Back to Results
First PageMeta Content
Science / Planning Domain Definition Language / State space / Mathematical model / Discretization / State variable / LTI system theory / Automated planning and scheduling / State observer / Mathematics / Control theory / Applied mathematics


A Planning Based Framework for Controlling Hybrid Systems Johannes L¨ohr, Patrick Eyerich, Thomas Keller and Bernhard Nebel Albert-Ludwigs-Universit¨at Freiburg Institut f¨ur Informatik Georges-K¨ohler-Allee[removed]
Add to Reading List

Document Date: 2012-05-24 11:02:21


Open Document

File Size: 546,63 KB

Share Result on Facebook

City

Berlin / Williams / London / Boston / /

Company

Fault-Diagnosis Systems / Autonomous Systems / Reactive Self-Configuring Systems / Nob Hill Publishing / AAAI Press / /

/

Facility

Plant Logic / Harvard University / /

IndustryTerm

hybrid dynamic systems / active equipment / satellite switches / affine systems / feature early numeric planning systems / inhomogeneous solutions / homogeneous solution / planning algorithms / linear time invariant systems / inhomogeneous solution / hybrid systems / realistic applications / search space / continuous dynamic systems / exemplary dynamic systems / search depth / /

Organization

Graduate School / Bernhard Nebel Albert-Ludwigs-Universit¨at Freiburg Institut f¨ur Informatik Georges-K¨ohler-Allee / Harvard University / Association for the Advancement / Division of Research / German Aerospace Center / /

Person

Della Penna / Temporal Fast / Patrick Eyerich / Anthony / Ai / John Wiley / Temporal Fast Downward / Bernhard Nebel / Thomas Keller / /

/

Position

R. N. / vp / planner for optimization / straight forward / numeric planner / user Interpreter / domain model / planner / /

ProgrammingLanguage

MATLAB / /

ProvinceOrState

New Jersey / M. B. / British Columbia / /

PublishedMedium

Journal of Artificial Intelligence Research / /

TVStation

Wis / /

Technology

artificial intelligence / simulation / /

URL

www.aaai.org / /

SocialTag