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Drones for detecting explosive landmine

This paper presents the current technology in detecting the underground mines. It completely explains the specifications and requirements of the drones. This paper is included with basics design of drone designed in CATIA V5. The second part completely describes the Mine detection system and different techniques used in the detection of landmines and mainly the ground penetration radar and the images sourcing of output of GPR. We will be seeing the legacy of landmines and the damages caused by them and the indeed of mine detection system with the high factor of safety in this century. This paper also explains the automation system to drive the drones and the steps involved in it. It also demonstrates the idea of using the solar power instead of battery power. It illustrates the combination of the different design of drones that can be applied to different mine detection systems. The data used are practically analyzed by different drone’s testers of society. The final destination of the paper leads to complete construction of the drones with mine detection system using the automation and solar energy.

Published by: N Ramu, Prem Narayan P

Author: N Ramu

Paper ID: V4I3-1848

Paper Status: published

Published: June 13, 2018

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Research Paper

Evaluation parameters of the infrastructure resources needed to integrate the parallel computing algorithm and the distributed file system

Technology and the growing population in the digital world have led to a drastic explosion of data scattered across various digital components and network nodes. By other On the other hand, various technologies are being improved and innovated to maintain the processing and conversion of these raw data into useful information in various fields with proliferating data. Since the data and the application to process this data are quantitatively increasing, it is also necessary to change or to update the infrastructure to comply with the current status of the requirements. The question that arises here is how improved resources will be beneficial and in what way affect the performance of the application. This document focuses on understanding how infrastructure resources will have an impact Extreme to the final performance of the distributed computing platform and what are the parameters taken into account with high priority to deal with the performance problems in a distributed environment.

Published by: Amit Kumar Sharma, Shammi Nanda

Author: Amit Kumar Sharma

Paper ID: V4I3-1854

Paper Status: published

Published: June 13, 2018

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Review Paper

IoT cable fault detection

In urban areas, the electrical cable runs underground instead of overhead lines, which occupies less space and is considered as the effective and efficient way of transmission. But the problem arises when any fault occurs in the underground cable. The proposed system conclude that the underground cable fault location model by using Sensor (LM317) and registers to find the resistance of the wire. The purpose of the project is to identify the cable fault distance from the initial position in terms of the kilometer. By using a simple method of Ohm's law, When a fault occurs the voltage loss is increasing with the decrease in the resistance value of the wire, due to this current is varies. The data collected is stored on the main server and can retrieve the information whenever we want. We then send a message to the respective person about the location of the fault.

Published by: Divya Kulkarni, Akshata Saradgi

Author: Divya Kulkarni

Paper ID: V4I3-1860

Paper Status: published

Published: June 13, 2018

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Review Paper

A novel approach to design smart home architecture in energy efficient way based on IoT

PIR motion sensor and camera is used in this project. Whenever an intruder enters the house the PIR motion sensor detects the motion and which turns on the camera and thus image is captured here the camera is not 24*7 on it turns on only when motion is detected thus by saving the battery of camera also at one time only one sensor is activated not all sensor which also increases the battery life of sensors

Published by: Maithily Puranik, Rugveda Deshpande, Tejaswini Deshmukh

Author: Maithily Puranik

Paper ID: V4I3-1744

Paper Status: published

Published: June 13, 2018

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Review Paper

Low power and area efficient shift registers using pulsed latches

The power consumption and area reduction are the key challenges in the Very Large Scale Integration (VLSI) circuit design. The shift register is the main building block in the VLSI circuits. The shift register is composed of clock interconnection network and timing elements such as flip-flops and latches This clock entomb association system and timing component is the primary power and region expending component in the move enlist. This clock interconnection network and timing element is the main power and area consuming element in the shift register. This project introduces a low power and area efficient shift register using pulsed latch and pulse generation circuit. The area and power consumption will be reduced to 50%in the shift register if the Flip-Flop is replaced with the pulsed latch. This technique explains the timing problem between pulsed latches through the use of multiple non-overlap delayed pulsed clock signals as an alternative of the conventional single pulsed clock signal.

Published by: Ippe Nikhila, K. Divya, P. Raghava Reddy

Author: Ippe Nikhila

Paper ID: V4I3-1839

Paper Status: published

Published: June 12, 2018

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Research Paper

Seismic analysis of five and eight storeys concrete and steel building frame at different zones of earthquake

Earthquake is the major impact on everyday life. It causes huge damages to structure especially building a structure. In this circumferential, we need accuracy in the design so the assessment of the design and execution will be correct. The main focus in this paper to check the adequacy of the material used in the building and conclude that either steel and concrete which one is more suitable for two different sized frames five storeys and eight storeys frame structure. The amount of deformations in the frame has been calculated and compared with the deformations of different zones. The three different zones are taken here for the comparison in deformation (Zone III, IV, and V). Five and eight storeys framed structure were subjected to seismic analysis of different magnitude. The seismic analysis was performed in ANSYS using time acceleration histogram for different zones. It was observed that structures performed well in areas which were less prone to earthquakes. Stability of five framed structure was more than that of eight storeys framed structure.

Published by: Pradyumna Dashora, Basant Kr. Bansal, Rupal Sankhla

Author: Pradyumna Dashora

Paper ID: V4I3-1832

Paper Status: published

Published: June 12, 2018

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