Investigation of the Power Grid Accuracy by CMOS Transistor Network using Matlab/ Simulink

The design and analysis of the power distribution and supply system on a chip is a complex issue. The ideal network consists of millions of transistors, which act as energy consumers. This large number makes them complex in terms of design and analysis. Building typical algorithms with logical gates...

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Main Authors: Shahir Fleyeh Nawaf, Mohammed Khalaf Hussein, Sabah Sadeem, Shaker Mahmud Faysal
Format: Article
Language:English
Published: Tikrit University 2018-09-01
Series:Tikrit Journal of Engineering Sciences
Subjects:
Online Access:http://tj-es.com/vol25no3pa4/
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spelling doaj-945415428e0a4a72a37907355ad6f0ba2020-11-24T21:08:14ZengTikrit UniversityTikrit Journal of Engineering Sciences1813-162X2018-09-01253192310.25130/tjes.25.3.04Investigation of the Power Grid Accuracy by CMOS Transistor Network using Matlab/ SimulinkShahir Fleyeh Nawaf0Mohammed Khalaf Hussein1Sabah Sadeem2Shaker Mahmud Faysal3Elect. Eng. Dept., Tikrit University, IraqAppl. Eng. Coll., Tikrit University, IraqElect. Eng. Dept., Tikrit University, IraqElect. Eng. Dept., Tikrit University, IraqThe design and analysis of the power distribution and supply system on a chip is a complex issue. The ideal network consists of millions of transistors, which act as energy consumers. This large number makes them complex in terms of design and analysis. Building typical algorithms with logical gates and working automatically is the best way to solve the problem of power grid complexity. In this research, it was proposed to design a new model for consumers on the basis of effective resistance. passive elements were used only in this model and based on the actual resistance and capacity of the logical gates. Consumers and power grids can adopt computational physics methods and consider each group of consumers in each subnet as within total circuits. Emphasis is placed on the interaction between consumers for energy distribution network and energy supply. Using Matlab/ Simulink, accuracy of the system is verified to determine the technical issues related to the operation of the system for power networks.http://tj-es.com/vol25no3pa4/CMOSRLC modelpower grid
collection DOAJ
language English
format Article
sources DOAJ
author Shahir Fleyeh Nawaf
Mohammed Khalaf Hussein
Sabah Sadeem
Shaker Mahmud Faysal
spellingShingle Shahir Fleyeh Nawaf
Mohammed Khalaf Hussein
Sabah Sadeem
Shaker Mahmud Faysal
Investigation of the Power Grid Accuracy by CMOS Transistor Network using Matlab/ Simulink
Tikrit Journal of Engineering Sciences
CMOS
RLC model
power grid
author_facet Shahir Fleyeh Nawaf
Mohammed Khalaf Hussein
Sabah Sadeem
Shaker Mahmud Faysal
author_sort Shahir Fleyeh Nawaf
title Investigation of the Power Grid Accuracy by CMOS Transistor Network using Matlab/ Simulink
title_short Investigation of the Power Grid Accuracy by CMOS Transistor Network using Matlab/ Simulink
title_full Investigation of the Power Grid Accuracy by CMOS Transistor Network using Matlab/ Simulink
title_fullStr Investigation of the Power Grid Accuracy by CMOS Transistor Network using Matlab/ Simulink
title_full_unstemmed Investigation of the Power Grid Accuracy by CMOS Transistor Network using Matlab/ Simulink
title_sort investigation of the power grid accuracy by cmos transistor network using matlab/ simulink
publisher Tikrit University
series Tikrit Journal of Engineering Sciences
issn 1813-162X
publishDate 2018-09-01
description The design and analysis of the power distribution and supply system on a chip is a complex issue. The ideal network consists of millions of transistors, which act as energy consumers. This large number makes them complex in terms of design and analysis. Building typical algorithms with logical gates and working automatically is the best way to solve the problem of power grid complexity. In this research, it was proposed to design a new model for consumers on the basis of effective resistance. passive elements were used only in this model and based on the actual resistance and capacity of the logical gates. Consumers and power grids can adopt computational physics methods and consider each group of consumers in each subnet as within total circuits. Emphasis is placed on the interaction between consumers for energy distribution network and energy supply. Using Matlab/ Simulink, accuracy of the system is verified to determine the technical issues related to the operation of the system for power networks.
topic CMOS
RLC model
power grid
url http://tj-es.com/vol25no3pa4/
work_keys_str_mv AT shahirfleyehnawaf investigationofthepowergridaccuracybycmostransistornetworkusingmatlabsimulink
AT mohammedkhalafhussein investigationofthepowergridaccuracybycmostransistornetworkusingmatlabsimulink
AT sabahsadeem investigationofthepowergridaccuracybycmostransistornetworkusingmatlabsimulink
AT shakermahmudfaysal investigationofthepowergridaccuracybycmostransistornetworkusingmatlabsimulink
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