Abstract:
A wireless communication method for use in a wireless terminal is disclosed. The method comprises receiving, from a wireless network node, a high layer signaling including channel state information (CSI) report configuration information, receiving, from the wireless network node, a first signaling including a CSI report trigger state indication or a pattern indication, and reporting CSI according to the high layer signaling and the first signaling.
Abstract:
The present application relates to the technical field of communications, and in particular relates to a control method for an indoor distribution system, a chip, an electronic device and a computer-readable storage medium. The control method for an indoor distribution system includes: receiving uplink signal powers of a terminal reported by respective pRRUs in the indoor distribution system; determining a home pRRU for the terminal according to the uplink signal powers of the terminal reported by the pRRUs; and allowing, during scheduling for the terminal, only a downlink channel of the home pRRU for the terminal to be turned on.
Abstract:
Disclosed are a method and a device for energy saving control of a base station, and a computer-readable storage medium. The method may include: acquiring service data of the base station; triggering an energy-saving mode of the base station corresponding to the service data meeting a trigger condition; calculating a service load of the base station in the energy-saving mode; and controlling, based on a relationship between the calculated service load and a preset slot threshold, a corresponding slot to be off or on.
Abstract:
A controlling method and device for a wireless power transfer system, wherein the wireless power transfer system includes a transmitting component and a receiving component, and further includes a contactless transformer & compensation (CT&C) circuit, and the controlling method includes: obtaining positional relationship information of the transmitting component and the receiving component; adjusting the number of coil turns of the transmitting component based on the positional relationship information, and making conditions of a CT&C voltage gain characteristic and an input impedance characteristic after a charging inverter bridge of the wireless power transfer system meet a charging condition. The abovementioned technical solution can provide a protection for a stable operation of the wireless power transfer system with a non-mechanical adjusting device, and the wireless charging can be achieved without using a mechanical adjusting device to align and range