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PC Based Automated Control System for Jordan Northern Grain Silo

PC Based Automated Control System for Jordan Northern Grain Silo

This paper presents a design framework of a PC-based automated control system for Jordan northern grain silo. The system handles direct controls through the PLC and combines operator interface, PLC programming and mo- nitoring functions into a Control Server. Different PC ter- minals access the server through a TCP/IP Ethernet net- work. A software package is developed. It runs a small- scale grain-silo on a basis of PLC. In the second phase of the project, remote-interfacing tools will be developed to access the CS using Java applets or simply the Internet browser plug-ins. In addition, it is intended to develop a grain-silo prototype that connects to the CS and PLC for testing and validation purposes. A blended system of PC and PLC can apply to many industrial control systems. The benefits of such a system are tremendous. In addi- tion to multiple control operations, data filing and analy- sis, PLC programming and system monitoring and diag- nosis can be easily implemented.
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Automated Control System for Poultry Farm Based On Embedded System

Automated Control System for Poultry Farm Based On Embedded System

This project can be adapted to requests formed in the design process, updating the sensor information and reflecting the real factors of environmental poultry farming. Each node has been set to receive the environmental factors (temperature, water level and food level). If any of these observing conditions drops below the predefined threshold, the sensor node will intimate the farmer and automating heating method, filling of water and filling of food takes place. This system will be labour- saving for the farmer and report environmental changes immediately, thereby enabling the farmer to prevent adverse strictly implemented throughout the redaction method and compiled into the feasible machine language once. consequences. This is a low cost system as it reduces the cost of hiring labours. Since all the operations are automated it is a easy to use the system. It is also a flexible system as it can be integrated into small and medium sized poultry farms with minimal modifications. Currently this system also provides many options which are user friendly enabling the farmer to manage all the necessary farming factors resulting in increased number of population and food. This system has a distance coverage of 30 miles.
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PLC Based Automated Hydroponic System

PLC Based Automated Hydroponic System

In Automated hydroponic system plants are placed in a growing medium and nutrients are delivered directly to theroots on the basis of time. PLC is the main part of automated hydroponic system. Programmablelogic controller is used for the parameter control. The Real-time Clock component in PLC is use to set timer for nutrient pump. Timers are set daily. When timer is activated, Relay will be activated and nutrient pump will deliver Nutrient solution for time to time. When timer is deactivated the relay will be off and nutrient pump will stop to supply morenutrients in to water.
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Design and fabrication of a labview automated computer based fire  fighting system

Design and fabrication of a labview automated computer based fire fighting system

An automatic fire detection and notification system plays a major role in the early detection and response to fire [1]. Many people have been losing their lives and property due to fire accidents more so when fire is not detected at its early stages of development [2]. In order to address this issue, reliable and cost effective fire detection, control and notification systems are required. However installations of commercially available systems are usually costly for ordinary low income earners. Currently, fire detectors are based on components of fire produced during burning. These components include smoke, temperature, gas and flame among others [3]. Despite the high false rate of smoke detectors [4, 5], they are still the cheapest and most effective detectors for early fire [6]. Temperature sensors on the other hand are more accurate but take long time to respond to fire. Its response occurs normally after great destruction has been witnessed. Combination of both smoke and temperature sensors will thus provide a more intelligent fire alarm system [7]. With advancement of technology in 20 -21 st century different components such as sensors, mobile phones, audio alarms and firefighting equipments among others can be interfaced to the computer for automatic control [8]. Programming languages that enhance real time device control are also available. These include Labview, C, C++, C#, FORTRAN, JAVA. Labview is a graphical programming that uses graphical icons which are easily identified by quick visual inspection than text based programming language [9, 10].
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Testing information security management system tool v2.1.1.0 based on ISO 27001:2005

Testing information security management system tool v2.1.1.0 based on ISO 27001:2005

The system in question is an automated system to manage the information security in companies that information is very sensitive and to control information security as well as Risk management. Therefore, after identifying and modelling the requirements into a well structured design, some group of team members proceed with implementing into a web application form. During the period of Industrial attachment, the author is expected to meet the following objectives;

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Microcontroller Based EOG and Accelerometer Guide Wheelchair

Microcontroller Based EOG and Accelerometer Guide Wheelchair

technology and learning behind working of wheelchair, in this paper we developed an automated system to control the motor rotation of wheel chair based on EOG and hand movement for physically challenged people who cannot walk due to physiological or physical illness, injury or any other disability. The proposed system is an Electrooculography (EOG) and Accelerometer (hand movement) controlled wheel chair. It is a special kind of wheel chair, which will move in the desired direction based on the eye movement or hand movement of disable person. EOG is a new technology which senses the eye signals for eye movements using electrodes. This sense data is then given to the control unit to move the wheel chair at desired direction. Also we used accelerometer in our proposed system for capturing the hand direction. This signals may also used for controlling the wheel chair. Signals received from both the units processed simultaneously by performing operations such as amplification, noise filtering, and then it is given to micro controller which drives the motors attached with wheel chair for desired movements.
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Smart Irrigation System Using IOT and Raspberry Pi

Smart Irrigation System Using IOT and Raspberry Pi

After extensive research in the agricultural field, many researchers found that the agriculture area and its productivity are decreasing by the day. With the Use of different technology in the field of agriculture we can increase the production as well as reduce manual efforts. This paper shows the technology used in agriculture sector based on IOT and Raspberry Pi. Chandan kumar Sahu proposed a system on “A Low Cost Smart Irrigation Control System”. It includes a number of wireless sensors which are placed in different directions of the farm field. Each sensor is integrated with a wireless networking device and the data received by the “ATMEGA318” microcontroller which is on the “ARDUINO-UNO” development board. The Raspberry pi is used to send various types of data like text messages and images through internet communication to the microcontroller process [1]. Supraha Jadhv proposed, automated irrigation system using wireless sensor network and raspberry pi that control the activities of drip irrigation system efficiently [2].Sebastian Hentzelt proposed a paper on the water distribution system and gave results to decompose the original nonlinear optimal control problem (OCP) [3].Joauin Gutierrez attempted a paper that research automated irrigation system using a wireless sensor network and GPRS module instead of the Raspberry pi [4].Ms. Deweshvree Rane Proposed “Review paper based on Automatic Irrigation System Based on RF Module” it is based on the RF module, this device is used to transmit or received radio signal between two devices. It’s design is complex because of the sensitivity of radio circuits and the accuracy of the components [5]. Karan Kansara proposed “Sensor based automatic irrigation system with IoT”, this irrigation system is used a rain gun pipe, one end connected to the water pump and another to the root of plant. It doesn’t provide water as a natural rainfall like sprinkler and also it uses only soil moisture sensor [6]. G. Parameswaran proposed “Aurdino based smart irrigation system using Internet of Things”, the researcher has not used Raspberry pi instead the work is done using aurdino controller without use of soil moisture sensors [7].
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Intelligent automated system based on a fuzzy logic system for plant protection product control in orchards

Intelligent automated system based on a fuzzy logic system for plant protection product control in orchards

The intelligent automated system was implemented on a conventional sprayer and tested under laboratory conditions, during which water was used for determining the most appropriate parameters for more precise control of spraying. The intelligent modular system (see Figure 1) consists of a conventional axial sprayer, measuring components for data acquisition (leaf area density) based on ultrasonic sensors, control components for EMV triggering in pulse width modulation (hereafter, PWM mode), Matlab R2015b/Simulink software, on which a decision-making model based on a fuzzy logic algorithm is running, and a mechanical trail to simulate the passing of the sprayer over the tree canopy. An automated system was used to apply an optimal quantity of water to the tree crowns, depending on their size and leaf area density. In the following sections, the individual components
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Automated Evaluation of Access Control in the iPhone Operating System.

Automated Evaluation of Access Control in the iPhone Operating System.

In the near future, the access control mechanisms in iOS may be deployed to several other platforms, each with their own security requirements and user expectations. Several of CVEs we earned with SandScout also applied to Apple’s watchOS and tvOS. The same security patch could be used because all three platforms have similar access control systems. A proposed cross-platform development framework called Marzipan will allow iOS applications to run on macOS. In the future, I expect fully functional iOS variants to appear on more household devices (e.g., refrigerators, mirrors, bicycles, etc.). Each of these platforms could run similar versions of iOS while having unique access control requirements (e.g., a refrigerator with odor sensors or automated purchasing capabilities). Finally, Apple’s iOS based IoT hub may introduce access control features for managing IoT devices. Machine learning will provide both the means and motivation to exploit side channels and invade user privacy. As machine learning algorithms prove to be practical effective, the data to train them will become more valuable. Machine learning has already proven capable at using relatively trivial sources of side channel information on iOS to infer sensitive user actions such as app launches and location searches [Zha18]. Sensors that are now considered to have trivial security sensitivity (barometer, brightness sensor, thermometer) might someday be exploited with machine learning to infer user location, behaviors or other private information. As users purchase and use more devices or multi-user capabilities are added to mobile devices, cross device fingerprinting and multi-tenant side channels will become more desirable to attackers.
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Design of an IoT Multi device for smart homes

Design of an IoT Multi device for smart homes

concept that describes a future where every day physical objects will be connected to the Internet and be able to identify themselves to other devices. In the future, every device is more likely to be connected to the web directly while users can expect it to be responsive to their needs. In this project, we develop an IoTMulti device for controlling and sensing in smart homes using Wi-Fi enabled communication. The implementation of IoT based smart home-automated system to remotely control the home appliances uses Wi-Fi and Message Queuing Telemetry Transport (MQTT) for messaging protocol that designed for lightweight communications. A low- cost Wi-Fi module ESP8266 is used to build IoTMulti device. Users can remotely operate home appliances and monitor temperature, humidity in through Internet by using smartphones. Therefore, the concept of IoT is being used to make home smarter.
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Design of Automated PC Shutdown Control System in Coastal/LPI Radar System Based on Microcontroller ATMega8L

Design of Automated PC Shutdown Control System in Coastal/LPI Radar System Based on Microcontroller ATMega8L

One consideration during the design of long range controlled electrical system is the sudden outage of a Personal Computer (PC) caused by power failure. Frequent outage can damage the components inside the PC such that the whole system could be malfunction. This can affect the cost, time, and effort required to fix the system. Usually such system is equipped with a temporary power storage or UPS (uninterruptible power supply) with a small capacity, so the PC in the system can immediately be turned off before the UPS runs out. Therefore it is necessary to design a control system that can shutdown the PC automatically within a certain range of time after the outage. The implementation of designed system has used an ATmega8L microcontroller as a controller, an optoisolator PS2505-1 as isolator for electric components from AC signal, and Visual Basic as the programming language. The system has been tested with an input voltage of 220Vrms AC signal. The test result has shown that the PC was successfully shut down within a certain time range after the input was terminated.
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Oilfield Equipment Control Distributed Automated System

Oilfield Equipment Control Distributed Automated System

 untrained neural network with a threshold activation function is an effective classifier of states according to the existing rules, characterized by high speed due to the neural network parallel nature of data processing (determines the type of event with a high degree of probability);  the trained neural network (neural network projects) classify the state based on a priori data

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Automated College Bell System with Wireless Control

Automated College Bell System with Wireless Control

It has an easy to learn language and libraries based on C++ language and IDE environment for proper programming interface. Arduino is regarded as platform independent Hardware and can operate on Windows, Linux, and MAC operating system. The board can be powered through the USB connection or with an external power supply. It can operate on an external supply of 6-20V. But the recommended voltage range is 7-12V.

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WIRELESS MONITORING AND AUTOMATED IRRIGATION CONTROL SYSTEM

WIRELESS MONITORING AND AUTOMATED IRRIGATION CONTROL SYSTEM

The worldwide Irrigation system situation, be that as it may, is portrayed by poor execution, expanded interest for higher farming efficiency, diminished accessibility of water for agribusiness, expanding soil saltiness and conceivable impacts of an Earth-wide temperature boost and environmental change. This procedure in some cases devours more water or at times the water comes to late because of which the harvests get dried. Water unavailability can be impeding to plants before obvious withering happens. Impeded development rate, lighter weight natural product takes after slight water inadequacy. This issue can be consummately amended on the off chance that we utilize programmed microcontroller based irrigation system framework in which the irrigation system will happen just when there will be exceptional necessity of water.
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IoT Based Automated Traffic Light Control System for Emergency Vehicles using LoRa

IoT Based Automated Traffic Light Control System for Emergency Vehicles using LoRa

There is a serious issue of Emergency Vehicles being stuck at intersections due to traffic congestion or scheduled traffic signal. This may result in delay in motion or the Emergency Vehicle may remain in statutory position. Otherwise, if the emergency vehicle ever tries to override the signal, it may result in accident or traffic congestion. To overcome this problem automated traffic control system is proposed. The system is designed to find a cost efficient and accurate solution to save lives. In the system, siren of the approaching emergency vehicle is priorly sensed by using smart objects and the traffic lane in which the emergency vehicle is approaching is made free by halting the traffic in other lanes of the intersection.
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Automated and Intelligent Tunnel Traffic Control System

Automated and Intelligent Tunnel Traffic Control System

The technical description of AVR ATMEGA-16 high- performance, low-power Atmel 8-bit AVR RISC-based microcontroller combines 16KB of programmable flash memory, 1KB SRAM, 512B EEPROM, an 8-channel 10- bit A/D converter, and a JTAG interface for on-chip debugging. The device supports throughput of 16 MIPS at 16 MHz and operates between 4.5-5.5 volts. However, for VIT University’s tunnel this board is enough to control the traffic flow. But for longer and busier tunnels PLC i.e. Programmable controller should be used because it can survive extreme physical conditions. A PLC which can be called as a digital computer, is an example of a hard real time system since output results must be produced in response to input conditions within a limited time, otherwise unintended operation will result.
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A Novel Smart Home Automation System for Domestic and Commercial installation based on MATLAB

A Novel Smart Home Automation System for Domestic and Commercial installation based on MATLAB

Shepherd [3] has introduced the idea of using Bluetooth wireless technology as a cable replacement using the wireless interconnectivity which can be implemented using radio home automation system method. Sriskanthan et al. [4] explained an automated system based on Bluetooth wireless technology which allows the user to monitor and control different appliances that are connected over a Bluetooth network based on a mobile host controller. Maqsood, J. [5] implemented techniques and provided a viable solution to realize home automation system which constitutes Bluetooth control via Android app development for in-house control and GSM (Global System for Mobile Communication) technology for mobile control using Arduino. Cubukcu, A. et al [6] has implemented speech recognition-based remote control of home devices. Adriansyah, A. etal [7] designed a system able to monitor and control lights, room temperature, alarms and other household appliances.
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Nonlinear Coordinated Steering and Braking Control of Vision-Based Autonomous Vehicles in Emergency Obstacle Avoidance

Nonlinear Coordinated Steering and Braking Control of Vision-Based Autonomous Vehicles in Emergency Obstacle Avoidance

The main aim of the project is to dynamic control design for automated driving of vision-based autonomous vehicles, with a particular focus on the coordinated steering and braking control in emergency obstacle avoidance. An autonomous vehicle uses a complex multi-input and multi-output structure, which possesses the features of parameter uncertainties and strong nonlinearities, and the fixed phenomena of lateral and longitudinal dynamics are clear in a combined cornering and braking movement. The effective coordinated control system for automated driving is wished-for to deal with these coupled and nonlinear features and eliminate the disturbances. First, a vision algorithm is constructed to detect the orientation path and offer the local location information between vehicles and reference path in real time. Then, a novel coordinated steering and braking control approach is proposed based on the nonlinear back stepping control theory and the adaptive fuzzy sliding-mode control method.
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Timer Based Automated Object Dispenser System Design with Programmable Control .

Timer Based Automated Object Dispenser System Design with Programmable Control .

This system consists of both the hardware and software components. The hardware components involve designing of components based on its working principle. The software part consists of the Visual Basic program which drives the hardware components. The most challenging part of the design is to dispense the right object. The main aim of designing such a system is to load the system with tablets and to dispense the tablets according to the prescription and the schedule given by the user. This eliminates the patient‟s burden in remembering the dosage. The major difficulty was dispensing one correct tablet from the bin. An analysis was done by analyzing different dimensions of tablets. There were around 670 different tablets available in a database provided by a hospital. Designing a common mechanism that accommodates all the different variety of tablets is a challenging task. Some examples of different shapes of tablet are shown in Figure 3.1.
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The Implementation of a Control Circuit for a Microcontroller Based Automated Irrigation System

The Implementation of a Control Circuit for a Microcontroller Based Automated Irrigation System

An automated irrigation system has important advantages over the methods used by the local farmers: it ensures a more precise application and conservation of water, high crop yield as well as removal of human errors [3, 4]. The current trend in irrigation is to shift from manually operated type of irrigation to automated types [4]. Many automated types of irrigation systems that use fairly complex electronics for their control have been implemented. Many of these automated systems use sensors to monitor parameters such as soil moisture, soil temperature, soil pH, leaf temperature, relative humidity, air temperature, rainfall, vapour pressure, and sunshine hours [5]. The use of wireless sensor network technology to implement and control various types of irrigation systems have been reported [2, 5, 6, 7]. The use of wireless and internet communication systems enables real-time monitoring of irrigation systems [8, 9, 10, 11].
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