Purdue Research Foundation (20240320393). BUILDING INFORMATION MODELING-BASED SIMULATION OF CONSTRUCTION ROBOTS IN WOOD FRAME ASSEMBLY PROCESS simplified abstract

From WikiPatents
Revision as of 06:01, 27 September 2024 by Wikipatents (talk | contribs) (Creating a new page)
(diff) ← Older revision | Latest revision (diff) | Newer revision → (diff)
Jump to navigation Jump to search

BUILDING INFORMATION MODELING-BASED SIMULATION OF CONSTRUCTION ROBOTS IN WOOD FRAME ASSEMBLY PROCESS

Organization Name

Purdue Research Foundation

Inventor(s)

Jiansong Zhang of West Lafayette IN (US)

Byung Cheol Min of West Lafayette IN (US)

Richard M. Voyles of West Lafayette IN (US)

Oscar Wong Chong of West Lafayette IN (US)

BUILDING INFORMATION MODELING-BASED SIMULATION OF CONSTRUCTION ROBOTS IN WOOD FRAME ASSEMBLY PROCESS - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240320393 titled 'BUILDING INFORMATION MODELING-BASED SIMULATION OF CONSTRUCTION ROBOTS IN WOOD FRAME ASSEMBLY PROCESS

Simplified Explanation: The patent application discusses methods and systems for simulating robotic construction processes using Building Information Modeling (BIM) technology.

  • Receiving a model design input that includes BIM design parameters or robotic system input parameters.
  • Generating a virtual simulation environment based on the model design input.
  • Simulating a construction process by a robotic system within the simulation environment.

Key Features and Innovation:

  • Integration of BIM technology with robotic construction processes.
  • Virtual simulation environment creation for testing construction processes.
  • Real-time simulation of robotic construction activities.

Potential Applications: This technology can be applied in various industries such as construction, architecture, and engineering for simulating and optimizing robotic construction processes.

Problems Solved:

  • Lack of efficient simulation tools for robotic construction processes.
  • Inability to test construction processes in a virtual environment.
  • Difficulty in optimizing robotic construction activities.

Benefits:

  • Improved efficiency and accuracy in robotic construction processes.
  • Cost savings through virtual testing and optimization.
  • Enhanced safety by identifying potential hazards in advance.

Commercial Applications: The technology can be used in the construction industry for planning, testing, and optimizing robotic construction processes, leading to increased productivity and cost-effectiveness.

Questions about Building Information Modeling (BIM) and Robotic Construction Simulation: 1. How does the integration of BIM technology enhance robotic construction processes? 2. What are the key advantages of simulating construction processes in a virtual environment?

Ensure the article is comprehensive, informative, and optimized for SEO with appropriate keyword usage and interlinking. Use varied sentence structures and natural language to avoid AI detection. Make the content engaging and evergreen by focusing on the lasting impact and relevance of the technology.


Original Abstract Submitted

methods and systems for performing building information modeling (bim)-based simulation of robotic construction processes comprise and/or implement receiving a model design input, the model design input including at least one of a bim design input parameter or a robotic system input parameter, generating a virtual simulation environment based on the model design input, and simulating a construction process by a robotic system in the simulation environment.