LNL Webinar: Electrical HRG (High Resistance Grounding) Challenges and Solutions

#Bender #HRG #HOU #Sec #Houston
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Webinar link and password will be forwarded to all registered participants 24/48 Hours before the event. 

Webinar is open to all.

PDH will be issued to all registered and attending participants. 


Neutral-grounding resistors (NGR) for industrial power systems are often selected without consideration of the nature of the loads on the system. Where a significant proportion of system demand is from adjustable-speed drives (ASD), unexpected performance problems, such as the NGR continually running hot without a detected ground fault, or NGR failure, can result. Modern HRG solutions offer added value to help overcome these issues and make systems safer.



  Date and Time

  Location

  Hosts

  Registration



  • Date: 01 May 2020
  • Time: 12:00 PM to 01:15 PM
  • All times are (UTC-05:00) Central Time (US & Canada)
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  • WEBINAR
  • Houston, Texas
  • United States

  • Contact Event Host
  • Co-sponsored by Christopher Sanderson
  • Starts 15 April 2020 07:00 AM
  • Ends 30 April 2020 09:00 AM
  • All times are (UTC-05:00) Central Time (US & Canada)
  • No Admission Charge


  Speakers

Jeff Glenney, P.Eng Jeff Glenney, P.Eng of Bender,

Biography:

Jeff Glenney, P.Eng. has a Bachelor of Science degree in Electrical Engineering from the University of Saskatchewan and is a registered Professional Engineer in Saskatchewan. He has worked in the electrical protection relay market with various manufacturers since 1995. His roles have included sales engineer, U.S. sales engineering manager, vertical market manager for fuses and relays and product manager. Jeff is a member of IEEE and co-authored several papers including “Type B Ground-Fault Protection on Adjustable Frequency Drives“. He has worked with many end customers and design engineers to assist in applying protective relays to meet their system needs.





Agenda

Overview of the benefits of Resistance grounded systems Unique Challenges of non-linear loads. Ground fault trending for preventative maintenance planning Resistor and grounding system failure mechanisms Safer Ground Fault Location Strategy.