Princeton Vision Robotics Group

3D Deep Learning for Object Recognition in Amazon Picking Challenge. Deep Sliding Shapes for Amodal 3D Object Detection in RGB-D Images. DeepDriving Learning Affordance for Direct Perception in Autonomous Driving. Princeton Robot Wanderer learns by exploring the environment curiously with a powerful GPU. 3D ShapeNets A Deep Representation for Volumetric Shapes. Next Best View Selection for Active Object Recognition on a Robot Platform. A minimalist GPU-only N-dimensional ConvNet framework. Focusing on .

OVERVIEW

The web site robots.princeton.edu presently has a traffic ranking of zero (the smaller the more traffic). We have inspected five pages inside the web site robots.princeton.edu and found two websites referencing robots.princeton.edu. I unearthed two public network platforms enjoyed by robots.princeton.edu.
Pages Crawled
5
Links to this site
2
Social Links
2

ROBOTS.PRINCETON.EDU TRAFFIC

The web site robots.princeton.edu is seeing diverging quantities of traffic until the end of the year.
Traffic for robots.princeton.edu

Date Range

1 week
1 month
3 months
This Year
Last Year
All time
Traffic ranking (by month) for robots.princeton.edu

Date Range

All time
This Year
Last Year
Traffic ranking by day of the week for robots.princeton.edu

Date Range

All time
This Year
Last Year
Last Month

LINKS TO DOMAIN

WHAT DOES ROBOTS.PRINCETON.EDU LOOK LIKE?

Desktop Screenshot of robots.princeton.edu Mobile Screenshot of robots.princeton.edu Tablet Screenshot of robots.princeton.edu

ROBOTS.PRINCETON.EDU SERVER

Our parsers found that the main page on robots.princeton.edu took one thousand and sixty-three milliseconds to download. Our parsers could not observe a SSL certificate, so I consider robots.princeton.edu not secure.
Load time
1.063 secs
SSL
NOT SECURE
Internet Protocol
128.112.136.74

SERVER OS AND ENCODING

We revealed that robots.princeton.edu is weilding the Apache/2.2.15 (Red Hat) operating system.

HTML TITLE

Princeton Vision Robotics Group

DESCRIPTION

3D Deep Learning for Object Recognition in Amazon Picking Challenge. Deep Sliding Shapes for Amodal 3D Object Detection in RGB-D Images. DeepDriving Learning Affordance for Direct Perception in Autonomous Driving. Princeton Robot Wanderer learns by exploring the environment curiously with a powerful GPU. 3D ShapeNets A Deep Representation for Volumetric Shapes. Next Best View Selection for Active Object Recognition on a Robot Platform. A minimalist GPU-only N-dimensional ConvNet framework. Focusing on .

PARSED CONTENT

The web site had the following on the homepage, "3D Deep Learning for Object Recognition in Amazon Picking Challenge." We noticed that the web site said " Deep Sliding Shapes for Amodal 3D Object Detection in RGB-D Images." It also said " DeepDriving Learning Affordance for Direct Perception in Autonomous Driving. Princeton Robot Wanderer learns by exploring the environment curiously with a powerful GPU. 3D ShapeNets A Deep Representation for Volumetric Shapes. Next Best View Selection for Active Object Recognition on a Robot Platform. A minimalist GPU-only N-dimensional ConvNet framework."

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