Abstract:
A grounding structure is described in an embodiment of the present disclosure, which is applied to a rotary wireless access terminal, the wireless access terminal at least includes that: a structural part, as well as a main board and metal rotating shaft, which are arranged in the structural part, of the wireless access terminal, the metal rotating shaft is connected with an external interface of the wireless access terminal, wherein the grounding structure includes a metal dome and an insulating film; and one end of the metal dome is connected with the metal rotating shaft, while the other end is coupled to ground on the main board through the insulating film. A rotary wireless network card based on the above grounding structure is also described in an embodiment of the present disclosure. By the technical solutions of the embodiment of the present disclosure, an interference loop effect formed by a radio frequency current flowing through the main board may be effectively eliminated, the problem of poor low-frequency performance of a built-in antenna is effectively solved, and sensitivity of a low-frequency antenna is improved.
Abstract:
A method and apparatus for configuring and detecting information integrity, and for discovering fake base stations is disclosed. In one embodiment, a method for authenticating a first wireless communication, includes: transmitting a first message from a first unit of the first wireless communication node to a second unit of the first wireless communication node, wherein the first message comprises first integrity information of at least one first information block in a system message configured by the first unit; receiving a second message by the first unit of the first wireless communication node from the second unit of the first wireless communication node, wherein the second message comprises second integrity information of at least one second information block in the system message configured by the second unit; and transmitting a third message from the first wireless communication node to a wireless communication device.
Abstract:
The present disclosure discloses a method for configuring a General Packet Radio Service Tunneling Protocol (GTP) transmission channel, including: acquiring, by a User Plane Centralized Unit (CU-U) responsible for user plane data in a first network element, session related information through an Xn interface, where the Xn interface is an interface between the CU-U and a Control Plane Centralized Unit (CU-C) responsible for control plane data in the first network element; performing a GTP transmission channel configuration by using the session related information; transmitting first related information of a local GTP transmission channel configuration to a second network element; and receiving second related information of a GTP transmission channel configuration transmitted by the second network element. The present disclosure also discloses an apparatus for configuring a GTP transmission channel.
Abstract:
An example technique for communicating transmission delay includes receiving, at a first communication node, delay information from a second communication node for data packets transmitted from the second communication node to the first communication node, determining, by the first communication node, a transmission delay of the data packets based on the delay information, receiving, at the first communication node, a first message from a third communication node requesting the transmission delay of the data packets; and transmitting, from the first communication node in response to the first message, a second message to the third communication node, the second message including the transmission delay for the data packets.
Abstract:
The embodiments of the present document provide a method and apparatus for receiving system information. The method includes: a UE receiving system information and/or system information updating indication of a serving cell and/or a neighboring cell according to system configuration, including: receiving the system information and/or the system information updating indication of the serving cell and/or the neighboring cell from other locations except a fixed location configured by the system. By using the method and the apparatus provided by the embodiments of the present document, the user terminal can receive the system information from other locations except the fixed location configured by the system, thereby solving the problem in the related art that the user terminal cannot obtain the system information due to interference in the system information at the fixed location.
Abstract:
Disclosed is an antenna system, comprising: more than two antennas and a left-handed material isolation layer. The left-handed material isolation layer is disposed between adjacent two antennas in the more than two antennas in a suspended manner. By using the antenna system provided in the present utility model, a coupling effect between antennas can be weakened through the left-handed material isolation layer, thereby improving the isolation between antennas.
Abstract:
A method and an apparatus for processing measurement between network systems are provided. The method comprises: a UE receives measurement information configured by a first mode network, wherein the measurement information is information used by the UE to perform measurement on the first mode network in a second mode network; and after the UE is switched or reselected to the second mode network, the UE performs measurement on the first mode network according to the measurement information. It is solved the problem that in the related art poor user experience is caused because measurement cannot be performed on another network in one network and normal user service cannot be performed, while through the disclosure, so that measurement can be performed on another network in one network, thereby accelerating the measurement speed, shortening the cell reselection delay, and improving the effect of user experience.
Abstract:
A method and apparatus for a Minimization of Drive Tests (MDT) for delay-critical services is disclosed. In one embodiment, a method for performing a Minimization of Driver Test (MDT) by a first wireless communication node, includes: receiving a first message from a second wireless communication node; and determining at least one of the following: a data packet discard rate and a packet discard delay according to the first message, wherein the first message comprises a MDT configuration, wherein the MDT configuration indicates a measurement of at least one of the following: the data packet discard rate and the packet discard delay, wherein the MDT configuration comprises at least one of the following: a measurement period and a first Packet Delay Budget (PDB).
Abstract:
Provided are an interference control method and apparatus, a response message sending method and apparatus, a response message forwarding method and apparatus, a communication device, and a communication system. A reference signal sent by a victim base station carries an addressing identifier. The addressing identifier corresponds to route information of a victim node set. Thus, when an aggressor base station monitors the reference signal, an aggressor node set may send a response message to the victim node set according to the addressing identifier, so that the victim base station in the victim node set can respond to the message to determine that the aggressor base station has received the reference signal sent by the victim base station.
Abstract:
Provided in the present disclosure are an antenna, an antenna power supply method, a single-feeding-based method for combining antennas, and a terminal. The antenna comprises: a low-frequency antenna, a high-frequency antenna, and a filter. The filter is provided between the low-frequency antenna and the high-frequency antenna and isolates the low-frequency antenna and the high-frequency antenna. The low-frequency antenna and the high-frequency antenna use the same feeding point for feeding.