Abstract:
Provided in the present disclosure are a detection method and system for a base station feeder line, and a related apparatus. The method includes: storing, by an image acquisition terminal, a collected feeder line image of a base station to be detected and an identifier of the corresponding base station to be detected in correspondence; and searching for and acquiring, by an image processing terminal, a target feeder line image according to a detection request, performing image preprocessing on the target feeder line image to convert the target feeder line image into a feature grayscale image, comparing the obtained feature grayscale image with a standard feeder line feature grayscale image, and determining, according to a comparison result, whether a feeder line of a target base station to be detected is correctly installed.
Abstract:
Provided are an architecture, method and apparatus for realizing communication between network functions. An interworking interface between the network function and a selected interface function which is in the same communication domain with the network function is identical to an interworking interface between the network function and a destination network function which is in the same communication domain with the network function. With the architecture, the network function and the interface function are decoupled. The network function can realize the interworking with the network function inside the communication domain as well as the interworking with a destination network function outside the communication domain by only one type of interworking interface, so that the logic of the network functions becomes simple, thereby simplifying the design of the network functions and greatly reducing the development and deployment difficulties of the network functions.
Abstract:
Embodiments of the present disclosure disclose a Physical Uplink Control Channel (PUCCH) resource allocation method, a network side device and a communications system, wherein the method includes: when a new user equipment (UE) access a cell in a case that idle PUCCH resources of the cell are insufficient or all PUCCH resources of the cell are fully occupied, determining a preempted UE among UEs already accessing the cell; allocating PUCCH resources of the preempted UE to the new UE, reconfiguring the preempted UE and notifying the preempted UE to release the PUCCH resources.