Paper Presentation Topics

Showing posts with label Mechanical. Show all posts
Showing posts with label Mechanical. Show all posts

Energy Concept for Future Use

Saturday, February 13, 2010 · 0 comments

Abstract: It is available in the file which you can download from the link below.

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Super Capacitors

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Micro Processor

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Future Mechanics

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Robot

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Mobile Multi Robot Systems

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Self-Replicating Robots

Friday, February 12, 2010 · 0 comments

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Pressure and Level Measurement Systems

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Robotics

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SED Approach for Intelligent Monitoring of Robotic Systems

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Single Event Errors

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Driving without Wheels

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Advancement in Automobile Designing

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Intelligent Load Shedding (ILS) System For Large Industries And Application Of TCBR In Damping Power Oscillations

Thursday, November 19, 2009 · 0 comments

Abstract: This paper presents an intelligent, automated load shedding system. This paper stresses on the need to implement intelligent load shedding system as it is advantegous over other existing load shedding system which lack system operating knowledge and are still best-guess methods which typically result an excessive or insufficient load shedding.

The architecture of Intelligent Load Shedding(ILS) system is explained along with a case study. This paper also suggests the use of Thyristor Controlled Breaking Resistor(TCBR) along with Fault Current Limiter(FCL) to enhance transient stability following a major disturbance in power system, the FCL operates for limiting of the fault current, enhancement of the transient stability and suppression of the turbine shaft torsional oscillation and then the TCBR operates with the objectives of fast control of generator disturbances. The effectiveness of both devices has been proved by simulations results.

Courtesy: N.Santhanam, Adi Parasakthi Engineering College (APEC), Melmaruvathur, Tamilnadu

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Fuzzy Controlled Anti-Lock Braking System

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Abstract: This thesis describes an intelligent approach to control an Antilock Braking System (ABS) employing a fuzzy controller. Stopping a car in a hurry on a slippery road can be very challenging. Anti-lock braking systems (ABS) take a lot of the challenge out of this sometimes nerve-wracking event. In fact, on slippery surfaces, even professional drivers can't stop as quickly without ABS as an average driver can with ABS. Anti-lock Brake improves the controllability of vehicles in compare with brake systems lacking ABS. Fuzzy is a multi-valued logic developed to deal with imprecise or vague data. Classical logic holds that everything can be expressed in binary terms: 0 or 1; in terms of Boolean algebra, everything is in one set or another but not in both. Fuzzy logic allows for partial membership in a set, values between 0 and 1. When the approximate reasoning of fuzzy logic is used with an expert system, logical inferences can be drawn from imprecise relationships.

Fuzzy anti-lock Braking systems were developed to reduce skidding and maintain steering control when brakes are used in an emergency situation. Fuzzy controllers are potential candidates for the control of non-linear, time variant and complicated systems. There are many control algorithms for ABS systems and they are partially responsible for their performance. Here, in this paper we have discussed how Anti-Lock Braking system is controlled using Fuzzy Logic.


Courtesy: N.Santhanam, Adi Parasakthi Engineering College (APEC), Melmaruvathur, Tamilnadu

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Micromachines

Tuesday, November 10, 2009 · 0 comments

Abstract:This paper presents the brief introduction of MEMS technology as well as its application area. Micromachined Electro-Mechanical Systems (MEMS), also called Microfabricated Systems (MS), have evoked great interest in the cientific and engineering communities. This is primarily due to several substantive advantages that MEMS offer: orders of magnitude smaller size, better performance than other solutions, possibilities for batch fabrication and cost-effective integration with electronics, etc. It is available in the file which you can download from the link below.

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MEMS In Surgery

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Abstract:MEMS the acronym of Micro Electro Mechanical Sensors. These are the devices which use Micro Fabrication Methods to develop moving parts linked to electrical components for detection and actuation It is available in the file which you can download from the link below.

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MEMS

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Abstract:
Continuous growth in demand for optical network capacity and the sudden maturation of WDM(wave length division multiplexing) technologies have fueled the development of optical network systems that transport tens to hundreds of wavelengths per fiber, with each wavelength modulated at 10 Gb/s or more. Micro-electromechanical systems devices are recognized to be the enabling technologies to build the next-generation cost-effective and reliable high-capacity optical cross connect.
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MEMS & Nanotechnology

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Abstract:MEMS is an enabling technology allowing the development of smart products, augmenting the computational ability of microelectronics with the perception and control capabilities of microsensors and microactuators and expanding the space of possible designs and applications. In this paper we have discussed some of the fabrication techniques and packaging. Some of the obstacles preventing its wider adoption are: Limited Options, Fabrication and Packaging. The MEMS and Nanotechnology Exchange provides services that can help with some of these problems It is available in the file which you can download from the link below.

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MEMS In Nanotechnology

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Abstract:MEMS is an enabling technology allowing the development of smart products, augmenting the computational ability of microelectronics with the perception and control capabilities of microsensors and microactuators and expanding the space of possible designs and applications. It is available in the file which you can download from the link below.

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