JA Purity IV
  • HOME
    • Business
    • Corporate
    • Logistics
    • Product
    • News / Magazine
  • MTECH PROJECTS
    • COMPUTER SCIENCE
      • MTech Python Projects
        • Machine Learning Projects
        • Deep Learning Projects
        • Blockchain Projects
        • django Projects
      • MTech Java Projects
        • Cloud Computing Projects
        • Data Mining Projects
        • Mobile Computing Projects
        • Networking Projects
      • MTech NS2 Projects
        • Wireless Communication Projects
        • Vehicular Technology Projects
      • MTech Hadoop Projects
      • MTech Android Projects
    • ELECTRONICS
      • MTech DSP Projects
      • MTech DIP Projects
      • MTech VLSI Projects
      • MTech Communication Projects
    • ELECTRICAL
      • MTech Power Systems Projects
      • MTech Power Electronics Projects
      • MTech Control Systems Projects
    • OTHER
      • Chemical Projects
      • Mechanical Projects
      • All Other Projects
  • EMBEDDED KITS
    • MTech Embedded Kits
    • BTech Embedded Kits
  • PROJECTS+
  • PUBLISHING
    • Research Publishing
    • Authors Guidelines
    • Publishing Policy
  • CONTACT US

Contact Us

  • 4517 Washington Ave. Manchester, Kentucky 39495
  • (201) 555-0124
  • hello@purityiv.com

Welcome to MTech Projects - Online Projects for MTech Students

  • My Account
  • Careers
  • Downloads
  • Blog
JA Purity IV
  • Email Us
  • Phone Number
  • Open Hours
  • HOME
    • Business
    • Corporate
    • Logistics
    • Product
    • News / Magazine
  • MTECH PROJECTS

    MTech Python Projects

    • Machine Learning Projects
    • Deep Learning Projects
    • Blockchain Projects
    • django Projects

    MTECH JAVA PROJECTS

    • Cloud Computing Projects
    • Data Mining Projects
    • Mobile Computing Projects
    • Networking Projects

    MTECH NS2 PROJECTS

    • Wireless Communication Projects
    • Vehicular Technology Projects
    • MTech Hadoop Projects
    • MTech Android Projects

    ELECTRONICS

    • MTech DSP Projects
    • MTech DIP Projects
    • MTech VLSI Projects
    • MTech Communication Projects

    ELECTRICAL

    • MTech Power Systems Projects
    • MTech Power Electronics Projects
    • MTech Control Systems Projects

    OTHER

    • Chemical Projects
    • Mechanical Projects
    • All Other Projects
  • EMBEDDED KITS
    • MTech Embedded Kits
    • BTech Embedded Kits
  • PROJECTS+
  • PUBLISHING
    • Research Publishing
    • Authors Guidelines
    • Publishing Policy
  • CONTACT US

Project Enquiry

  1. You are here:  
  2. Home
  3. MTech Java Projects
  4. Power Efficiency and Delay Tradeoff of 10GBase-T Energy Efficient Ethernet Protocol - 2017
Details
Category: MTech Java Projects
By MTech Projects
MTech Projects
14.Mar
Hits: 1

Power Efficiency and Delay Tradeoff of 10GBase-T Energy Efficient Ethernet Protocol - 2017

PROJECT TITLE :

Power Efficiency and Delay Tradeoff of 10GBase-T Energy Efficient Ethernet Protocol - 2017

ABSTRACT:

In this paper, we study the facility potency and delay performance of the burst mode transmission (BTR) strategy for the IEEE 802.3az energy efficient Ethernet (EEE) protocol. In the BTR strategy, the Ethernet interface goes to sleep once its transmission buffer becomes empty and wakes up once the first arrival has waited for time r or the N-th frame arrives at the interface. Based on the amount of arrivals throughout the holiday time, a brand new approach is proposed to investigate the M/G/1 queue with vacation times that are governed by the arrival method and therefore the r and N parameters of BTR strategy. Our key plan is to determine the connection between the vacation time and therefore the arrival process to account for their dependency. We tend to 1st derive the distribution of the number of arrivals throughout a vacation time primarily based on an occasion tree of the BTR strategy, from that, we tend to obtain the mean vacation time and the facility potency. Next, from the condition on the number of arrivals at the top of a vacation period, we have a tendency to derive a generalized P-K formula of the mean delay for EEE systems, and prove that the classical P-K formula of the vacation model is only a special case when the holiday time is freelance of the arrival method. Our analysis demonstrates that the r policy and N policy of the BTR strategy are compensating every alternative. The r policy ensures the frame delay is bounded when the traffic load is light-weight, whereas the N policy ensures the queue length at the tip of vacation times is bounded when the traffic load is heavy. These results, in turn, give the rules to pick acceptable r and N. Our analytical results are confirmed by simulations.

Did you like this research project?

To get this research project Guidelines, Training and Code... Click Here

Previous article: Coding for Improved Throughput Performance in Network Switches - 2017 Coding for Improved Throughput Performance in Network Switches - 2017 Next article: A Scalable Framework for Wireless Distributed Computing - 2017 A Scalable Framework for Wireless Distributed Computing - 2017
COMPUTER SCIENCE PROJECTS MTech Java Projects MTech .Net Projects MTech NS2 Projects MTech Android Projects MTech Hadoop Projects MTech Python Projects ELECTRONICS PROJECTS ELECTRICAL PROJECTS EMBEDDED PROJECTS MECHANICAL PROJECTS

sell academic m.tech, btech and be projects online

sell academic m.tech, btech and be projects online

Academic Final Year Projects

QUICK LINKS

  • Python Projects
  • Java Projects
  • Android Projects
  • Digital Signal Processing
  • Image Processing Projects
  • VLSI Projects
  • Power Systems
  • Power Electronics
SUPPORT
+91 9573777164
9:00am - 6:00pm IST
info@mtechprojects.com

Navigate

  • ABOUT
  • TESTIMONIALS
  • FIND A DEALER
  • CAREERS

CONTACT

  • CONTACT
  • FAQ
  • RESOURCES
  • EMAIL US

Useful links

  • REFUND & RETURN POLICY
  • PRIVACY POLICIES

Support

  • FACEBOOK
  • TWITTER
  • PINTEREST
  • GOOGLE PLUS
Copyright © 2026 MTech Projects. All Rights Reserved.