Robotics & Mechatronics


Manoeuvring agricultural robots with 2D laser scanners

Third Quarter 2019 Robotics & Mechatronics

How can we harness modern technology in a way that will allow people to collaborate with business even more intelligently, efficiently and sustainably in the future? The solution is 2D laser scanners on robots. SICK has applied 2D laser scanners to crop robots in order to assist a scientific project at Wageningen University and Research Centre.

How do you navigate agricultural robots through a field? The major challenge of this application can be found not only in the wide variety of crops out there, but also in the fact that crop rows are neither completely straight nor all the same width. Now, Wageningen University and Research Centre has developed a solution that uses SICK Automation’s LMS111 2D laser scanner.

Precision agriculture

Precision agriculture is on the rise but what does it mean? It is a practice that marks a move away from the model of subjecting every field to a standard treatment and instead takes a semi-tailored approach that considers the requirements of each crop. Custom sowing, fertilisation, pesticide application and disease control have the potential to not only save money, but also reduce the impact on the environment.

However, the more efficient benefits that precision agriculture brings are unfortunately not yet enough to outweigh the performance of the large, fast farm machinery that saves significant quantities of manpower.

Recently, however, a solution to this problem has been introduced in the form of small agricultural robots that are able to work in fields 24 hours a day, slowing down or stopping as the situation demands, and operating almost entirely without human input.

Navigation without GPS

A good navigation system is one of the fundamental requirements for using agricultural robots successfully. The system must be able to account for deviations in the shape and size of crops, crooked rows of differing widths, as well as other irregularities.

Standard GPS systems are not up to the job. For this reason, the Wageningen University and Research Centre developed a navigation process in which robots would be guided not by a GPS function, but instead by an LMS111 2D laser scanner from SICK Automation.

The LMS111 2D laser scanners collect raw data and then filter the information needed out of this. A whole range of practical tests were performed during the growing season to check whether the system was functioning as it should. The results proved that it is indeed a reliable solution for navigating crop areas cultivated using conventional methods.

Summing up, Dr Frits van Evert from Wageningen University and Research Centre states: “We have invested a great deal of time and energy in this project. Just recently, our efforts put us in a position to publish our findings in a leading scientific journal. I would therefore like to express my sincere thanks to SICK for providing us with the laser scanner for our research.”

For more information contact Mark Madeley, SICK Automation Southern Africa, +27 10 060 0550, [email protected], www.sick.com



Credit(s)



Share this article:
Share via emailShare via LinkedInPrint this page

Further reading:

Caster for service robot applications
Robotics & Mechatronics
As part of a drive to get robots into more workplaces, operating side by side with humans, a team of expert development engineers at NSK has come up with a novel way to improve the mobility of cobots.

Read more...
Future-proofing SMEs with cobots
Omron Electronics Robotics & Mechatronics
Many countries around the world are likely to experience skill shortages over the coming decade, especially technical specialists. At the same time, product lifecycles are becoming shorter. Collaborative robots are easy to set up, and offer a quick and cost-effective solution.

Read more...
Automating screw assembly using AI
Robotics & Mechatronics
Screw assembly is a key process in all production industries. In essence, it creates a secure connection between two or more parts, using one or more screws. What sounds simple is, in practice, extremely complex.

Read more...
Connecting robot accessories to any industrial or factory network
Robotics & Mechatronics
Robots need accessories to work efficiently. But what’s the easiest way to connect the accessories to factory networks? The easiest way is to use HMS Networks’ ready-made Anybus products, as RSP discovered.

Read more...
An innovative cobot
DNH Technologies Robotics & Mechatronics
The Franka Emika Production 3 is a highly innovative collaborative robot that is playing a key role in shaping the future of smart factories.

Read more...
How Danone SA pulled off its new automated palletising system
Yaskawa Southern Africa Editor's Choice Robotics & Mechatronics
When Yaskawa Southern Africa was contacted about Danone’s new automation project in Boksburg, the industrial robotics manufacturer teamed up with one of its preferred suppliers, Tectra Automation to offer a turnkey solution.

Read more...
Robot breaks world record
Editor's Choice Robotics & Mechatronics
An untethered robot invented at the Oregon State University (OSU) College of Engineering and manufactured by OSU spinout company, Agility Robotics, has established a Guinness World Record for the fastest ...

Read more...
Automated palletising system
Robotics & Mechatronics
Danone Boksburg sought a solution that would automate its manually operated palletising process. Tectra Automation was awarded the contract, and successfully designed, supplied, installed and commissioned ...

Read more...
First sanitisation robots in South Africa
Omron Electronics Robotics & Mechatronics
Patient and healthcare worker safety in South African hospitals is set to reach a new level of excellence with the launch of the revolutionary HERO21 robotic sanitisation system.

Read more...
How Toyota SA navigated severe flooding
Robotics & Mechatronics
On 18 April 2022, President Cyril Ramaphosa declared a national state of disaster when heavy rainfall led to severe flooding and landslides in KwaZulu-Natal, causing the death of 448 people and destroying ...

Read more...