Abstract:
Provided in embodiments of the present application are an information transmission method, a terminal device, and an access network device. The information transmission method provided in the embodiments of the present application may comprise: a terminal device determines that N pieces of UCI need to be transmitted in a same time unit, N being an integer greater than or equal to 2, the N pieces of UCI comprising at least one of the following: beamforming information, buffer state report information, and scheduling request information; the terminal device transmits M pieces of UCI to an access network device on the basis of priorities of the N pieces of UCI; the priorities of the M pieces of UCI being greater than the priorities of the other N – M pieces of UCI of the N pieces of UCI, and M being a positive integer less than or equal to N. The embodiments of the present application effectively prevent a conflict in reporting the UCI, ensure the success rate of reporting the UCI, and effectively ensure data transmission performance and service demand.
Abstract:
Disclosed in the embodiments of the present invention are a method for controlling a smart watch, and a smart watch, a plurality of capacitive touch control sensors being arranged around the periphery of the dial of the smart watch; the method comprises: acquiring a calibration capacitance value of each of the capacitive touch control sensors; on the basis of the maximum value of the calibration capacitance values of the N capacitive touch control sensors, determining the number of touch control points, each touch control point corresponding to a capacitive touch control sensor; on the basis of the calibration capacitance value of the capacitive touch control sensor corresponding to each touch control point, and the calibration capacitance value of the capacitive touch control sensors adjacent to said capacitive touch control sensor, determining the position of the touch control point; and executing a control command matching the number of touch control points and the position of the touch control points. The technical solution provided in the embodiments of the present invention can increase the control points in a smart watch, shortening the path-finding for control commands in the smart watch, simplifying operating procedures, and increasing the operating efficiency of the smart watch.
Abstract:
The present invention relates to the technical field of electronics. Disclosed are an earphone jack and method for detecting whether an earphone is inserted in place. The earphone jack comprises side walls, a bottom portion, holding elements located on the side walls, a first detection end located at the bottom portion, a second detection end located on the side wall or at the bottom portion, and a thin film switch electrically connected to the second detection end, wherein the holding elements are configured to hold an earphone plug when the earphone plug is inserted in the earphone jack. When the earphone plug is not inserted in place, the thin film switch is electrically insulated from the first detection end. The thin film switch is configured to, when the earphone plug is inserted in place, undergo an elastic deformation under pressure of the earphone plug, be electrically connected to the first detection end to enable the first detection end to be electrically connected to the second detection end, and change an electrical characteristic between the first detection end and the second detection end so as to indicate that the earphone plug is inserted in place in the earphone jack.
Abstract:
A method and apparatus for selecting a text, the method comprising: when detecting a joint touch gesture acting on a touch sensitive surface, recognizing whether a user interface displayed by a display is a text application interface; if the user interface displayed by the display is a text application interface, and the trajectory of the joint touch gesture matches a preset trajectory, displaying a text selection area on the text application interface in response to the joint touch gesture. Operation steps for selecting a text are simplified, thereby improving the user experience.
Abstract:
A device for signal re-sampling and, in particular wireless signal re-sampling, comprising: 1) A signal processing unit adapted to: (a) Receive a plurality of time interleaved input signals. (b) Generate a plurality of filtered signals by filtering in parallel the interleaved input signals. The filtering is performed in a time-interleaved manner. (c) Integrate the plurality of filtered signals into a plurality of signal streams.
Abstract:
Provided is a battery state of health detection method. In the method, current and voltage are measured twice for a time interval, a corresponding model algorithm is selected according to measured current values, corresponding battery open circuit voltage values and battery state of charge values are respectively obtained at a start time and an end time of the time interval on the basis of the model algorithm, a battery capacity difference value indicating a current battery holding capacity and a battery capacity difference value indicating a future battery holding capacity are calculated and obtained, the effect of a measured battery temperature value is taken into account, and a battery state of health value is calculated and obtained. Also provided is a battery state of health detection device. The present invention implements battery state of health detection in an online state, monitors battery ageing in a timely and accurate manner, ensures that a device supplies a load with power in a normal manner, and prevents a service from being affected.
Abstract:
An OpenFlow protocol resources control method, device and system, used for solving the problem of inadequate forwarding resources utilisation. The method may comprise: a controller sends a resources allocation request message to a forwarder, an OpenFlow interface being established between the controller and the forwarder; the controller receives a resources allocation message sent by the forwarder in response to the resources allocation request message, the resources allocation message comprising: idle forwarding resources obtained by the forwarder from within total forwarding resources; according to the idle forwarding resources, the controller allocates service usable forwarding resources to a service created on the controller, the service usable forwarding resources being a portion or all of the resources within the idle forwarding resources.
Abstract:
A channel joint correction method, and a related device and system. The channel joint correction method comprises: sending a first channel joint correction command to a first RRU; sending a second channel joint correction command to a second RRU; receiving a reception result sent by the second RRU of X2 receiving channels within X2 service channels regarding a first correction reference signal; receiving a reception result sent by the first RRU of X1 receiving channels within X1 service channels regarding a second correction reference signal; according to the first correction reference signal, the reception result of the X2 receiving channels regarding the first correction reference signal, the second correction reference signal and the reception result of the X1 receiving channels regarding the second correction reference signal, calculating and obtaining a correction compensation coefficient of the X1 service channels and/or the X2 service channels. The present invention is advantageous for implementing channel correction between RRUs which do not have a channel self-correction function.
Abstract:
Network caching performance can be improved by allowing users to discover distributed cache locations storing content of a central content server. Specifically, retrieving the content from a distributed cache proximately located to the user, rather than from the central content server, may allow for faster content delivery, while also consuming fewer network resources. Content can be associated with distributed cache locations storing that content by cache location tables, which may be maintained at intermediate network nodes, such as border routers and other devices positioned in-between end-users and central content servers. Upon receiving a query, the intermediate network nodes may determine whether the content requested by the query is associated with a cache location in the cache location table, and if so, provide the user with a query response identifying the associated cache location.
Abstract:
A system comprises: a polarization state aligner (PSA) comprising: an input port; a first polarization beam splitter (PBS) coupled to the input port; a first phase shifter (PS) coupled to the first PBS; a first polarization rotator (PR) coupled to the first PBS; a first beam splitter (BS) coupled to the first PS and the first PR; a first output port coupled to the first BS; and a second output port coupled to the first BS.