Skip to main content
The Institution of Engineering and Technology iet.tv
Site name
  • Videos
  • Channels
  • Events
  • Series

Access and Account

Access your personal account

Log in to see your favourites, lists and progress.

IET Login

Access via institution

Not currently connected to any institutions

Connect via

Access Code

Redeem Access Code
Log in to redeem access code

This video isn’t available to you right now

Login to check your access and watch the full session.
To redeem an access code, first log in.

Login
  1. Videos
  2. Video

Wide-area measurement based nonlinear global optimal control for power system stability enhancement

  • WhatsApp
  • Facebook
  • Email
  • LinkedIn
  • Bluesky
Conference
  • Session
  • Wednesday, 19 March 2008
  • 00:00
  • Duration: 12 mins
  • Publication date: 19 Mar 2008
  • Location: IETTV_Room, IETTV_Venue, Glasgow, United Kingdom
  • Part of event DPSP 2008 - IET 9th International Conference on Developments in Power Systems Protection

About the session

Centralized control using the wide-area information has been suggested to enhance the dynamic performance of large interconnected power systems. According to the inverse system method and LQR optimal control theory, this presentation describes a nonlinear hierarchical global controller based on the wide-area information including the on-line measured center of rotor angle and total unbalanced power. Moreover, it has been verified that the optimal control in the sense of linear quadratic state regulator principle for the linearized system is equivalent to an optimal control in the sense of extended quadratic output regulator performance index for the primitive nonlinear system. So, the designed controller is an optimal controller for the nonlinear system digital simulation demonstrates that the multi-machine power system under the nonlinear global control has less settling time, swing times, oscillatory peak value and more critical clearing time and better voltage stability performance than that under PID control and nonlinear decentralized control.

Channels

Power

Power

Speakers

  • JY

    Jin Yang

    Jiaotong University, Sch. of Electr. Eng.

  • EP

    Eui-Jong Park

    Jiaotong University, Sch. of Electr. Eng.

  • JY

    Jin Yang

    Jiaotong University, Sch. of Electr. Eng.

  • JY

    Jin Yang

    Jiaotong University, Sch. of Electr. Eng.

  • JY

    Jin Yang

    Jiaotong University, Sch. of Electr. Eng.

The Institution of Engineering and Technology iet.tv

Address: Futures Place, Kings Way, Stevenage, SG1 2UA

Telephone: +44 (0)33 049 9123

Email:  iet.tv@theiet.org

© 2026 The Institution of Engineering and Technology.

The Institution of Engineering and Technology is registered as a Charity in England & Wales (no 211014) and Scotland (no SC038698). Futures Place, Kings Way, Stevenage, Hertfordshire, SG1 2UA, United Kingdom

  • LinkedIn
  • Instagram
  • YouTube
Privacy statement Cookie Preferences Accessibility About us theiet.org Help

Powered by Cadmore Media

Embed Code

<script type="text/javascript" src="https://play.cadmore.media/js/EMBED.js"></script> <div class="cmpl_iframe_div"> <iframe src="https://play.cadmore.media/Player/251b1416-5f4d-4923-8fc1-fb1389a2cee1" scrolling="no" allowtransparency="true" allowautoplay="true" frameborder="0" allow="encrypted-media;autoplay;fullscreen" class="cmpl_iframe" allowfullscreen="" style="overflow: hidden;border: 0px; margin: 0px; height: 100%; width:100%;"></iframe> </div>

Are you sure you want to reset your password?

If so, you will be redirected to the Authentication Service

Title

Prompt