"LabVIEW" Essays and Research Papers

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    Design Goals -To design a robot to assist in a variety of search and rescue missions during disaster situations earthquake -Robot must be controlled remotely and should be able to enter fallen structure and navigate around obstacles via commands sent from a remotely located operator. -Robot should be able to locate survivors and deliver a small package such as a communication device or location marker to help rescuers determine victim’s location and condition. Solutions -Robot tethered through

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    ‘Aircraft System Engineering’‚ ‘Aircraft Surveillance Systems’‚ ‘Aircraft Propulsion and Utility Systems’‚ ‘Fault Tolerant Systems’‚ ‘Flight Instrumentation and Flight Management System’ etc. We have lab sessions where I got opportunity to learn ‘LabVIEW’‚ ‘DOORS’ and ‘Rational ROSE’

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    The experimentation was carried out by varying the volumetric flow rate of fuel and air. Flame image was captured by Prosilica camera and subsequently flame radiation intensity was detected by Photomultiplier tube through data accusation system LabView

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    www.fibre2fashion.com  Yarn Tension Control during Knitting By: Biswajit Saha Introduction Control of yarn tension is one of the most important factors in knitting industry. Yarninput tension (YIT) to the knitting zone must be maintained between limits in order toproduce knitted fabric without faults. For preventing faults‚ however‚ YIT is not the onlyparameter to control and monitor. The knitting elements and the knitting machine itselfshould be monitored to improve productivity and quality

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    Pick and Drop Robo

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    PSG COLLEGE OF TECHNOLOGY [pic] SIMULATION OF PICK AND DROP ROBOT USING LABVIEW MINI PROJECT REPORT Aim To design a Pick and Drop robot to pick the required object with defect and drop it in the required destination. Facilities Required 1. Software : Lab View 9.0 2. COMP Port 3. PIC16F877A MICROCONTROLLER 4. MAX32 IC 5. Resistors and Capacitors Theory In this simulation in lab view‚ the objects will move in the conveyor belt which will be monitored

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    FDMA article

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    DAQSourceCode‚ DAQ-STC‚ DAQValue‚ DAQWare‚ EagleWare‚ FieldPoint‚ Flex ADC‚ FlexFrame‚ FlexMotion‚ HiQ‚ HiQ-Script‚ HotPnP‚ HS488‚ IMAQ‚ InsideVIEW‚ Instrumentation Studio‚ Instrumentation Newsletter‚ InstrumentationWeb‚ Instrupedia‚ IVI‚ LabSuite‚ LabVIEW‚ Lookout‚ LabWindows/CVI‚ MANTIS‚ Measure‚ Measurement Ready logo‚ Measurement Suite‚ Micro GPIB‚ MIGA‚ MITE‚ National Instruments‚ National Instruments logo‚ natinst.com‚ ni.com‚ NAT4882‚ NAT7210‚ NAT9914‚ NI-488‚ NI-488M‚ NI-488.2‚ NI-488.2M‚

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    replaced by the “alien” moisture reading. The packet was then sent to the radio and transmitted over the network until it reached the base station. The base station was connected to a laptop through a serial port. The data is then collected using a LabVIEW graphical user interface (GUI) developed here‚the data from the serial port is collected deciphered and shown as the output or displayed by the GUI. If an error is detected‚ it was display the error and sometimes in few cases it saves the contents

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    My decision to pursue a master’s degree in the field of Industrial Engineering comes from my passion to find solution‚ interest in analyzing how things work and ability to work enthusiastically in team which has been developed through my B. Tech courses and its range of projects and also from my work experience as a Mechanical Engineer in Mechanical Engineering and Industry department at Dar-Al-Handasah ‚ one of the leading international consultancies specializing in engineering‚ architecture‚ planning

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    miss

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    some properties of 3-phase power systems when supplying STAR and DELTA loads‚ and the supply of power via transmission lines. Experiments There is an icon on the desktop “3-Phase.vi”‚ please ‘Double click’ on the icon. You should now see the LABVIEW screen image as shown below. As can be seen‚ the left hand side of the screen illustrates oscilloscope outputs and questions are asked on the right hand side of the screen. To start‚ first run the program by clicking on the ‘Run’ icon on the

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    shield is an active muon-tracking device‚ which is a restored remnant of the hall’s previous tenants: the Soudan 1 and 2 proton decay searches. Throughout the last decade‚ the shield has been refurbished and provided with new custom electronics and a LabView-based data-acquisition system. The shield is constructed from panels of gas proportional tubes‚ filled with 90% Ar and 10% CO2‚ which nearly completely cover the ceiling and walls of the counting facility. Each panel is extruded aluminum formed into

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