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A Robot that Navigates Like a Person

A new robot navigates using humanlike visual processing and object detection.

By Anne-Marie Corley

Tuesday, June 30, 2009

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European researchers have developed a robot capable of moving autonomously using humanlike visual processing. The robot is helping the researchers explore how the brain responds to its environment while the body is in motion. What they discover could lead to machines that are better able to navigate through cluttered environments.

Future vision: This robot navigates using input from two cameras that serve as "eyes" in a movable "head."
Credit: Antonio Frisoli

The robot consists of a wheeled platform with a robotic "head" that uses two cameras to capture stereoscopic vision. The robot can turn its head and shift its gaze up and down or sideways to gauge its surroundings, and can quickly measure its own speed relative to its environment.

The machine is controlled by algorithms designed to mimic different parts of the human visual system. Rather than capturing and mapping its surroundings over and over in order to plan its route--the way most robots do--the European machine uses a simulated neural network to update its position relative to the environment, continually adjusting to each new input. This mimics human visual processing and movement planning.

Mark Greenlee, the chair for experimental psychology at Germany's University of Regensburg and the coordinator of the project, says that computer models of the human brain need to be validated by experiment. The robot mimics several different functions of the human brain--object recognition, motion estimation, and decision making--to navigate around a room, heading for specific targets while avoiding obstacles and walls.

Ten different European research groups, each with expertise in fields including neuroscience, computer science, and robotics, designed and built the robot through a project called Decisions in Motion. The group's challenge was to pull together traditionally disparate fields of neuroscience and integrate them into a "coherent model architecture," says Heiko Neumann, a professor at the Vision and Perception Lab at the University of Ulm, in Germany, who helped develop the algorithms that control the robot's motion.

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Normally, Neumann says, neuroscientists focus on a particular aspect of vision and motion. For example, some study the "ventral stream" of the visual cortex, which is related to object recognition, while others study the "dorsal stream," related to motion estimation from the environment, or "optic flow." Still others study how the brain decides to move based on input from both the dorsal and ventral streams. But to develop a real, humanlike computer model for navigation, the researchers needed to incorporate all these aspects into one system.

To do this, Greenlee's team started by studying fMRI brain images captured while people were moving around obstacles. The researchers passed on the findings to Neumann's group, which developed algorithms designed to mimic the brain's ability to detect the body's motion, as well as that of objects moving through in the surrounding environment. The researchers also incorporated algorithms developed by participant Simon Thorpe of the French National Center for Scientific Research (CNRS). Thorpe's SpikeNet software uses the order of neuron firing in a neural network to simulate how the brain quickly recognizes objects, rather than a more traditional approach based on neuron firing rate.

Comments

  • Nice Article
    I am glad to see AI research finally take a decisive step away from the flawed symbolic and logic-based approaches to AI of the last century. At the same time, I hope these AI scientists also incorporate into their own research some of the excellent psychological discoveries in behavioral learning and memory that occurred in the last fifty years.

    Now, if these researchers are willing to use their newest findings to at least attempt to formulate a comprehensive theory of the brain and intelligence, that would really be money well spent.
    Rate this comment: 12345

    Mapou
    06/30/2009
    Posts:65
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    2/5
  • Strawman
    No one serious in "AI" has been doing symbolic systems in logic for more than a decade. Rather, the field has moved to machine learning, probabilistic representations and for robotics, better sensors that have done things like win the Darpa Grand Challenge race across the desert, give reasonable search in Google, good image retrieval in Bing and allowed airlines to fly mostly full.

    The article might be great work for testing theories of human intelligence, but maybe not so good for robotics, just read what it said:
    " Robots that navigate using more conventional methods may be more efficient and reliable, says Antonio Frisoli "

    That is, AI is already working better for navigation than this human centric approach. You can also see work by Willow Garage where a robot recently went 26 miles (a marathon) through an office environment navigating around chairs and people. It then followed this by 1 hour in which the robot had to find and plug in to 10 electrical outlets opening doors as needed along the way  
    http://www.willowgarage.com/blog/2009/06/03/watch-milestone-2
    Rate this comment: 12345

    GaryB
    06/30/2009
    Posts:64
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    4/5
  • Re: Strawman
    Well, don't tell this to the Cyc fanatics.

    That is, AI is already working better for navigation than this human centric approach.

    Better than other robots, certainly. Use this approach to replace cab drivers in NYC and all hell will break loose, I guarantee it. This does not mean that the human-centric approach is not the right approach. We have humans as existence proof that it works extremely well. It only means that researchers still don't know how humans do it. We need more research and more funding in this area.
    Rate this comment: 12345

    Mapou
    06/30/2009
    Posts:65
    Avg Rating:
    2/5
  • Great Stuff
    I hope they make this, open source, so kids today can now upgrade their robots with this software and take it one more step to the next advance phase. Come on we need a jump start to compete with the genius of Japan engineers.
    Rate this comment: 12345

    megaknowledg...
    07/01/2009
    Posts:1
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    4/5

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