SOIL MOISTURE BASED AUTO IRRIGATION WITH MANUAL CONTROL BY GSM

Core Electronics Projects

Showing 97–112 of 143 results

  • 4.00 out of 5

    SOIL MOISTURE BASED AUTO IRRIGATION WITH MANUAL CONTROL BY GSM

    10,000.00 6,500.00
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  • 4.80 out of 5

    Soil Nutrient Monitoring Over IOT

    19,400.00 18,000.00

    Agriculture, the backbone of our country nowadays is facing a number of challenges. Our system is designed to provide a solution that is one step forward toward agricultural growth. Using IoT, an attempt is made to automate irrigation. Farmers face some difficulties in switching on/off the motor. Any delay in watering may reduce production. In this context, we propose an “IoT Based Soil Analysis and Irrigation System” to help the farmer in reducing human effort and increasing the yield. The farmer can control the power of the motor even at distance.

    The proposed system is used to determine the nutrient quantity of soil. As we know all the nutrients are present in the soil but what amount of nutrients are available in that particular field we can’ figure out. For this project, we can use the test bench to recognize the type of soil that is good to grow the crop. On the basis of the study, it is concluded that there are 3 types of soil available and they are all uveal soil, red soil, and black soil.Everysoilhasdifferentmicronutrient.Buttomeasuretheamountofnutrientavailableinthesoilwearegoingtodesigndeviceorinstrumentwhichgivesusproperreading of micronutrient. Followingarethemainobjectives oftheproposedsystem

    • Design and develop an Arduino-based sensor interfacing for reading soil parameters.
    • Buildainterfacebetween LCDandmicrocontrollerto showthesensorreadings
    • Convertingthesensor value usingADCport of Arduino.
    • Establishing the cloud server connectivity in order to store all soil test records over the server with time and GPS location stamps.
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  • 4.75 out of 5

    SOLAR BASED UPS

    9,000.00 7,600.00

    Here we propose a solar based ups project that uses solar energy to charge battery and then the DC battery is used to power an AC load using inverter.

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  • 4.75 out of 5

    SOLAR CHARGE CONTROLLER

    12,900.00 8,400.00

    In this project we are using arduino uno which is the main part of project, variable battery supply, solar panel, adapter and led panel as a load. Here variable battery source is used for demonstration purpose through which we can vary the voltage with the help of pot.

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  • 4.67 out of 5

    SOLAR GRASS CUTTER USING MICRO-CONTROLLER

    13,400.00 12,400.00

    Now a days the electric power and fuel are the most used energy sources but they are not eco-friendly and these also need manpower .so we have thought of doing a project on the grass-cutting vehicle which uses Eco-friendly resources like solar energy and also to decrease the human interaction. This project aims of designing an Automated Grass Cutter using solar energy[1].

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  • 4.33 out of 5

    SOLAR GRASS CUTTER WITH OBSTACLE AVOIDANCE

    13,700.00 12,700.00

    These days we are facing the problems like pollution, power cut problem, etc. In order to overcome these problems, we have thought about the device, which can be performing its functions without causing any of these problems. So we have thought of doing the project on cutting grass, which uses renewable sources of energy for its operation like solar energy.

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  • 4.56 out of 5

    SOLAR GRASS CUTTER WITH OBSTACLE AVOIDANCE WITH SPRAY

    14,600.00 13,600.00

    Agriculture is demographically the broadest economic sector and plays a significant role in the overall economy of India. For the growth of Indian economy, mechanization is necessary. The main purpose of mechanization in agriculture is to improve the overall productivity and production. The system control is done by the Arduino UNO R3. Automation is achieved by using sensors and Arduino UNO R3.

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  • 4.42 out of 5

    SOLAR GRASS CUTTER WITH SPRAY

    14,000.00 13,000.00

    We present an Arduino-based automatic robotic system that is used for cutting grass or
    lawns, mostly healthy grass which needs to be cut neatly like in a public park or a private
    garden. The purpose of this proposed project is to design a programmable automatic pattern
    design grass cutting robot with solar power which no longer requires time-consuming manual
    grass-cutting and that can be operated wirelessly using an Android Smartphone via
    Bluetooth from a safe distance which is capable of cutting the grass in indeed required shapes
    and patterns; the cutting blade can also be adjusted to maintain the different lengths of the
    grass. The main focus was to design a prototype that can work with a little or no Physical
    user interaction.

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  • 4.60 out of 5

    SOLAR PANEL CLEANING MECHANISM WITH WATER SUPPLY

    16,200.00 14,200.00
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  • 4.67 out of 5

    Solar Power Vaccine Storage Refrigerator

    13,000.00 11,800.00

    Large areas of many developing countries have no grid electricity. This is a serious challenge that threatens the continuity of the vaccine cold chain. The main alternatives to electrically powered refrigerators available for many years—kerosene- and gas-driven refrigerators—are plagued by problems with gas supply interruptions, low efficiency, poor temperature control, and frequent maintenance needs. There are currently no kerosene- or gas-driven refrigerators that qualify under the minimum standards established by the World Health Organization (WHO) Performance, Quality, and Safety (PQS) system.

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  • 4.31 out of 5

    SPEED CHECKER TO DETECT RASH DRIVING ON HIGHWAYS

    7,500.00 5,000.00

    The aim of this project is to develop a device to detect rash driving on highways and to alert the traffic authorities in case of any speed violation. Accidents due to rash driving on highways are on the rise and people are losing their lives because of others mistakes. In the present system, to detect rash driving the police has to use a handheld radar gun and aim at the vehicle to record its speed. If the speed of the vehicle exceeds the speed limit, nearest police station is informed to stop the speeding vehicle. This is an ineffective process as after detecting one has to inform the same and a lot of time is wasted.

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  • 4.25 out of 5

    SPEED CONTROL OF FAN USING RF REMOTE

    6,600.00 5,600.00

    The main intention of this project is to develop an fan motor speed control system which is helpful to control the speed of fan motor using TRIAC and RF communication.

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  • 4.33 out of 5

    Speed Control Of Induction Motor Using Firing Angle Control

    7,500.00 5,900.00

    The main object of this project is to develop speed control of two induction motor using firing angle control system which is helpful to control the speed of an induction motor using microcontroller

    In this project, the zero-crossing point of the voltage waveform is detected by a comparator whose output is then fed to the microcontroller. Then, it provides the required delayed triggering pulses to a pair of TRIAC through an opto-isolator connected to this circuit. Finally, power is applied to the load through the TRIAC. Four push-button switches are interfaced to the controller for increasing and decreasing the AC power to the load. In this project, a lamp is used in the place of induction motor demonstration purposes. The motor speed variation depends on the power reduction.

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  • 4.67 out of 5

    SPEED CONTROL OF TWO INDUCTION MOTOR USING ACPWM

    10,500.00 8,600.00

    This project attempts a new speed control technique for the single-phase a.c.   induction motor. It presents a design of a low-cost; high-efficiency drive capable of supplying a single-phase a.c.   induction motor with a PWM modulated sinusoidal voltage. The circuit operation is controlled by an 8051 family microcontroller. The device is aimed at substituting the commonly used triac phase angle control drives. The circuit is capable of supplying a single-phase a.c. induction motor (or general a.c. inductive/resistive load) with varying a.c. voltage. The same as in triac control, the voltage applied to the load can be varied from zero to maximum value. On the other hand, it uses a pulse width modulation technique (PWM), and when compared with the phase angle control used for triacs, produces much lower high order harmonics.

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  • 5.00 out of 5

    Stepper Motor Speed Control Using GSM & Arduino

    9,500.00 6,900.00

    Our proposed project allows user to control the speed and direction of a stepper motor remotely from anywhere. The system works by receiving stepper motor control instructions from user through an SMS message.

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  • 4.57 out of 5

    SUBSTATION MONITORING OVER IOT

    10,500.00 8,800.00

    The purpose of this project is to acquire the remote electrical parameters like voltage, current and frequency and send these real time values over network along with temperature at power station. This project is also designed to protect the electrical circuitry by operating a relay.

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