Abstract:
A method for relaying radio communication in a moving object is provided. The method includes previously defining a radio map made by databasing information on a radio environment of a preset area; comparing current position information and moving direction information of the moving object with data in the radio map; and adjusting, according to the comparison result, an antenna for a relay mounted on the moving object so as to always face a serving base station now in service, or to face a direction in which a signal from the serving base station is best received.
Abstract:
A Base Station (BS) antenna in a mobile communication system is provided, in which a reflective plate has a frontal surface onto which radiation elements are attached, and at least one protector is attached onto the reflective plate, surrounding at least part of the reflective plate.
Abstract:
A switchable combiner/divider with multiple inputs/outputs is provided. The switchable combiner/divider with multiple inputs/outputs includes multiple input ports for receiving multiple incoming signals, multiple output ports, a switching part for alternately connecting the multiple input ports to output ports as a circulating configuration, and a controller for providing switching control signals to the switching part.
Abstract:
In the wireless communication base station sharing apparatus, a first signal combiner/distributor is connected to a main system duplexer through a first port, distributes a signal received through the first port to second and third ports, combines the signals received through the second and third ports according to the phases of the signals, and provides the combined signal through the first port or a fourth port. A second signal combiner/distributor is connected to a subsystem duplexer through a fifth port and the antenna through an eighth port, distributes a signal received through the fifth port to sixth and seventh ports, combines the signals received through the sixth and seventh ports according to the phases of the signals, and provides the combined signal through the fifth or eighth port. Variable filters are provided in signal paths between the first and second signal combiner/distributors.
Abstract:
Disclosed herein is an antenna beam control apparatus for steering a horizontal azimuth angle or horizontal beam width of base transceiver station antennas. The apparatus comprises at least one antenna reflection plate, rotation means for rotating the antenna reflection plate, plural driving means for driving the rotation means, driving control means for controlling the driving means according to external control signals, and a radome containing the antenna reflection plate and all the above means therein.
Abstract:
Disclosed is a high power LED lighting device. The high power LED lighting device includes: a substrate on which a plurality of LED groups, each of which including a plurality of LEDs in a row direction, is arranged in a column direction and the LED groups have a wider distance therebetween than that between the LEDs belonging to each LED group; a plurality of reflection units which are located between the LED groups on a front surface of the substrate and reflect lights emitted from the LED groups to form light distribution; and a heat radiation unit attached to a rear surface of the substrate to radiate heat. In the high power LED lighting device, the LEDs are arranged to be advantageous for radiating heat so that a distance between the LED devices may be reduced in a transverse direction so as to minimize an area, and a desired distance of the LED devices is maintained in a longitudinal direction. Accordingly, the area of the LED lighting device of relatively large capability can be reduced.
Abstract:
Various multi-mode resonant filters including a housing having a cavity, are provided. The multi-mode resonant filters include a Dielectric Resonant (DR) element received in the cavity of the housing, and a plurality of transmission lines for connecting a point on one of a first axis, a second axis, and a third axis with a point on another axis. The first axis, the second axis, and the third axis are orthogonal to each other with respect to a center of the DR element.
Abstract:
A system for controlling a mobile communication antenna is provided, which includes a plurality of antenna systems each installed in a BS, and a remote control system for monitoring and controlling the plurality of antenna systems. In each of the antenna systems, an antenna module includes a radiation plate and a radiation device for transmitting and receiving radio signals for a mobile communication service, a sensor unit senses the inclination and horizontal rotation of the antenna module, a transceiver transmits data sensed by the sensor unit to the remote control system and receives a control signal from the remote control system, and a controller controls an operation of the antenna system according to the remote control signal received from the transceiver. In the remote control system, a BS monitoring information DB server accumulates the sensed data received from the plurality of antenna systems on a BS basis and an antenna system basis, and a remote control center outputs control signals to the antenna systems to monitor the antenna systems remotely.
Abstract:
An enclosure device of a wireless communication apparatus, which has a tubular structure with increased heat dissipation not unknown heretofore. A section of the enclosure device has a polygonal or circular shape, such as a substantially cylindrical structure, and the enclosure, which has a plurality of radiation fins arranged on an outer surface of the enclosure in a vertical direction, is formed integrally with the radiation fins by using a compression method. Various communication devices of the wire communication apparatus are mounted on the interior of the enclosure. The structure is preferably formed by the radiation fins and exhibits an increased radiation effect than that of a structure where radiation fins are arranged side by side on a flat plane.
Abstract:
A system for providing image information using mobile communication BS antennas is provided, in which each of a plurality of mobile communication BS antennas has a camera module for capturing a full area where the camera module is installed and transmits BS image information captured by the camera module to a remote control system, the remote control system has a BS image DB server and stores the BS image information received from the plurality of mobile communication BS antennas on a BS basis and on an antenna basis in the BS image DB server, and a service server receives the BS image information from the BS image DB server and provides the BS image information to a user terminal.