News Release

Virtual fences are a pollinator-friendly option for ranchlands

GPS cattle collars with programmable boundaries can lead to more gradual grazing patterns and vegetation changes in rangeland, creating healthier habitat for birds and pollinators

Reports and Proceedings

American Geophysical Union

GPS collar on a cow

image: 

The cows in the study wear virtual fence collars that give signals when they are approaching the programmed grazing boundary. Virtual fences may help improve vegetation variety in grazed areas.

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Credit: Timothy Olsen

AGU Annual Meeting  
9 – 13 December 2024  
Walter E. Washington Convention Center  
801 Allen Y. Lew Place NW  
Washington, D.C. 20001  

8 December 2024 
Press Release 24-41 
EMBARGOED until Monday, 9 December at 8:00 a.m. EST

Researcher contact: 
Timothy Olsen, Oklahoma State University, timothy.olsen@okstate.edu (UTC-6 hours) 

AGU press contact: 
Rebecca Dzombak, news@agu.org (UTC-5 hours)


WASHINGTON — Fences are an effective stationary method of corralling livestock, but their sharp borders can create sudden changes in native grassland vegetation and the pollinators and birds that live there. Virtual, GPS-based fences may be the nature-friendly future of fencing, creating more natural grassland habitat, finds new research to be presented Monday at AGU’s 2024 Annual Meeting. 

The Annual Meeting will be held 9-13 December at the Walter E. Washington Convention Center in Washington, D.C., where more than 28,000 scientists will gather to discuss the latest Earth and space science research. 

In the new study, researchers at Oklahoma State University investigate how virtual fencing technologies could ease ecological impacts on grassland vegetation. The phrase “virtual fence” might evoke images of those invisible dog fences in backyards, but there are some key differences. There is no buried fence line, and the boundaries can be changed easily with a computer. As cows wander toward the fence, they receive an auditory warning from their collar. If they ignore this and move closer to the fence, they receive an electrical stimulus similar to one from an electric fence.  

Previous work on virtual cattle fences focused on their efficacy for containing livestock, such as excluding the animals from sensitive ecosystem areas that are being restored, said Timothy Olsen, a natural resources masters’ student at Oklahoma State University and lead author of the study. Olsen and coauthor Bryan Murray wondered how virtual fences might affect the vegetation structure and heterogeneity of grassland in grazed areas.  

Previous studies showed that continuous grassland habitat is more beneficial for supporting bird and pollinator diversity and abundance than fragmented habitat. The researchers hypothesized that the warning from the collar as cattle approached the virtual fence would prompt the animals to graze more randomly, rather than forage right up to a physical fence — making the ecological boundary between grazed plains and natural grassland more gradual.  

To test that, the researchers set up six 1,000-square-meter study sites at the Oklahoma State University Bluestem Research Range. Within the grassland pasture, the team created linear boundaries, with three plots with physical fences and three having virtual fence lines. The cattle grazed in the study sites during the spring and summer seasons.   

Using drone imagery, the researchers surveyed the six sites and created height models of the vegetation. They then compared the vegetation heights in the traditional fence and virtual fence with ungrazed rangeland. They found the virtual fence created a gradual transition more than 15 meters (50 feet) from the fence, changing from native grassland to fully grazed grass. Additionally, in the virtual fence areas, the researchers found a greater variation of vegetation heights compared to the fenced rangeland. This transitional zone could help increase native habitat for pollinators and birds.  

Olsen notes that while virtual fences can help create stronger ecosystems, they can also help ranchers. Fences require time, money and labor to install and maintain, and they are static features ranchers have to work around.  

“Virtual fences are an easy way to manage livestock, saving time and labor,” Olsen said. Instead of hiring a team to herd and move cattle from one area to another, the grazing area can be changed remotely on a computer.  

Ranchers could also use virtual fences to intentionally create more gradual shifts to grazing areas. “Some studies have looked at virtual fences for rotational grazing where over a period of time, managers can gradually shift the grazing area, nudging cattle to a new field,” Olsen said — no fences or herding required.  

Abstract information: 

Assessing Virtual Fencing Technology for Improving Rangeland Vegetation Structure Heterogeneity 
Monday, 9 December, 8:30 – 12:20 EST 
Hall B-C (Poster Hall, Convention Center) 

We ask that stories about this work not publish before 8:00 a.m. EST on the date of the presentation. 


AGU’s Annual Meeting (#AGU24) will bring more than 28,000 Earth and space scientists to the Walter E. Washington Convention Center in Washington, D.C. from 9-13 December. Members of the press and public information officers can request complimentary press registration for the meeting now through the end of the conference. Learn more about the press AGU24 experience in our online Press Center. 

AGU (www.agu.org) is a global community supporting more than half a million advocates and professionals in Earth and space sciences. Through broad and inclusive partnerships, AGU aims to advance discovery and solution science that accelerate knowledge and create solutions that are ethical, unbiased and respectful of communities and their values. Our programs include serving as a scholarly publisher, convening virtual and in-person events and providing career support. We live our values in everything we do, such as our net zero energy renovated building in Washington, D.C. and our Ethics and Equity Center, which fosters a diverse and inclusive geoscience community to ensure responsible conduct.  


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