Abstract:
A system may include audio devices that output sound waves. The system also includes a control system having a processor. The control system may receive a first plurality of operation parameters associated with a plurality of components in an industrial automation system from one or more sensors. The control system may also determine a plurality of audio tones based on the plurality of operation parameters. Further still, the control system may send one or more control signals to one or more audio devices in response to detecting the plurality of operation parameters, wherein the one or more audio devices are configured to produce the plurality of audio tones in response to receiving of the one or more control signals.
Abstract:
For emphasizing equipment based on an equipment tag, a processor receives a given equipment reference code for a given equipment instance. The processor further identifies one or more equipment tags in the image. Each equipment tag corresponds to a unique equipment reference code. The processor identifies a given equipment tag corresponding to the given equipment reference code in the image. In addition, the processor emphasizes the given equipment instance in the image presented on the display.
Abstract:
An industrial visualization system generates and delivers virtual reality (VR) and augmented reality (AR) presentations of industrial facilities to wearable appliances to facilitate remote or enhanced interaction with automation systems within the facility. VR presentations can comprise three-dimensional (3D) holographic views of a plant facility or a location within a plant facility. The system can selectively render a scaled down view that renders the facility as a 3D scale model, or as a first-person view that renders the facility as a full-scale rendition that simulates the user's presence on the plant floor. Camera icons rendered in the VR presentation can be selected to switch to a live video stream generated by 360-degree cameras within the plant. The system can also render workflow presentations that guide users through the process of correcting detected maintenance issues.
Abstract:
For emphasizing equipment based on an equipment tag, a processor receives a given equipment reference code for a given equipment instance. The processor further identifies one or more equipment tags in the image. Each equipment tag corresponds to a unique equipment reference code. The processor identifies a given equipment tag corresponding to the given equipment reference code in the image. In addition, the processor emphasizes the given equipment instance in the image presented on the display.
Abstract:
For emphasizing equipment based on an equipment tag, a processor receives a given equipment reference code for a given equipment instance. The processor further identifies one or more equipment tags in the image. Each equipment tag corresponds to a unique equipment reference code. The processor identifies a given equipment tag corresponding to the given equipment reference code in the image. In addition, the processor emphasizes the given equipment instance in the image presented on the display.
Abstract:
An industrial visualization system generates and delivers virtual reality (VR) and augmented reality (AR) presentations of industrial facilities to wearable appliances to facilitate remote or enhanced interaction with automation systems within the facility. VR presentations can comprise three-dimensional (3D) holographic views of a plant facility or a location within a plant facility. The system can selectively render a scaled down view that renders the facility as a 3D scale model, or as a first-person view that renders the facility as a full-scale rendition that simulates the user's presence on the plant floor. Camera icons rendered in the VR presentation can be selected to switch to a live video stream generated by 360-degree cameras within the plant. The system can also render workflow presentations that guide users through the process of correcting detected maintenance issues.
Abstract:
For emphasizing equipment based on an equipment tag, a processor receives a given equipment reference code for a given equipment instance. The processor further identifies one or more equipment tags in the image. Each equipment tag corresponds to a unique equipment reference code. The processor identifies a given equipment tag corresponding to the given equipment reference code in the image. In addition, the processor emphasizes the given equipment instance in the image presented on the display.
Abstract:
The present disclosure generally relates to a method for performing industrial automation control in an industrial automation system. The method may include detecting, via a sensor system, positions and/or motions of a human. The method may then determine a possible automation command corresponding to the detected positions and/or motions, receive an automation system signal from at least one additional control component, and implement a control and/or notification action based upon the determined possible automation command and the received automation system signal.
Abstract:
The present disclosure generally relates to a method for performing industrial automation control may include detecting, via a sensor system, positions and/or motions of a human in an industrial automation system, determining at least one derivative value from the detected positions and/or motions, and determining a possible automation command and an undesirable condition based upon the detected positions and/or motions and the at least one derivative value. The method may then include implementing a control and/or notification action based upon the determined possible automation command and the undesired condition.