Abstract: —This paper intends to develop a three phase induction motor controller for a solar powered water pump. In many areas, disrupted and inadequate power supply can cause significant damage in household or industrial activities which require water supply. Agricultural production is also hindered as most of the irrigation process is solely based on electricity.So far, DC motors have been used for solar application in Bangladesh due to the simplicity of their speed and torque control.But, DC motors arevery expensive. Additionally, regular maintenance of the commutator and brushes is necessary. A three phase induction motor can perform robustly in this field with the help of an inverter. The paper focuses on the developments of a threephase inverter to drive aninduction motor through optimal control and design techniques, which can replace the DC motor. A three phase induction motor was successfully run with a prototype setup, established with 320Watt solar panel and a three phase inverter

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Abstract: The Electrical power lines is Distributed in the form of Network for proper power distribution. There will be Feeders in network between the power station and area where the power is transferring. If there is break down due to any problem in the power transmission line between the area and base station then there will be huge loss if it is Industrial area. So to avoid this loss in the industrial areas we should maintain the power all the time without any break down in power. And in present days in the main line we cannot detect power theft done by any intruder by which KEB is meeting with Huge loss. To solve this above problem we are going to develop this project. To main aims of this Project is to “ Make Proper Power Distribution in the Electric Power lines without any long Delay in case of any problems by giving information to line man in time using GSM and at the same time System will give Test charge in the fault line and in case of power failure it automatically switche

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Abstract: The Existing domestic Energy meter reading systems universally exist many problems, such as difficulty in construction, too narrow bandwidth, too low rate, poor real time, not two way communication quickly etc. To solve above problems, this paper uses the wireless technology for Automatic Meter Reading system. A proposed method provides the communication between the Electricity Board section and the consumer section using GSM for transmitting the customer’s electricity consumption and bill information that is calculated using Arduino.The information regarding the bill amount and payment are communicated to the consumer via Global System for Mobile communication.CONTACT FOR FINAL YEAR ENGINEERING PROJECT 9972364704

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Abstract: The Existing domestic Energy meter reading systems universally exist many problems, such as difficulty in construction, too narrow bandwidth, too low rate, poor real time, not two way communication quickly etc. To solve above problems, this paper uses the wireless technology for Automatic Meter Reading system. A proposed method provides the communication between the Electricity Board section and the consumer section using Internet of things (IOT) for transmitting the customer’s electricity consumption and bill information that is calculated using Arduino.The information regarding the bill amount and payment are communicated to the consumer via Global System for Mobile communication. The power and billing information is continuously transmitted by the use of internet of Things and monitored by the Electricity Board section.

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Abstract: To propose a device that can monitor all the three major aspects i.e. current, voltage and power of solar panels and to log or tabulate this values with respect to time in a excel sheet for future reference this task is performed on two solar panel simultaneously and to view the graph of the panels on Dot net application developed for this device

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Abstract: The main purpose of this project is to provide continuous power supply to a load, by selecting the supply from any of the four sources namely solar, inverter, main and generator automatically in case if one of the source is absent. The need of electricity is increasing day by day and the frequent power cuts of electricity are causing many problems in different areas like banks, colleges/schools, hospitals, houses and industries. Thus there is a requirement for an alternate arrangement of power supply. This arrangement can be designed by using microcontroller. When a source, say mains fails the supply will shift to next source generator and so on. LED can be used to show that which source is used to provide the supply. An important requirement of electric power distribution systems is the need for automatic operation. In particular, the rapid and reliable transfer of the system from one power source to another during certain system events is important to achieving the reliabi

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Abstract: The Existing domestic Energy meter reading systems universally exist many problems, such as difficulty in construction, too narrow bandwidth, too low rate, poor real time, not two way communication quickly etc. To solve above problems, this paper uses the wireless technology for Automatic Meter Reading system. A proposed method provides the communication between the Electricity Board section and the consumer section using GSM for transmitting the customer’s electricity consumption and bill information that is calculated using Arduino.The information regarding the bill amount and payment are communicated to the consumer via Global System for Mobile communication.

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Abstract: Nowadays Internet of Things (IOT) and Remote sensing (RS) techniques are used in different area of research for monitoring, collecting and analysis data from remote locations. Due to the vast increase in global industrial output, rural to urban drift and the overutilization of land and sea resources, the non-renewable sources are getting depleted. In this paper, Our aim is to add intelligence and bidirectional communication and energy flows to today’s power grid in order to address the efficiency, stability, and flexibility issues that plague the grid.

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Abstract: Nowadays Internet of Things (IOT) and Remote sensing (RS) techniques are used in different area of research for monitoring, collecting and analysis data from remote locations. Due to the vast increase in global industrial output, rural to urban drift and the overutilization of land and sea resources, the non-renewable sources are getting depleted. In this paper, Our aim is to add intelligence and bidirectional communication and energy flows to today’s power grid in order to address the efficiency, stability, and flexibility issues that plague the grid.

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Abstract: The advent of new technology and steep fall in cost of photo voltaic (PV) systems has rendered feedin- tariff (FiT) scheme obsolete. Net energy metering (NEM) is gradually superseding the former as it promotes the growth of mini solar generations at every house. The primary objective of NEM is utilizing self produced renewable energy and to sell the excess to grid. However in spite of its numerous advantages, consumers are confused about its economic return. This paper proposes a model that will take customer’s daily load curve and estimated renewable energy generation as input and give revenue saved and payback period as output depending upon the maximum generating capacity of solar panel. The entire modeling and analysis is done in MATLAB simulink.

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Abstract: The Existing domestic Energy meter reading systems universally exist many problems, such as difficulty in construction, too narrow bandwidth, too low rate, poor real time, not two way communication quickly etc. To solve above problems, this paper uses the wireless technology for Automatic Meter Reading system. A proposed method provides the communication between the Electricity Board section and the consumer section using IOT for transmitting the customer’s electricity consumption and bill information that is calculated using Arduino.The information regarding the bill amount and payment are communicated to the consumer via Internet of things

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Abstract: With the help of this system the process of load shedding of power lines can be made automatic. The hole process is controlled by the microcontroller 89c51 and the real time clock(RTC) PCF 8563 which runs in real time. Here the user can feed the different timings (ON and OFF) for the different power lines, then according to the entered timings the micro connects and disconnects the power lines.

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Abstract: This paper presents design and development of a GSM based energy monitoring, profiling and control system using database technologies. Our system integrates digital energy meters installed at consumer unit with an electric supply company’s energy monitoring system. Single phase or three phase digital electric meter can be used with indigenously developed add on transmission module, which takes the meter reading and fees to database created for particular clients. Later utilizing the GSM network to transmit the energy usage reading using Short Message Service (SMS) back to the customer.

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Abstract: This project is done by controlling the solar panel automatically, maintains face of the solar panel towards the sun. In ordinary system, if it faces towards east then it cannot change the direction towards sun during sunset. Because of this reasons solar panel may not get sufficient sun rays to work. These problems are overcome by using this project. In this project we also build a very good micro controller based solar charger. The mechanical movement of the solar panel is controlled through the stepper motor and then the Single Power LED is derived by the battery.

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Abstract: Basic intention of developing this project is to provide a partial fulfillment of electricity to the remote place or villages where scarcity of electricity is there and load shedding is a common problem. Our main goal of this project is to charge the battery during availability of power and to use the battery back for different purpose during power failure This project is very much useful in rural electrification areas where scarcity of power is more. There are various benefits of rural electrification, such as in impoverished and undeveloped areas, small amounts of electricity can free large amounts of human time and labor.

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Abstract: The main purpose of this project is to provide continuous power supply to a load, by selecting the supply from any of the four sources namely solar, inverter, main and generator automatically in case if one of the source is absent. The need of electricity is increasing day by day and the frequent power cuts of electricity are causing many problems in different areas like banks, colleges/schools, hospitals, houses and industries. Thus there is a requirement for an alternate arrangement of power supply. This arrangement can be designed by using microcontroller. When a source, say mains fails the supply will shift to next source generator and so on. LED can be used to show that which source is used to provide the supply. An important requirement of electric power distribution systems is the need for automatic operation. In particular, the rapid and reliable transfer of the system from one power source to another during certain system events is important to achieving the reliabi

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Abstract: The main purpose of this project is to design an inverter that will enable the inversion of a DC power source, supplied by Photovoltaic (PV) Cells, to an AC power source that will be either used to supply a load or connected directly to the utility grid. The system will be controlled to operate at maximum efficiency using Maximum Power Point Tracking (MPPT) algorithm. This algorithm will be installed on a controller. The benefit of this project is to give access to an everlasting and pollution free source of energy. And give the user the option to use the system in two possible operating modes; the stand alone mode which is used to satisfy his needs, and the grid connected mode which used to sell electricity to utility when in excess; thus eliminating the need of battery storage.

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Abstract: To make a PIR Sensor based surveillance system that can monitor and store the captured images serially from the serial camera to SD card to track all the possible activities done when the motion sensor is getting detected.

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