Abstract:
A communication method in a frequency division duplex system is provided. The method includes a first terminal device that receives first dedicated signaling sent by a network device, and obtains a first configuration message. The first terminal device sends, based on the first configuration message, first information to the network device by using a second transmission frame structure, and receives second information that is sent by the network device by using the second transmission frame structure. The second transmission frame structure has a first fixed delay relative to a first transmission frame structure, and the first transmission frame structure is a frame structure that is used by a second terminal device to send third information to the network device and that is used by the network device to send fourth information to the second terminal device.
Abstract:
A communications method, device, and system in a mobile backhaul transport network are used to resolve a problem in the prior art that communication security in a backhaul transport network cannot be ensured in an LTE scenario. A first network node sends a request message to a control server in the mobile backhaul transport network, where the request message is used to request security information of a second network node in the mobile backhaul transport network; the first network node receives the security information of the second network node, which is returned by the control server; the first network node establishes a secure tunnel with the second network node according to the security information of the second network node to perform communication. This enables two network nodes in a mobile backhaul transport network to perform secure communication and ensures security of communication between network nodes.
Abstract:
This application provides a system message processing method and apparatus. A terminal receives a master information block (MIB), and obtains indication information. The indication information indicates a type of the MIB. In this way, the terminal can process the MIB based on the type of the MIB. In other words, in embodiments of this application, the terminal may decode the MIB based on the type of the MIB. Therefore, the following case is avoided: The MIB is decoded in a fixed manner, and consequently, the MIB cannot be accurately parsed. In this way, communication efficiency is improved.
Abstract:
The present disclosure discloses example communications methods and apparatuses. One example method includes obtaining effective carrier indication information from a network device. An effective carrier frequency is obtained based on the effective carrier indication information, where the effective carrier indication information includes first information, second information, and third information. The first information includes first indication information, second indication information, or third indication information. The first indication information is used to indicate that carriers are not paired, the second indication information is used to indicate that carriers are paired, the third indication information is used to indicate a paired carrier frequency spacing, the second information is used to indicate a start carrier frequency, and the third information is used to indicate a frequency domain location of an effective carrier relative to a start carrier.
Abstract:
This present disclosure discloses example communication methods and communications apparatuses. One example communication method includes a terminal device determining a first offset of a first power class and a second offset of the first power class when a power class of the terminal device is the first power class. A compensation amount of the first power class is determined based on the first offset and the second offset. A determination as to whether to camp on a first cell is made based on the second offset and the compensation amount of the first power class.