Notice Board :

Call for Paper
Vol. 11 Issue 4

Submission Start Date:
April 01, 2024

Acceptence Notification Start:
April 10, 2024

Submission End:
April 20, 2024

Final MenuScript Due:
April 28, 2024

Publication Date:
April 30, 2024
                         Notice Board: Call for PaperVol. 11 Issue 4      Submission Start Date: April 01, 2024      Acceptence Notification Start: April 10, 2024      Submission End: April 20, 2024      Final MenuScript Due: April 28, 2024      Publication Date: April 30, 2024




Volume IV Issue VI

Author Name
Surbhi Saxena, Harish Patidar
Year Of Publication
2017
Volume and Issue
Volume 4 Issue 6
Abstract
Load balancing in the cloud-computing environment has an important impact on the performance. Good load balancing makes cloud computing more efficient and improves user satisfaction. Load balancing with cloud computing provides a good efficient strategy to several inquiries residing inside cloud computing environment set. Complete balancing must acquire straight into accounts two tasks, one will be the resource provisioning as well as resource allocation along with will be task scheduling throughout distributed System. Round robin algorithm can be via far the Easiest algorithm shown to help distribute populate among nodes. Because of this reason it is frequently the first preference when implementing an easy scheduler. One of the reasons for it being so simple is that the only information required is a list of nodes.
PaperID
2017/IJTRM/6/2017/9094

Author Name
Avinash Singh Rajawat, Prof. Mr. Anil Kumar
Year Of Publication
2017
Volume and Issue
Volume 4 Issue 6
Abstract
Vector control is becoming the industrial standard for induction motor control. Thevector control technique decouples the two components of stator current space vector: one providing the control of flux and the other providing the control of torque. The two components are defined in the synchronously rotating reference frame. With the help of this control technique the induction motor can replace a separately excited dc motor. The DC motor needs time to time maintenance of commentator, brushes and brush holders. The main effort is to replace DC motor by an induction motor and merge the advantages of both the motors together into variable speed brushless motor drive and eliminate the associated problems. The squirrel cage induction motor being simple, rugged, and cheap and requiring less maintenance, has been widely used motor for fixed speed application. So with the implementation of vector control, induction motor replaces the separately excited dc motor. The vector control technique
PaperID
2017/IJTRM/6/2017/9096

Author Name
Durgesh verma, Prof. Mr. Mahesh Goud
Year Of Publication
2017
Volume and Issue
Volume 4 Issue 6
Abstract
Digital watermarking has been considered a solution for copyright protection applications. Our research on audio watermarking has led to the development of a novel technique that uses two wavelet filters and our technique has been shown to successfully satisfy the Information Hiding and its Criteria for evaluation (IHC) criteria. This paper describes our study that extended our audio watermarking technique and applied it to images. We conducted an experiment that used our technique to process image data at the IHC website and analyzed. In this paper Discrete Wavelet Transform based watermarking scheme is used image watermarking and is simulated using MATLAB software. The proposed method provides performance metrics MSE and PSNR values better than the existing methods.
PaperID
2017/IJTRM/6/2017/9097

Author Name
Sujeet Gupta, Prof. Madhvi S Bhanwar
Year Of Publication
2017
Volume and Issue
Volume 4 Issue 6
Abstract
The Light-Emitting Diode (LED) driver is an important part of Visible Light Communication (VLC) systems. The main challenge of the VLC LED driver is to offer a high data transmission rate with high power efficiency. This paper presents the design of a white light LED driver that combines the LED lighting with VLC technology. The proposed LED driver uses linear current regulation and controls the AC current signal and the DC current through a single power device for the purposes of high speed, high efficiency and high integration. It also can support the modulation format of orthogonal frequency division multiplexing (OFDM).
PaperID
2017/IJTRM/6/2017/9098