Abstract:
A system for detecting a gas cloud has a camera having an image sensor, a display device and a processor. The processor is in communication with both the image sensor and the display device. The image sensor is configured to capture a plurality of images of a field of view. The processor being configured to receive the plurality of images from the camera, generate metadata from the plurality of images, evaluate the gas cloud based on the metadata and the internal component movements of the gas cloud if the gas cloud is being emitted from a single leakage point, and generate a color encoded image of the field of view. The color encoded image utilizing at least one color to display at least one attribute of the gas cloud and the single leakage point on the display device.
Abstract:
A system and method for automated analytic characterization of scene image data includes at least one image sensor, a processor, and a communication device in communication with the processor. The at least one image sensor is configured to capture image data of a field of view. The image data includes a plurality of image frames, the processor is configured to receive the image data from the at least one image sensor; detect object, region, and sequence information in each image frame, construct metadata of the image data based on a detected object, region, and sequence information in each image frame, and transmit to the central served the metadata.
Abstract:
A method and system for tracking a subject through an environment that includes collecting visual data representing a physical environment from a plurality of cameras; processing the visual data; constructing a model of the environment from the visual data; and cooperatively tracking a subject in the environment with the constructed model and processed visual data.
Abstract:
According to one embodiment, a controller for a surveillance system includes ports for coupling a camera, synchronization logic blocks coupled to the ports, an information aggregation logic block coupled to the camera ports, and an output port coupled to the information aggregation logic block. According to another embodiment, a method of scaling a surveillance system includes synchronizing a plurality of cameras, capturing images from the synchronized cameras, aggregating at least two processed synchronized images, and processing the aggregated synchronized images.
Abstract:
According to one embodiment, a controller for a surveillance system includes ports for coupling a camera, synchronization logic blocks coupled to the ports, an information aggregation logic block coupled to the camera ports, and an output port coupled to the information aggregation logic block. According to another embodiment, a method of scaling a surveillance system includes synchronizing a plurality of cameras, capturing images from the synchronized cameras, aggregating at least two processed synchronized images, and processing the aggregated synchronized images.