Hello guys, welcome back to my blog. In this article, I will discuss the top projects on hybrid power systems, hybrid power system projects based on combinations of different energy generation systems.
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Projects On Hybrid Power Systems
Hybrid power systems produce energy from two or more sources, most of which are renewable, and share a single connection point. Even though the combined power of hybrid generating modules is more than the evacuation capacity, inverted energy can never surpass this limit. As a result, a hybrid generating plant may use photovoltaic energy while the sun shines and another source, such as wind, when the weather is gloomy, assuring a more reliable and efficient supply. Storage systems may or may not be included in hybrid installations.
Different Types of Projects on Hybrid Power Systems
01. Tidal Energy Sea Wave Power Generator With Solar
The sea wave plus solar generator is a one-of-a-kind generator that generates power using two different sources of alternative energy. A buoy is included in the machine, which is utilized to float and move vertically with the sea waves. Using a rack and pinion configuration, the buoy can transfer sea wave power to the generator engine. For effective power transmission, the power provided to this shaft is not transmitted to the motor via a pulley system.
A second power source, solar, is used to create an extra 50 watts of power for dependable power generation. The machine has been designed with a wheel construction to make it portable. The machine is also made of lightweight, rustproof materials to prevent corrosion while in use at sea. The machine has the potential to be a lifesaver as well as a steady source of electricity for ships or backup generators on the coast.
02. Solar UPS Project
We propose a solar-powered UPS that uses solar energy to charge a battery, which is then utilized to power an AC load via an inverter. Using charge controller circuitry, our solar panel is utilized to continuously charge the 12V DC battery. The battery charge is reversed and stepped up from 12V DC to roughly 140 – 150 V AC once the load switch is turned on. This has now been sent to the AC load. As a result, our solar panel and battery combination successfully power an AC load. The system may be utilized as a UPS in the event of a power loss or emergency power outage, and it can also function as a stand-alone system without the need for an external power supply.
03. RC Solar Lake Pool Cleaner Drone
To accomplish this mission, the RC cleaner drone uses 2x high torque motors, an RC controller, solar panels, 2x sensors, a wireless camera, collector mesh, and an Atmega microprocessor. The rudderless dual drive motor system is utilized to provide drive to the RC boat with dual propulsion. This makes rudderless movement control simple.
To catch surface rubbish floating on water, the collector mesh is encased inside the RC boat frame. This enables the drone to consume all of the debris in its path and continue forward. If any marine animals are captured with the waste, they may easily swim out of the mesh via the front aperture, causing no harm to the sea life.
The RC controller sends RF signals to the drone controller unit to control movement. The controller unit receives and decodes these signals, which are subsequently processed by the microcontroller to control the drive motors. The drone employs two sensors (pH and turbidity) to detect and record the ph and turbidity levels of water pollution in the memory card for further reference.
The top-mounted solar panels are utilized to collect solar energy and charge the drone’s batteries continuously while it is in operation. Even if the drone malfunctions in a lake. A half-hour of sunshine can restore the robot’s functionality. A top-mounted strobe light is also used to locate the drone in low light or foggy circumstances. This paves the way for a long-range lake pool cleanup drone that can be controlled remotely.
04. Wind & Solar Power Laptop Mobile Charging Station
The energy created by both power generators in the system is stored in a battery. This battery source is now available for use thanks to the inverter. There are two sorts of outputs provided by the system. 4 USB ports for 4 x 5V DC mobile charging ports and 1 × 230V AC port for charging laptops alone.
The system has four wheels for easy mobility, making it very portable. It can be used close to bus stops, gardens, historical monuments, zoos, college campuses, corporate parks, footpaths, open parking, and other locations. The system also has an anti-theft feature to keep thieves from taking it or inflicting harm to it. It identifies if it is being moved by an unauthorized person or if it is attempting to be injured using impact sensors.
In such circumstances, the device immediately emits a loud alarm sound to inform local individuals and authorities. As a result, the system delivers effective outdoor mobile and laptop charging with a variety of functions.
05. Power Generation using Speed Breakers
Every time a vehicle goes over a speed breaker, a significant quantity of energy is wasted due to friction. The weight and speed of the vehicle may be utilized to create energy. As a result, a smart speed breaker that also generates power is recommended.
The rack and pinion system converts the speed breaker’s reciprocating action into rotational motion. We create a smart speed breaker that can pass vehicles arriving from both directions while also producing electricity. Mechanical assembly with
metal sheets and links that push down with a spring arrangement is used in the system. The method employs a speed breaker press, which is then used in conjunction with a rack and pinion arrangement to press down and operate the generator motor, creating electricity. The speed breaker is returned to its original position using the spring mechanism. It transfers rotary motion to linear motion, but we can also use it to turn linear motion into rotary motion. This technique is both cost-effective and simple to set up. We can produce high-power electricity from road traffic if we make the necessary preparations.
To summarise, reducing emissions and working toward a decarbonized energy system are two critical goals for environmental protection. Combining the most competitive renewable energies, such as wind, solar, and hydraulic energy, in hybrid installations that can be supplemented by storage systems, is proven to be an effective instrument for supplying clean and efficient energy to achieve this.
This was about “Projects On Hybrid Power Systems“. I hope this article may help you all a lot. Thank you for reading.
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