSTRACT 
This paper will describe a hybrid system for generating dispatchable electric power using 
wind, solar and hydro energy combined together for domestic purposes and storage. The essential 
subsystems include vertical axis wind turbines solar panel and a pico-hydro system. This hybrid 
power generation system will be particularly useful in charging batteries, lighting up of CFL, playing 
of radio. This hybrid wind / solar/hydro system would be a more economical means for achieving 
zero-emission, firm, dispatchable capacity than independent construction of wind and solar plant or a 
pico- hydro plant generating system. 
Keywords: Dispatch Able, Hybrid, Zero Emission. 
1. INTRODUCTION 
A hybrid electric power generation system consists of two or more types of renewable 
resources. While fossil fuel will be the main fuels for thermal power, there is a fear that they will get 
exhausted eventually in the next century. Therefore other systems based on non-conventional and 
renewable sources are being explored and developed by many countries including our India. 
Renewable energy sources have attracted special attention due to the security of energy 
supply by reducing the dependence on imported fossil fuels. And also there is a reduction in 
emission of green house gases like co2 from the burning of fossil fuels. Hence renewable energy 
sources are sustainable energy sources that can be relied upon for a long time span. 
2. SURVEY 
At the current energy consumption rate, proven coal resources should last for about 200 
years, oil for 40years and natural gasses for 60years. As predicted there will be a 40+ percent
Proceedings of the 2nd International Conference on Current Trends in Engineering and Management ICCTEM -2014 
17 – 19, July 2014, Mysore, Karnataka, India 
increase in the world’s renewable-generated electricity over next 5years.Wind energy is the world’s 
fastest growing energy source, expanding globally at a rate of 25% to 35% annually over the last 
decade. Hydro is the second largest available renewable resource and its energy market is around 
20% to 30% annually. Solar technologies are predicted to be 4.9% of global renewable electricity by 
2017. 
142 
 
Fig. 1: Global report on renewable energy sources. 
3. METHODOLOGY 
If all the three sources are combined into one hybrid power generating system the drawbacks 
can be avoided partially or completely, depending on the control units. As it is generally seen those 
in rainy and windy days the solar power is limited and vice versa and hence to overcome this hybrid 
power generation is very useful. By this the power generation can be maintained in the above stated 
condition. The control of hydro, solar, and wind power plants is provided through a constant current 
controller. 
A system is proposed in which hybrid power generation system is connected with the utility 
grid. The parallel combination of these three energy systems has been adopted and for the continuous 
power flow grid is also connected. In summer, the grid connected solar system supplies the power to 
the load, hydro and wind system will be disconnected and same applies for the rainy and windy 
conditions. Hence it is good a option to adopt the proposed system for supplying continuous power 
to the consumer. 
4. WORKING 
Solar power generation: In actual usage, the solar cells are interconnected in certain series or 
parallel combinations to form modules. These modules are hermetically sealed for protection against 
corrosion, moisture, pollution and weathering. A combination of suitable module constitutes an 
array. One Square meter of fixed array kept facing south yields nearly 0.5kWhr of electrical energy 
on normal sunny day if the orientation of the array is adjusted to face the sun’s ray at any time the 
output can be increased by 30%. 
To obtain useful power output from photon interaction in a semi-conductor three processes 
are required. The photons have to be absorbed in the active part of the material and result in electrons 
being excited to a higher energy potential. The electron hole charge carrier created by the absorption 
must be physically separated and moved to the edge of the cell. The charge carriers must be removed 
from the cell and delivered to the useful load before they lose their extra potential.
Proceedings of the 2nd International Conference on Current Trends in Engineering and Management ICCTEM 
Fig. 2: Solar cell (Working 
17 – 19, July 2014, Mysore, Karnataka, India 
Working) Fig. 3: Equivalent circuit of a solar cell 
Hydro power generation: When water is pumped into the overhead tank using a motor, the water 
falling into the tank has certain amount of kinetic energy which can be utilized to generate 
electricity. 
At the point where the water fa 
falls into the tank, a generator is connected which is coupled to a 
blade. And when the water falls on the blade, it starts rotating which induces emf inside the armature 
of the generator. 
Fig. 4: Pico-hydro system 
Wind power generation: Wind power is the conversion of wind energy into useful form of energy, 
such as using wind turbines to produce electricity. A wind turbine is a device that converts kinetic 
energy from the wind into electrical power. A wind turbine used for charging batter 
referred to as a wind charger. 
The WECS consists of various components like aero-aero 
turbine, gearing, coupling, controller and 
generator. Aero-turbine converts energy in moving air to rotary mechanical energy. 
require pitch and yaw control for proper operation. 
143 
-2014 
 
lls batteries may be 
In general they
Proceedings of the 2nd International Conference on Current Trends in Engineering and Management ICCTEM 
-2014 
17 – 19, July 2014, Mysore, Karnataka, India 
Fig. 5: concept of energy production in wind turbines 
A mechanical interface consisting of a step up gear and a suitable coupling transmits the 
rotary mechanical energy to an electrical generator. The output of the 
battery. 
The purpose of the controller is to sense the speed and direction of the wind, shaft speed and 
torques at one or more points and output power by passing the control signal for matching the output 
and to protect the system from extreme conditions. 
are 5m/s and 25m/s respectively. 
144 
generator is connected to the 
stem The cut-in and cut-out speeds of the wind turbine
Proceedings of the 2nd International Conference on Current Trends in Engineering and Management ICCTEM 
Fig. 6 
17 – 19, July 2014, Mysore, Karnataka, India 
6: Components of WECS 
Fig. 7: Comparison between HAWT and VAWT 
5. HYBRID POWER GENERATION 
We integrate all the three electric power gene 
generating modules to optimize the utilization of 
renewable energies. Since the output from all the generating modules is variable, we make use of 
DC – DC converter (Buck converter) to get a fixed magnitude of DC. 
145 
-2014 
 
rating
Proceedings of the 2nd International Conference on Current Trends in Engineering and Management ICCTEM 
A battery is made use of to store the electric power 
17 – 19, July 2014, Mysore, Karnataka, India 
controller which facilitates proper and safe charging of the batteries. 
Fig. 8: Integration of all there generating sources 
6. ADVANTAGES 
 Hybrid electric power generating systems usually supply island networks that are not connected 
to an integrated grid covering several houses. 
 Large potential for rural electrification especially with renewable energy sources can be found 
in developing countries. 
 It also provides continuous power supply to the consumers. 
 Hybrid power generation is not seasonal. 
 Used to provide quality power to the consumers without any fluctuations. 
 Less maintenance and less man power is required for its operation and control. 
7. DISADVANTAGES 
 Initial cost is high. 
 Monitoring of turbine speed in WECS is difficult. 
 Voltage generated is not constant and hence voltage regulators must be made use 
 Since output is dc in all the three generating modules, inverters should be used 
8. APPLICATIONS 
 Since the project is being concentrated on fulfilling the domestic electric needs (for individual 
houses), home appliances such as CFLs, fans, radios can be supplied with the required electric 
power. 
 Once the domestic electricity needs are fulfilled, the excess ele 
integrated to a nearby grid. (Micro scale power selling) 
 They usually supply island networks that are not connected to an integrated grid covering 
several regions. 
 Used to provide quality power to the consumers without any fluc 
146 
generated. We also make use of a charge 
es peed electric power generated can be 
fluctuations. 
-2014 
 
ctric
Proceedings of the 2nd International Conference on Current Trends in Engineering and Management ICCTEM 
9. REFERENCES 
17 – 19, July 2014, Mysore, Karnataka, India 
147 
-2014

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Hybrid power generation using renewable energy sources for domestic purposes

  • 1. Proceedings of the 2nd International Conference on Current Trends in Engineering and Management ICCTEM -2014 INTERNATIONAL JOURNAL OF ELECTRICAL ENGINEERING & 17 – 19, July 2014, Mysore, Karnataka, India TECHNOLOGY (IJEET) ISSN 0976 – 6545(Print) ISSN 0976 – 6553(Online) Volume 5, Issue 8, August (2014), pp. 141-147 © IAEME: www.iaeme.com/IJEET.asp Journal Impact Factor (2014): 6.8310 (Calculated by GISI) www.jifactor.com IJEET © I A E M E HYBRID POWER GENERATION USING RENEWABLE ENERGY SOURCES 141 FOR DOMESTIC PURPOSES Gopala Reddy. K1, Akshatha. K2, Bhushith. M.K2, Meganashree. H. R2 1Assoc.Prof. Dept EEE, VVCE, Mysore 2Students of EE, VVCE, Mysore ABSTRACT This paper will describe a hybrid system for generating dispatchable electric power using wind, solar and hydro energy combined together for domestic purposes and storage. The essential subsystems include vertical axis wind turbines solar panel and a pico-hydro system. This hybrid power generation system will be particularly useful in charging batteries, lighting up of CFL, playing of radio. This hybrid wind / solar/hydro system would be a more economical means for achieving zero-emission, firm, dispatchable capacity than independent construction of wind and solar plant or a pico- hydro plant generating system. Keywords: Dispatch Able, Hybrid, Zero Emission. 1. INTRODUCTION A hybrid electric power generation system consists of two or more types of renewable resources. While fossil fuel will be the main fuels for thermal power, there is a fear that they will get exhausted eventually in the next century. Therefore other systems based on non-conventional and renewable sources are being explored and developed by many countries including our India. Renewable energy sources have attracted special attention due to the security of energy supply by reducing the dependence on imported fossil fuels. And also there is a reduction in emission of green house gases like co2 from the burning of fossil fuels. Hence renewable energy sources are sustainable energy sources that can be relied upon for a long time span. 2. SURVEY At the current energy consumption rate, proven coal resources should last for about 200 years, oil for 40years and natural gasses for 60years. As predicted there will be a 40+ percent
  • 2. Proceedings of the 2nd International Conference on Current Trends in Engineering and Management ICCTEM -2014 17 – 19, July 2014, Mysore, Karnataka, India increase in the world’s renewable-generated electricity over next 5years.Wind energy is the world’s fastest growing energy source, expanding globally at a rate of 25% to 35% annually over the last decade. Hydro is the second largest available renewable resource and its energy market is around 20% to 30% annually. Solar technologies are predicted to be 4.9% of global renewable electricity by 2017. 142 Fig. 1: Global report on renewable energy sources. 3. METHODOLOGY If all the three sources are combined into one hybrid power generating system the drawbacks can be avoided partially or completely, depending on the control units. As it is generally seen those in rainy and windy days the solar power is limited and vice versa and hence to overcome this hybrid power generation is very useful. By this the power generation can be maintained in the above stated condition. The control of hydro, solar, and wind power plants is provided through a constant current controller. A system is proposed in which hybrid power generation system is connected with the utility grid. The parallel combination of these three energy systems has been adopted and for the continuous power flow grid is also connected. In summer, the grid connected solar system supplies the power to the load, hydro and wind system will be disconnected and same applies for the rainy and windy conditions. Hence it is good a option to adopt the proposed system for supplying continuous power to the consumer. 4. WORKING Solar power generation: In actual usage, the solar cells are interconnected in certain series or parallel combinations to form modules. These modules are hermetically sealed for protection against corrosion, moisture, pollution and weathering. A combination of suitable module constitutes an array. One Square meter of fixed array kept facing south yields nearly 0.5kWhr of electrical energy on normal sunny day if the orientation of the array is adjusted to face the sun’s ray at any time the output can be increased by 30%. To obtain useful power output from photon interaction in a semi-conductor three processes are required. The photons have to be absorbed in the active part of the material and result in electrons being excited to a higher energy potential. The electron hole charge carrier created by the absorption must be physically separated and moved to the edge of the cell. The charge carriers must be removed from the cell and delivered to the useful load before they lose their extra potential.
  • 3. Proceedings of the 2nd International Conference on Current Trends in Engineering and Management ICCTEM Fig. 2: Solar cell (Working 17 – 19, July 2014, Mysore, Karnataka, India Working) Fig. 3: Equivalent circuit of a solar cell Hydro power generation: When water is pumped into the overhead tank using a motor, the water falling into the tank has certain amount of kinetic energy which can be utilized to generate electricity. At the point where the water fa falls into the tank, a generator is connected which is coupled to a blade. And when the water falls on the blade, it starts rotating which induces emf inside the armature of the generator. Fig. 4: Pico-hydro system Wind power generation: Wind power is the conversion of wind energy into useful form of energy, such as using wind turbines to produce electricity. A wind turbine is a device that converts kinetic energy from the wind into electrical power. A wind turbine used for charging batter referred to as a wind charger. The WECS consists of various components like aero-aero turbine, gearing, coupling, controller and generator. Aero-turbine converts energy in moving air to rotary mechanical energy. require pitch and yaw control for proper operation. 143 -2014 lls batteries may be In general they
  • 4. Proceedings of the 2nd International Conference on Current Trends in Engineering and Management ICCTEM -2014 17 – 19, July 2014, Mysore, Karnataka, India Fig. 5: concept of energy production in wind turbines A mechanical interface consisting of a step up gear and a suitable coupling transmits the rotary mechanical energy to an electrical generator. The output of the battery. The purpose of the controller is to sense the speed and direction of the wind, shaft speed and torques at one or more points and output power by passing the control signal for matching the output and to protect the system from extreme conditions. are 5m/s and 25m/s respectively. 144 generator is connected to the stem The cut-in and cut-out speeds of the wind turbine
  • 5. Proceedings of the 2nd International Conference on Current Trends in Engineering and Management ICCTEM Fig. 6 17 – 19, July 2014, Mysore, Karnataka, India 6: Components of WECS Fig. 7: Comparison between HAWT and VAWT 5. HYBRID POWER GENERATION We integrate all the three electric power gene generating modules to optimize the utilization of renewable energies. Since the output from all the generating modules is variable, we make use of DC – DC converter (Buck converter) to get a fixed magnitude of DC. 145 -2014 rating
  • 6. Proceedings of the 2nd International Conference on Current Trends in Engineering and Management ICCTEM A battery is made use of to store the electric power 17 – 19, July 2014, Mysore, Karnataka, India controller which facilitates proper and safe charging of the batteries. Fig. 8: Integration of all there generating sources 6. ADVANTAGES Hybrid electric power generating systems usually supply island networks that are not connected to an integrated grid covering several houses. Large potential for rural electrification especially with renewable energy sources can be found in developing countries. It also provides continuous power supply to the consumers. Hybrid power generation is not seasonal. Used to provide quality power to the consumers without any fluctuations. Less maintenance and less man power is required for its operation and control. 7. DISADVANTAGES Initial cost is high. Monitoring of turbine speed in WECS is difficult. Voltage generated is not constant and hence voltage regulators must be made use Since output is dc in all the three generating modules, inverters should be used 8. APPLICATIONS Since the project is being concentrated on fulfilling the domestic electric needs (for individual houses), home appliances such as CFLs, fans, radios can be supplied with the required electric power. Once the domestic electricity needs are fulfilled, the excess ele integrated to a nearby grid. (Micro scale power selling) They usually supply island networks that are not connected to an integrated grid covering several regions. Used to provide quality power to the consumers without any fluc 146 generated. We also make use of a charge es peed electric power generated can be fluctuations. -2014 ctric
  • 7. Proceedings of the 2nd International Conference on Current Trends in Engineering and Management ICCTEM 9. REFERENCES 17 – 19, July 2014, Mysore, Karnataka, India 147 -2014