Abstract:
Proposed are an information transmission method and apparatus, and a storage medium and an electronic apparatus. The information transmission method includes: receiving a first Physical Sidelink Control Channel (PSCCH) or Physical Sidelink Shared Channel (PSSCH), and sending beam feedback information in response to the first PSCCH or PSSCH, wherein the beam feedback information is carried on at least one of: a Physical Sidelink Feedback Channel (PSFCH) resource corresponding to the first PSSCH; and at least one of following pieces of information of a sent second PSCCH or PSSCH: first-stage Sidelink Control Information (SCI-1) information, a Media Access Control-Control Element (MAC CE), and second-stage Sidelink Control Information (SCI-2) information.
Abstract:
A method and apparatus for controlling a network slice, and a computer-readable storage medium are disclosed. The method may include: binding a network slice established in a bearer network on a basis of a quality of service (QoS) requirement to a user network interface or a virtual sub-interface of the bearer network, where a plurality of network slices with different QoS are bound to different user network interfaces or virtual sub-interfaces, and when a first network slice of the bearer network and a network slice group of a non-bearer network are bound to a same user network interface or a same virtual sub-interface, QoS of the first network slice is same as QoS of the network slice group.
Abstract:
Provided are a sidelink resource determination method, a sidelink resource determination device, and a storage medium. The sidelink resource determination method is applied to a first node and includes determining (S710) a physical-layer candidate time and frequency resource set for sidelink transmission occasions from a sidelink resource pool according to system configuration information; and determining (S720) physical-layer time and frequency resources for sidelink transmission occasions from the physical-layer candidate time and frequency resource set. The physical-layer candidate time and frequency resource set does not include first resources occupying L consecutively indexed subchannels in the frequency domain, or includes second resources occupying L subchannels in the frequency domain, or does not include first resources occupying L consecutively indexed subchannels in the frequency domain and includes second resources occupying L subchannels in the frequency domain, where at least one pair of adjacent subchannels for the second resources are nonconsecutively indexed, and L denotes an integer greater than or equal to 1.
Abstract:
Provided are a beam determination method, a device, and a storage medium. The bean determination method applied to a first communication node includes: receiving configuration information sent by a second communication node; and determining, according to the configuration information, a beam used by the first communication node, where the configuration information includes at least one of the following: first configuration information, second configuration information, or third configuration information.
Abstract:
The present application discloses a method, an apparatus, a node, and storage medium for communicating a positioning reference signal of a communication node, the method comprising: determining a positioning reference signal PRS region by a first communication node; communicating a PRS signal in the PRS region by the first communication node; wherein the communicating comprises transmitting and/or receiving.
Abstract:
A grooming method and apparatus for a packet optical transport network are disclosed. The method includes: according to an arrangement order of various services, planning a path from a service source node to a service target node in an ith service in a topology set graph; when the path includes a wavelength link in a physical link, removing the wavelength link, and establishing a virtual link between a link source node and a link target node of the removed wavelength link; updating capacities of various links in the path; calculating a weight of a newly established virtual link, and adding the newly established virtual link and the corresponding weight to the topology set graph; and planning a path from a service source node to a service target node in an i+1th service in the topology set graph, until all services are finished.
Abstract:
Provided are a method, apparatus and system for controlling a focus on a television interface. The method includes that a remote control device generates a movement event and a corresponding movement path and notifies a TV controller, and the TV controller determines the location of a moved focus according to the movement event and the movement path. Through the technology for controlling a focus on a television interface, a button can be pressed for reduced times, the focus can be controlled in any direction conveniently, quickly and flexibly, and the user experience can be improved effectively.
Abstract:
A service bandwidth configuring method of is provided by this invention, which includes the following steps: defining various kinds of service classes according to the characteristics of various services provided by a network system; defining various kinds of bandwidth specifications of the network system; establishing the mapping relationships between the various kinds of service classes and various kinds of bandwidth specifications; and configuring the service bandwidth of the network system with the mapping relationships. Besides, this invention also provides a network management system. This invention is intended to be applied to the interfaces between NMS and EMS, or interfaces between EMS and NE, and it facilitates the intercommunication between the network management systems of different manufacturers, and the unified management on network management system or devices from different manufacturers by the upper layer network management system.
Abstract:
Provided are an information transmission method, an information transmission device, and a storage medium. The information transmission method, which is applied to a first communication node, includes: determining at least one second feedback slot mapped to a first feedback slot (S 110), where each of the at least one second feedback slot includes at least two feedback resource subsets; determining a candidate PSSCH transmission occasion corresponding to at least one feedback resource subset in each of the at least one second feedback slot (S120); and sending, in the first feedback slot, feedback information corresponding to the candidate PSSCH transmission occasion to a second communication node (S130).