Synchronization Of Compass Module With Pressure And Temperature Sensor System

Along with the world moving forward, part of the job requires us to control it from far away. As a simple example, a surgeon in the West can control and manage the actual surgery takes place in the operating room in the Eastern world. The same concept has been applied to this project. In general...

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Bibliographic Details
Main Author: Mohamad Haniff , Harun
Format: Monograph
Published: UTeM 2010
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Online Access:http://library.utem.edu.my:8000/elmu/index.jsp?module=webopac-d&action=fullDisplayRetriever.jsp&szMaterialNo=0000063952
http://library.utem.edu.my:8000/elmu/index.jsp?module=webopac-d&action=fullDisplayRetriever.jsp&szMaterialNo=0000063952
http://eprints.utem.edu.my/4731/4/Synchronization_Of_Compass_Module_With_Pressure_And_Temperature_Sensor_System_Mohamad_Haniff_Harun_TK2537_M42_2010001_24.pdf
http://eprints.utem.edu.my/4731/5/Synchronization_Of_Compass_Module_With_Pressure_And_Temperature_Sensor_System_Mohamad_Haniff_Harun_TK2537_M42_2010001_FULL_TEXT.pdf
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Summary:Along with the world moving forward, part of the job requires us to control it from far away. As a simple example, a surgeon in the West can control and manage the actual surgery takes place in the operating room in the Eastern world. The same concept has been applied to this project. In general this project is the result of a combination of existing technology to produce a complete system that aims to identify the position of the Autonomous Underwater Vehicle, better known by AUV based on the degree of the AUV. This can be done with the help of compass module that can find and order the AUV is moving at a fixed angle. This created a system that aims to obtain data on pressure and temperature in the water around the AUV. Not only that, the project also aims to prove that the relationship between pressure and depth of the water and the relationship between pressure and temperature. All data gathered is capable of helping in the preparation of an AUV that can accommodate high pressure according to the depth to destination.