Journal of Electrical Engineering and Advanced Technology

Journal of Electrical Engineering and Advanced Technology

Volume : 6
Issue : 1
Frequency : 3 Issue(s)/Year
Issn : Applied (Print)
Applied (Online)
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About this journal

The Journal of Electrical Engineering and Advanced Technology is published quarterly by Enriched publications. Journal of Electrical Engineering and Advanced Technology is peer reviewed journal and monitored by a team of reputed editorial board members. This journal consists of research articles, reviews, and case studies on Electrical and Electronic Engineering. This journal mainly focuses on the latest and most common subjects of its domain.

Articles of this Issue
1. Reactive Power Compensation Using 500kv, 180 km Line to Maintain Substantially Flat Voltage Profile At All Levels of Ac Transmission System
Author Dr. Ibekwe B.E. , Dr. Mgbachi C.A. , Nwobodo N.H Login
Pages 1 to 11
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Abstract

 The global economic recession has contributed in o small measure, in the increasing number of blackouts 

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throughout the world as a result of voltage instability and collapse. The environmental consideration has also
contributed by arresting the commission of new power stations and transmission lines, thus resulting in overload
of the existing system. This calls for a change to a new direction by using the power system tool-box in MATLAB to
stem down the tide. The results showed a balanced system, as confirmed by a substantial flat voltage profiles at all
levels during transmission.
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2. Three Phase Self Excited Induction Generator Electronic Load Controller Using Pi Controller
Author Dr. Rajesh Kumar Ahuja , Archana Singh Login
Pages 12 to 14
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Abstract

 A mathemacal model of the Self-Excited Inducon Generator is developed in this paper. The single

point operaon of these generators is realized. The voltage of generators remains constant under
various operang loads condions. The Electronic Load Controller is also modelled. The proposed
electrical system are modelled and simulated in MATLAB using Simulink and Sim Power System set
toolboxes. On the basis this model different characteriscs of SEIG with ELC are analyzed.
 
3. Design and Analysis of Low Power High Speed Body Bias Controlled Current Latch Sense Amplifier
Author Pradeep Kumar Kumwat , Gajendra Sujediya Login
Pages 15 to 25
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Abstract

 Sense amplifiers are extensively used in memory. Sense amplifiers are one of the most vital circuits in the periphery

of CMOS memories. We know that memory is the heart of all digital systems. Today all worlds are demanding high
speed and low power dissipation as well as small area. We know that speed and power dissipation of memory is
overall depends upon the sense amplifier we used and their performance strongly affects both memory access
time, and overall memory power dissipation. So it is important to design a good  sense amplifier which performs
well in both speed and power dissipation. In this dissertation, an implementation of a most efficient sense
amplifier is done by comparing the best known sense amplifier in today. The dissertation focuses on design,
simulation and performance analysis of sense amplifiers.
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In this paper, current latch sense amplifier and body bias controlled current latch sense amplifier are designed and
results compared. The result shows that the body bias controlled current latch sense amplifier is performing best.
The result also shows a novel sense amplifier which consumes small power at same time its speed is faster than
other sense amplifiers.
All the designs have been implemented, synthesis and simulated on 180nm CMOS technology using tanner tool
version 13.1.
4. Review Of Solar Cell
Author Partha Pratim Das Login
Pages 26 to 33
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Abstract

 The need for inexpensive, clean energy is increasing every day. As more and more countries develop

and the world's populaon increases , the need to power the world increases .One of the most
promising sources of energy for powering the planet is solar energy. Approximately 120,000 terawas
(TW) of solar energy strike the earth every day. Currently, only 0.05% of the world energy producon is
from solar energy. Because solar energy is relavely more expensive than convenonal means of
energy, such as coal and fossil fuels.
5. Implementation of Incremental Conductance (Mppt) Technique For PV System
Author Umesh T. Kute , Ravindra S. Pote Login
Pages 34 to 46
DOI
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Abstract

 This project investigates in detail the concept of Maximum Power Point Tracking (MPPT) which significantly

increases the efficiency of the solar photovoltaic system. The project proposes a simple MPPT algorithm is called
Incremental conductance Method. This method computes the maximum power and controls directly the extracted
power from the PV. The proposed method offers different advantages which are: good tracking efficiency,
response is high and well control for the extracted power. The resultant system is capable of tracking MPPs
accurately and rapidly without steady-state oscillation, and also, its dynamic performance is satisfactory. First
the photovoltaic module is analyzed using SIMULINK software. The main aim will be to track the maximum
power point of the photovoltaic module so that the maximum possible power can be extracted from the
photovoltaic. For the main aim of the project Maximum Power Point Tracking control mechanism is used.
Modeling the converter and the solar cell in Simulink and interfacing both with the MPPT algorithm to obtain the
maximum power point operation would be of prime importance A MPPT plays a very vital role for extracting the
maximum power from the solar PV module and transferring that power to the load. Modeling the converter and
the solar cell in Simulink and interfacing both with the MPPT algorithm to obtain the maximum power point
operation would be of prime importance.
 

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