Robohub.org
 

International Robot Olympiad 2013: Robots in agriculture


by
18 December 2013



share this:

Let me admit up front that I’m not the best person to be covering a robotics competition. In fact this is only the second one I’ve attended; the first, Sparkfun’s AVC, is a tough act to follow and set my expectations pretty high. On the other hand, the theme of this year’s International Robot Olympiad is Robots in Agriculture, which is right in line with my own interests, so maybe it’s a wash in this instance.
Model of multilevel plant production facility with artificial lighting and autonomous forklifts to handle trays.

Autonomous forklifts to move trays of plants.

I’m pretty sure that a comparison between the IRO competition and FIRST would be appropriate. Of course, not having been to a FIRST competition, I’m in no position to make that comparison myself. Perhaps others will do so in comments. I can, however, make a few general observations about the International Robot Olympiad, the easiest of which is that most of the participants come from the western side of the Pacific Ocean, with the Philippines, Malaysia, Korea, and China figuring prominently. (There are a few American participants, as you’ll see below.)

Another observation has to do with the nature of the competition, which, unless I’ve completely misunderstood what I was seeing (possible), seems to include assembling working robots from a box of parts and programming them within a limited amount of time. Not every event is of this nature, but the similar appearance of robots entered within each of several events suggests that some of them are, or else there are very strict design guidelines. Perhaps both, and perhaps I’ll manage to get this sorted out by the time IRO 2013 is over on Thursday.

This year’s theme, Robots in Agriculture, only figured in a handful of events, but in my opinion the most interesting of them. What was on display outside the exhibition hall this afternoon had clearly not been hurriedly assembled from a box of parts. The photo above shows a model of a multilevel indoor plant production facility with autonomous forklifts to move trays of plants about. Such a facility might prove very useful in urban areas not well served by nearby market gardening operations, so-called “food deserts” within which produce is either expensive or of low quality.

Sean Vince Ruel and John Raphael, of the Philippines, with their automatic rice paddy irrigation system.
Two young men with their automatic rice paddy irrigation system.

Sean and John, from the Philippines, are shown here standing behind their prototype of an automated irrigation control system for rice paddies, with water level sensors to be placed in the fields and water flow controlled by gates, which are operated by the output from the controller board. Such a system could free farmers from the time-consuming task of manually operating the gates controlling flow to maintain proper water depth.

Haley Steinke, Ryan Ham, and Samuel Zimmer, of the Denver area, with their seed sprouting robot.
Three Denver-area residents with their seed sprouting robot.

Haley, Ryan, and Samuel are local to the Denver area. Here they are shown with their grain sprouting robot, the trays of which remain level while moving very slowly, suspended from a vertically arranged chain drive. They intend the sprouted grain for use in feeding livestock, believe the accumulation of sugars from photosynthesis adds food value to the grain, and are certain they can produce the sprouts using a fraction of the water that would be required to produce an equivalent amount of irrigated hay.

Overall I’m very impressed with what I’ve seen. These young people give me hope that the future may turn out well.



tags: , , ,


John Payne

            AUAI is supported by:



Subscribe to Robohub newsletter on substack



Related posts :

Robotics roadmaps from around the world spotlight of the month: United States of America

US robotics researchers and industry are looking for a cohesive national robotics strategy.

Could robots help tackle loneliness? BBC’s Ann Droid raises questions about the future of care

  07 Sep 2026
While the series exaggerates what robots can currently do, some of the technology it depicts is already being tested.

Exploring the Moon will require rovers that can think for themselves – an upcoming NASA mission will test whether they can

  04 Sep 2026
NASA is planning to send three small rovers to the Moon to autonomously compute how to best explore a patch of ground.

Surviving the paper deluge: Notes from an ICRA panel on publishing, LLMs, and the future of peer review

Experts discuss peer-review challenges and possibilities for reshaping the process.

When expressive humanoid robots are awkward, people become wary – new brain study

  31 Aug 2026
People become more suspicious of a humanoid robot that makes errors, especially when the robot is an expressive conversation partner.

First 11 vs 11 humanoid soccer game played at RoboCup 2026

  28 Aug 2026
Watch highlights from this historic match.

How green is your robot? And other awkward questions

Robots clean rivers and sort waste, monitor ecosystems, and inspect renewable-energy infrastructure. But even the greenest robot has an environmental footprint.

These tiny drones are powered by sound

  24 Aug 2026
EPFL engineers have designed acoustic cavities that convert sound waves into thrust, propelling small robots and ultralight aerial vehicles without on-board actuators or electronics.



AUAI is supported by:







Subscribe to Robohub newsletter on substack




 















©2026.05 - Association for the Understanding of Artificial Intelligence