Interscience Research Network
Not a member yet
2523 research outputs found
Sort by
Design Optimization of Formula One Student Sports Car Upright Using Hypermesh
This project mainly aims to develop a light weight upright to the formula one student sports car, where it can withstand the various loads that are coming on the uprights, and also to propose a material for the upright to decrease the weight of the upright, and also to propose a manufacturing procedure for the selected material, validation is carried out on the upright for the selected material on Hypermesh to check whether the selected design can withstand the loads coming on to it by applying various load paths in Hypermesh and manufacturing the design by using the RAPID PROTOTYPING techniqu
PERFORMANCE EVALUTION OF CNTFET-BASED SRAM CELL DESIGN
Carbon Nanotube Field-Effect Transistor (CNTFET) technology with their excellent current capabilities, ballistic transport operation and superior thermal conductivities has proved to be a very promising and superior alternative to the conventional CMOS technology. A detailed analysis and simulation based assessment of circuit performance of this technology is presented here. As figures of merit speed, power consumption and stability are considered to evaluate the performance parameters of CNTFET-Based SRAM Cells with different chiral vectors for the optimum performance. A novel performance metric, presented as “SPR,” is used to assess these figures of merit. This comprehensive metric includes a metric of low power delay product (PDP) for write operation and high stability in the operation of a memory cell. It is shown that an 8T SRAM cell provides 73% higher SPR than Dual-Chiral based 6T SRAM cell for CNT technology and 124% higher SPR than its CMOS counterpart, thus attaining superior performance. The CNTFET-based 8T SRAM cell demonstrates that it provides high stability, low delay and low power, which is better than CNTFET-based 6T SRAM cell as well as CMOS SRAM cell
GUIDED PUMP-AS-TURBINE: DESIGN AND DEVELOPMENT FOR PICO-LEVEL ENERGY GENERATION
The Project- “Guided Pump as Turbine” aims to further research in the field of Pico Hydel Projects. This has been accomplished by building a prototype “Pump as Turbine” apparatus consisting of a centrifugal pump running as turbine to generate power. Along with these apparatus the centrifugal pump is converted to guided-pump where stator is appropriately introduced into the system. The purpose of this is to enhance the efficiency of the system. The project holds tremendous benefit by way of providing power/electricity to small communities dwelling in regions having potential for pico-scale hydel power exploitation. The development of the prototype is accomplished under a controlled environment. Head availability and the flow rate are the two measures against which it is optimized. Furthermore, the effect of introducing guide vanes, hitherto unknown, was investigated and analyzed. Analysis was done first on power and efficiency of produced by technology and then on a dimensionless basis to facilitate scaling up/down of PAT capacity for further research. The project has accomplished a detailed analysis of the characteristics of a pump running as a turbine, over a variety of conditions, with and without guide vanes
NUMERICAL TRANSIENT HEAT TRANSFER ANALYSIS OF REACTOR FOR MAGNESIUM BASED ALLOY FOR HYDROGEN STORAGE APPLICATION
Metal hydrides are potential hydrogen storage media. They release hydrogen at moderate temperatures and pressures. Magnesium hydride is a promising approach for stationary power system application, due to high hydrogen storage capacity by weight. Magnesium hydride based reactor design is more complex due to high thermal energy release and absorption during hydriding reaction and dehydriding reaction, respectively. In this study, results of a numerical modeling study are presented for a 1.5 kg Magnesium alloy based hydriding reactor. Temperature profile in the reactor is computed by FEM analysis using ANSYS software for hydriding and dehydriding reaction. FEM analysis indicates that the reactor temperature is raised from 200 C to 422 ºC in 20 minutes during the hydriding process. Hence, a “cooling system” is required for maintaining temperature during the hydriding process. During the dehydriding process, maximum temperature drop occurs from 350 C to 189 ºC in 20 minutes. Therefore, an external heat source of 2 kW is required for maintaining the temperature during dehydriding. Details are presented
DESIGN OF AN ERROR DETECTION AND DATA RECOVERY ARCHITECTURE FOR MOTION ESTIMATION TESTING APPLICATIONS
Motion estimation (ME) in a video coding system is the critical role, so testing such a module is of priority concern. While focusing on the testing of ME in a video coding system, this work presents an error detection and data recovery (EDDR) design based on residue -and- quotient (RQ) code. An error in processing elements (PEs) can be detected and recovered effectively by using the proposed EDDR design. Importantly, the proposed EDDR design performs satisfactorily in terms of throughput and reliability for motion estimation (ME) testing applications
STUDIES ON GE-ON-INSULATOR MOSFETS USING METAL SOURCE/DRAIN CONTACTS FOR ANALOG/ MIXED SIGNAL APPLICATIONS
In this paper, we report the effect of source/drain metal contacts on the electrical behavior of GeOI MOSFETs. The band diagram and current-voltage characteristics of the MOSFET are obtained using SILVACOATLAS, a 2D numerical device simulator, for various metals having a range of work function values. Our investigation reveals that the device using metals having a work function value more than 5 eV exhibits enhanced ON current, transconductance, intrinsic voltage gain, and also reduced subthreshold slope and OFF current
Network Reconfiguration in Distribution System by Software Simulation for Loss Reduction
The main aim of the distribution companies is to reduce their operating costs to get ahead of competition. One of the most popular approach is to increase the degree of reliability of distribution system. The management of network defeats (e.g. earth fault, short circuits) offers a lot of feasibilities for automation. The main jobs are fault localization, fault detachment and system refurbishing. The network manipulator needs excellent knowledge about the controlled network area to accomplish these tasks efficiently. In this paper a fault management system is described which magnifies the reliability of the system with the help of network reconfiguration. The fault localization, segregation and refurbishing allowance to remedy the operator from these demanding tasks during network defeats. This paper present a CYMDIST based analysis for the loss minimization problem. This method is tested in 11 KV distribution systems for loss minimization
WEB SCALE INFORMATION EXTRACTION USING WRAPPER INDUCTION APPROACH
Information extraction from unstructured, ungrammatical data such as classified listings is difficult because traditional structural and grammatical extraction methods do not apply. The proposed architecture extracts unstructured and un-grammatical data using wrapper induction and show the result in structured format. The source of data will be collected from various post website. The obtained post data pages are processed by page parsing, cleansing and data extraction to obtain new reference sets. Reference sets are used for mapping the user search query, which improvised the scale of search on unstructured and ungrammatical post data. We validate our approach with experimental results
COMPLEMENTARY USE OF DESIGN METHODOLOGIES IN EDUCATIONAL ENGINEERING DESIGN PROJECTS: A CASE STUDY
The challenge of a nowadays well-grounded engineering education is preparing industry ready graduates, that is, to provide students with the skills to master the complexity of products in terms of innovation, invention and problem solving combined with soft skills abilities. This addresses particularly the engineering design education, which in general should be mainly based on practical studies represented by engineering design projects. In order to supply industry with work-ready practitioners, the effectiveness and efficacy of design education respectively design projects is a crucial aspect. This article presents some findings of an efficient use of design methodologies and techniques when carrying through design projects in the faculty of Mechanical Engineering and Mechatronics at the University of Applied Sciences, Deggendorf, Germany. Engineering design projects are compulsory for students within their curriculum. The projects aim at fostering and stimulating students creativity by means of a complementary use of design methodologies and techniques. By taking advantage of this approach the systematic generation of ideas in the course of a design project is presented, which eventually led to the development of an innovative product
THE AWARENESS NETWORK OF MONITORING AND DISPLAYING ACTIONS OF SOCIAL NETWORKS
The concept of awareness plays a pivotal role in research in Computer-Supported Cooperative Work. Recently, Software Engineering researchers interested in the collaborative nature of software development have explored the implications of this concept in the design of software development tools. A critical aspect of awareness is the associated coordinative work practices of displaying and monitoring actions. This aspect concerns how colleagues monitor one another’s actions to understand how these actions impact their own work and how they display their actions in such a way that others can easily monitor them while doing their own work. we focus on an additional aspect of awareness: the identification of the social actors who should be monitored and the actors to whom their actions should be displayed. We address this aspect by presenting software developers’ work practices based on ethnographic data from three different software development teams. In addition, we illustrate how these work practices are influenced by different factors, including the organizational setting, the age of the project, and the software architecture. We discuss how our results are relevant for both CSCW and Software Engineering researchers