Abstract:
A method and circuit for mitigating RFI in an electronic device that occurs while the device is in a low power mode utilizes one or more antenna elements in the device to receive RF energy. When the RF energy is sufficiently high that it could affect signal states in the device while in the low power mode, the device transitions from the low power mode to an active mode and begins an RFI mitigation process to ensure signal states and other circuit operations in the device are not changed by the RFI.
Abstract:
An image processor provides a combined image of an object from first and second cameras. The image processor receives a first image from a first camera and a second image from a second camera. The first and second images each include a field of view and metadata associated with the image. The image processor determines whether a combined image of the first and second images will be viewed by a person or a machine. If the combined image is to be processed by a machine, the first and second metadata are included with the combined image and sent to the machine. If the combined image is to be viewed by a person, the combined image includes a subset of the metadata so that the image is not too large or too cluttered.
Abstract:
In order to improve radio-frequency (RF) coverage along a route to/from an incident, a method and apparatus for autonomous dispatching of network equipment is provided herein. During operation, a route to/from an incident scene will be determined. RF coverage, and or the load level of the equipment along the route will be determined, and a determination whether or not adequate coverage/capacity will be provided to vehicles along the route is made. A base station will be dispatched along the route based on a determination if equate coverage/capacity will be provided to vehicles traveling along the route.