18575670. AUTOMATED CALIBRATION OF A PRODUCTION MACHINE simplified abstract (Siemens Aktiengesellschaft)

From WikiPatents
Revision as of 06:27, 1 October 2024 by Wikipatents (talk | contribs) (Creating a new page)
(diff) ← Older revision | Latest revision (diff) | Newer revision → (diff)
Jump to navigation Jump to search

AUTOMATED CALIBRATION OF A PRODUCTION MACHINE

Organization Name

Siemens Aktiengesellschaft

Inventor(s)

Carsten Hamm of Eggolsheim (DE)

AUTOMATED CALIBRATION OF A PRODUCTION MACHINE - A simplified explanation of the abstract

This abstract first appeared for US patent application 18575670 titled 'AUTOMATED CALIBRATION OF A PRODUCTION MACHINE

Simplified Explanation:

The patent application describes a production machine system with multiple axes and drives that adjust machine elements relative to each other along an axis. The system includes a control facility, a model of the machine element, measuring equipment, analysis equipment, and correction equipment to optimize the movement of the machine element.

  • The production machine system has multiple axes and drives that adjust machine elements along an axis.
  • The system includes a control facility that manages the movement of the machine elements.
  • A model of the machine element is stored in the control facility, with a model parameter for optimization.
  • Measuring equipment determines the path of a specific point on the machine element during movement.
  • Analysis equipment analyzes the path, and correction equipment adjusts the model parameter based on the analysis.

Key Features and Innovation:

  • Control facility manages the movement of machine elements for precise adjustments.
  • Model of the machine element is stored for optimization.
  • Measuring equipment tracks the path of a specific point on the machine element.
  • Analysis equipment ensures accuracy in movement.
  • Correction equipment adjusts the model parameter for improved performance.

Potential Applications:

  • Manufacturing processes requiring precise movement and adjustments.
  • Automation systems in various industries.
  • Robotics for complex tasks.
  • Quality control in production lines.
  • Research and development for innovative technologies.

Problems Solved:

  • Inaccurate movement of machine elements.
  • Lack of precision in manufacturing processes.
  • Difficulty in optimizing machine performance.
  • Limited control over complex systems.
  • Challenges in maintaining consistency in production.

Benefits:

  • Improved accuracy in machine movement.
  • Enhanced precision in manufacturing processes.
  • Optimized performance of production machines.
  • Increased control over complex systems.
  • Consistent and reliable production output.

Commercial Applications:

Precision Control System for Manufacturing Processes

This technology can be applied in industries such as automotive, aerospace, electronics, and pharmaceuticals for precise manufacturing processes. The system offers enhanced control over production machines, leading to improved efficiency and quality in the manufacturing process.

Questions about Production Machine System:

1. How does the control facility optimize the movement of machine elements? 2. What are the potential applications of this technology in different industries?

Frequently Updated Research:

Ongoing research focuses on enhancing the accuracy and efficiency of production machine systems through advanced control algorithms and sensor technologies. Stay updated on the latest developments in precision control systems for manufacturing processes.


Original Abstract Submitted

A production machine system includes a production machine having multiple axes and drives. Each drive adjusts a machine element relative to a further machine element with respect to an axis. The machine elements separate the drives from each other, with the drives and the machine elements forming a kinematic chain. A control facility controls the drives to move the machine element relative to the further machine element. A model of the machine element is stored in the control facility and comprises a model parameter of the machine element. A measuring equipment determines a path describing a specific point assigned to the machine element during movement of the machine element. An analysis equipment analyzes the specific path and a correction equipment corrects the model parameter based on the analysis result. To determine the specific path, several, in particular all axes are moved successively starting from a base along the kinematic chain.