August 23, 2012
Stanford researchers discover the ‘anternet’
A collaboration between a Stanford ant biologist and a computer scientist has revealed that the behavior of harvester ants as they forage for food mirrors the protocols that control traffic on the Internet.
BY BJORN CAREY
On the surface, ants and the Internet don’t seem to have much in common. But two Stanford researchers have discovered that a species of harvester ants determine how many foragers to send out of the nest in much the same way that Internet protocols discover how much bandwidth is available for the transfer of data. The researchers are calling it the “anternet.”
Deborah Gordon, a biology professor at Stanford, has been studying ants for more than 20 years. When she figured out how the harvester ant colonies she had been observing in Arizona decided when to send out more ants to get food, she called across campus to Balaji Prabhakar, a professor of computer science at Stanford and an expert on how files are transferred on a computer network. At first he didn’t see any overlap between his and Gordon’s work, but inspiration would soon strike.
“The next day it occurred to me, ‘Oh wait, this is almost the same as how [Internet] protocols discover how much bandwidth is available for transferring a file!’” Prabhakar said. “The algorithm the ants were using to discover how much food there is available is essentially the same as that used in the Transmission Control Protocol.”
Transmission Control Protocol, or TCP, is an algorithm that manages data congestion on the Internet, and as such was integral in allowing the early web to scale up from a few dozen nodes to the billions in use today. Here’s how it works: As a source, A, transfers a file to a destination, B, the file is broken into numbered packets. When B receives each packet, it sends an acknowledgment, or an ack, to A, that the packet arrived.
This feedback loop allows TCP to run congestion avoidance: If acks return at a slower rate than the data was sent out, that indicates that there is little bandwidth available, and the source throttles data transmission down accordingly. If acks return quickly, the source boosts its transmission speed. The process determines how much bandwidth is available and throttles data transmission accordingly.
It turns out that harvester ants (Pogonomyrmex barbatus) behave nearly the same way when searching for food. Gordon has found that the rate at which harvester ants – which forage for seeds as individuals – leave the nest to search for food corresponds to food availability.
A forager won’t return to the nest until it finds food. If seeds are plentiful, foragers return faster, and more ants leave the nest to forage. If, however, ants begin returning empty handed, the search is slowed, and perhaps called off.
Prabhakar wrote an ant algorithm to predict foraging behavior depending on the amount of food – i.e., bandwidth – available. Gordon’s experiments manipulate the rate of forager return. Working with Stanford student Katie Dektar, they found that the TCP-influenced algorithm almost exactly matched the ant behavior found in Gordon’s experiments.
“Ants have discovered an algorithm that we know well, and they’ve been doing it for millions of years,” Prabhakar said.
They also found that the ants followed two other phases of TCP. One phase is known as slow start, which describes how a source sends out a large wave of packets at the beginning of a transmission to gauge bandwidth; similarly, when the harvester ants begin foraging, they send out foragers to scope out food availability before scaling up or down the rate of outgoing foragers.
Another protocol, called time-out, occurs when a data transfer link breaks or is disrupted, and the source stops sending packets. Similarly, when foragers are prevented from returning to the nest for more than 20 minutes, no more foragers leave the nest.
Prabhakar said that had this discovery been made in the 1970s, before TCP was written, harvester ants very well could have influenced the design of the Internet.
Gordon thinks that scientists have just scratched the surface for how ant colony behavior could help us in the design of networked systems.
There are 11,000 species of ants, living in every habitat and dealing with every type of ecological problem, Gordon said. “Ants have evolved ways of doing things that we haven’t thought up, but could apply in computer systems. Computationally speaking, each ant has limited capabilities, but the collective can perform complex tasks.
“So ant algorithms have to be simple, distributed and scalable – the very qualities that we need in large engineered distributed systems,” she said. “I think as we start understanding more about how species of ants regulate their behavior, we’ll find many more useful applications for network algorithms.”
The work is published in the Aug. 23 issue of PLoS Computational Biology.
_________________________________________________________________________________________________
BJORN CAREY (2012).
Stanford researchers discover the ‘anternet’
Stanford News
_________________________________________________________________________________________________
Tracing Knowledge Notification | Ειδοποίηση Στα ίχνη της Γνώσης
UNMODIFIED COPY
of the original post, out of respect to the source and readers.
Please follow the link for references and more informations.
ΑΠΑΡΑΛΛΑΚΤΟ ΑΝΤΙΓΡΑΦΟ
της πρωτότυπης δημοσίευσης με σεβασμό στην πηγή και στους αναγνώστες.
Παρακαλώ επισκεφθείτε τον σύνδεσμο για περισσότερες πληροφορίες.
Stanford researchers discover the ‘anternet’ | Stanford News Release.


![The Universe can be a very gray place. But this week, we’ll look at a fine example of a class of objects that defies this trend. Many first time stargazers are surprised when the Trifid or the Orion Nebula fails to exhibit the bright splashy colors seen in Hubble photos. The fault lies not with the Universe, but in our very own eyes [...]](http://d1jqu7g1y74ds1.cloudfront.net/wp-content/uploads/2013/05/La-Superba-Wide-580x426.jpg)


![On May 31, 2013, asteroid 1998 QE2 will sail serenely past Earth, getting no closer than about 3.6 million miles (5.8 million kilometers), or about 15 times the distance between Earth and the moon. And while QE2 is not of much interest to those astronomers and scientists on the lookout for hazardous asteroids, it is of interest to those who dabble in radar astronomy and have a 230-foot (70-meter) -- or larger -- radar telescope at their disposal [...]](http://www.jpl.nasa.gov/images/asteroid/20130515/asteroid20130514-640.jpg)



![Scientists have used Chandra to make a detailed study of an enormous cloud of hot gas enveloping two large, colliding galaxies. This unusually large reservoir of gas contains as much mass as 10 billion Suns, spans about 300,000 light years, and radiates at a temperature of more than 7 million degrees. This giant gas cloud, which scientists call a "halo," is located in the system called NGC 6240. Astronomers have long known that NGC 6240 is the site of the merger of two large spiral galaxies similar in size to our own Milky Way. Each galaxy contains a supermassive black hole at its center. The black holes are spiraling toward one another, and may eventually merge to form a larger black hole [...]](http://www.nasa.gov/images/content/745197main_ngc6240_665.jpg)

![Elephants are currently being slaughtered in huge numbers in the Central African Republic (CAR), according to field reports that the WWF and WCS have received in recent days [...]](http://c1planetsavecom.wpengine.netdna-cdn.com/files/2013/04/image49-600x398.jpg)


![How the modern universe is primarily composed of matter and not antimatter has foxed astrophysicists for decades, but a result from a Large Hadron Collider (LHC) experiment has uncovered a new clue behind the matter-antimatter asymmetry mystery [...]](http://static.ddmcdn.com/gif/blogs/dnews-files-2013-04-big-bang-670x440-130426-jpg.jpg)

![A few weeks ago, my friend Devin and I drove six hours out of our way so Devin could meet the Grand Canyon and so I could see it for the sixth time. We walked up to the South Rim at Mather Point, stood for a moment, both speechless and slightly unsteady on that overwhelming edge and then sat with our feet dangling into the abyss, talking a bit about rocks, rivers and trails, but mostly marveling in silence [...]](http://theblondecoyote.files.wordpress.com/2013/04/tarantula1.jpg?w=300&h=330#038;h=554)
![Sticking a Q-tip up one’s nose is not the source of many great insights. Yet it’s how an American doctor in the early 20th century developed the theory that became modern reflexology. He would be proud—though maybe a little confused—to see people today flocking to reflexology spas, where practitioners treat all their problems via the soles of their feet [...]](http://1.bp.blogspot.com/-3rlYleb3E9s/UXpknLmV54I/AAAAAAAABr0/_yk6JFEkgqo/s640/Foot-massage-chart.jpg)
![Physicists plan to create a “time crystal” — a theoretical object that moves in a repeating pattern without using energy — inside a device called an ion trap [...]](https://simonsfoundation.org/wp-content/uploads/2013/04/view-into-ion-trap-apparatus_web.jpg)


![Scientists don't fully understand how we detect faint sounds, because they should be drowned out by the background noise that the ear itself produces. Now, however, researchers at UCLA have produced clues to the process that allows us to hear a pin drop, or understand a whispered comment. They did so using hair cells taken from bullfrogs that they studied in laboratory glassware [...]](http://www.insidescience.org/sites/default/files/hearing-top%20image.jpg)
![A strange stellar pair nearly 7,000 light-years from Earth has provided physicists with a unique cosmic laboratory for studying the nature of gravity. The extremely strong gravity of a massive neutron star in orbit with a companion white dwarf star puts competing theories of gravity to a test more stringent than any available before. Once again, Albert Einstein's General Theory of Relativity, published in 1915, comes out on top [...]](http://www.nrao.edu/pr/2013/gravitylab/nsandwd.small.jpg)

















![An area in the northwest of the Democratic Republic of Congo is pictured in this image taken on 26 June 2011 by the French SPOT-4 satellite. Most of the lighter green areas are deforested, while the darker green are areas of dense – and possibly natural – vegetation. The lines cutting through the image are roads, many with structures built along them. Clusters of purple dots are larger settlements. A river snakes through the upper part of the image and below it there appears to be a square in light green. Judging by the precision of the outline, we can deduce that this is a patch of land that was either intentionally spared from deforestation or has been reforested [...]](http://spaceinimages.esa.int/var/esa/storage/images/esa_multimedia/images/2013/04/democratic_republic_of_congo/12630824-1-eng-GB/Democratic_Republic_of_Congo_node_full_image.jpg)
![Η πρώτη βροχή διαττόντων αστέρων της άνοιξης, οι Λυρίδες, άρχισαν δειλά-δειλά να εμφανίζονται στον ουρανό του βορείου ημισφαιρίου, όπου ανήκει και η Ελλάδα. Οι πτώσεις των συγκεκριμένων μετεώρων, που αποκαλούνται και «πεφταστέρια», θα αποκορυφωθούν την Κυριακή 21 και τη Δευτέρα 22 Απριλίου, ενώ θα διαρκέσουν σε πιο αραιή μορφή έως τις 25 του μηνός [...]](http://physicsgg.files.wordpress.com/2013/04/lyrids-2013-april-22_edited-1.jpg?w=300&h=270#038;h=443)





![Europe's best-known mummy wasn't just a medical mess; he also had terrible teeth, according to a new study. Ötzi (inset photo), a Stone Age man who died atop a glacier about 5300 years ago, suffered from severe gum disease and cavities. His teeth, back and front, were also heavily worn from chewing coarse grain and use as a "third hand" for gripping tools and cutting. When Ötzi was discovered atop a glacier on the Austro-Italian border, his frozen corpse was intensively studied. But no one took a close look at his teeth until now [...]](http://news.sciencemag.org/sciencenow/assets/2013/04/10/sn-otziteeth.jpg)
![Sometime in the early Jurassic period, between 190 and 197 million years ago, a flood swept through a dinosaur nesting site in what is now southern China. Dozens of embryos were suffocated in their eggs and their bones were separated from each other, carried away, and buried under sediment [...]](http://www.the-scientist.com/images/News/April2013/Dinosaur_embryo.jpg)


![Dramatic underground explosions, perhaps involving ice, are responsible for the pits inside these two large martian impact craters, imaged by ESA’s Mars Express on 4 January. The ‘twin’ craters are in the Thaumasia Planum region, a large plateau that lies immediately to the south of Valles Marineris, the largest canyon in the Solar System. The northernmost (right) large crater in this scene was officially given the name Arima in early 2012, but the southernmost (left) crater remains unnamed. Both are just over 50 km wide and display intricate interior features [...]](http://www.esa.int/var/esa/storage/images/esa_multimedia/images/2013/04/arima_twins_topography/12612851-1-eng-GB/Arima_twins_topography_large.jpg)




![SARA KOSCHAK AND HER partner, Andrew Skeoch, have been recording nature for 20 years. It’s a venture driven solely by passion, in which the pair capture the sounds of natural settings from Africa to Indian, Europe to the Americas, Australia, and deep into the jungles of the Pacific islands, creating CDs and downloadable files to transport listerners from their homes to a soundscape far away. The recordings are available through an online store, but many are free and are accessible through the couple's website, Listening Earth. “Nature recordings are our way of sharing a passion and love,” says Sarah. But her desire to record the soundscape of the Tarkine region – a wild system of rainforest and lush native wilderness in Tasmania's north-west – was motivated by something more pressing [...]](http://www.australiangeographic.com.au/assets/images/article/journal/13384/tarkine-main.jpg)




Share & Enjoy Knowledge -Tracing Knowledge – Στα Ίχνη της Γνώσης | tumblr
Tracing Knowledge – Στα Ίχνη της Γνώσης | YouTube Channel Video Collection | Συλλογή Βίντεο
Tracing Knowledge | Στα Ίχνη της Γνώσης – Google +
Tracing Knowledge | Στα Ίχνη της Γνώσης – Pinterest
Tracing Knowledge | Στα Ίχνη της Γνώσης – Research Blogging
Tracing Knowledge | Στα Ίχνη της Γνώσης – ScoopIt
Tracing Knowledge | Στα Ίχνη της Γνώσης – StumbleUpon