Abstract:
Embodiments of the present disclosure disclose a terminal and a control method thereof. Cooperation between a target sensing object in the terminal and a target object to be sensed external to the terminal may affect a received signal on the target antenna loop, and control of the terminal may be implemented according to a change of the received signal. The method includes: detecting a received signal on a target antenna loop in the terminal and acquiring a signal parameter of the received signal; and determining whether the signal parameter of the received signal matches a preset target signal parameter, and triggering control of a to-be-controlled function of the terminal when the signal parameter of the received signal matches the preset target signal parameter.
Abstract:
A terminal control method, a terminal and a computer-readable storage medium are provided. The terminal control method includes: receiving, by a microphone, a detection audio signal emitted from a speaker and having a frequency within a pre-set detection frequency range; acquiring actual audio parameters of the detection audio signal when being received by the microphone, and original audio parameters of the detection audio signal when being emitted from the speaker; determining a relative state between the microphone and the speaker according to the actual audio parameters and the original audio parameters; determining a terminal control operation to be performed, according to the relative state and a pre-set correspondence between relative states and terminal control operations; and performing the determined terminal control operation on a terminal where the microphone is located.
Abstract:
A method and an apparatus for controlling a smart mobile device are disclosed. The method for controlling a smart mobile device includes: determining, when enabling a control of the smart mobile device by using body induction, a standing wave ratio (SWR) of the smart mobile device on the body induction according to a detected parameter of a body closing to the smart mobile device; and selecting a control instruction according to the determined SWR of the smart mobile device on the body induction and a preset corresponding relationship between the SWR of the smart mobile device on the body induction and the control instruction, and controlling the smart mobile device based on the selected control instruction.
Abstract:
At least some embodiments of disclosure include a method and device for grounding adjustment. The method includes: acquiring a grounding parameter of a port to be detected of a terminal, wherein the grounding parameter is reflective of a grounding state of the port to be detected; when the grounding parameter exceeds a predetermined threshold, determining that the grounding state of the port to be detected does not meet a preset requirement; and adjusting the port to be detected not meeting the preset requirement according to a reason why the grounding state does not meet the preset requirement.
Abstract:
A signal compensation method, an electronic device, and a computer readable storage medium are disclosed. The method may include: detecting received signal strengths of a plurality of MIMO channels of the electronic device; in response to determining, according to the received signal strengths, that signal reception imbalance exists among the plurality of MIMO channels, determining a cause of the signal reception imbalance; and determining a compensation manner corresponding to the cause of the signal reception imbalance, and performing signal compensation according to the compensation manner corresponding to the cause of the signal reception imbalance until signal reception equalization is detected on the plurality of MIMO channels.
Abstract:
Disclosed are a service slice adjustment method, an electronic device, and a storage medium. The method is applied to a terminal and may include: acquiring a service demand parameter of an application service slice configured for a terminal and a current network parameter of the terminal, wherein the service demand parameter includes a service demand parameter of each sub-slice of the application service slice (101); and adjusting the parameter of each sub-slice of the application service slice according to the service demand parameter and the current network parameter (102).
Abstract:
Provided is a co-existing interference reduction method, which includes: a target wireless communication mode link with a co-existing interference is determined, the co-existing interference including harmonic interference and intermodulation interference; interference scanning detection is performed on the link in a coexistence state so as to obtain values corresponding to a co-existing interference effect evaluation parameter of the link in case of different values of a modulation control parameter; a filtering regulation strategy corresponding to the link is determined according to an interference scanning detection result; and a preset filter module matched with the link is controlled to perform a filtering process according to the filtering regulation strategy so as to reduce a co-existing interference effect on the link.
Abstract:
Provided are an active heat dissipation apparatus for a terminal, a terminal, and an active heat dissipation method for a terminal, including: the heat source collection modules distributed at various positions of the terminal collect heat data at the various positions of the terminal; a calculation and simulation module inputs the heat data collected at the various positions to a preset simulation model to determine a heat dissipation solution; and a control module controls a heat dissipation module to dissipate heat for corresponding positions of the terminal according to the heat dissipation solution.
Abstract:
Disclosed are a self-adaptive Bluetooth performance adjustment communication device and method. The device includes: a detection unit is configured to detect state parameters in various Bluetooth application environments and a target requirement of the current terminal user; the self-adaptive control unit is configured to obtain target adjustment parameters corresponding to associated Bluetooth parameters expected to be adjusted, and control initiation of an adjustment unit; and the adjustment unit is configured to perform optimization adjustment until the Bluetooth performance of a terminal achieves an expected working state.
Abstract:
Disclosed are an adaptive power controllable WIFI adjusting method and device, wherein the method includes the following steps that are suitable for a WIFI mobile terminal to execute: determining a WIFI adjustment object as well as an adjustment target value by detecting a current WIFI application environment and/or communication status; obtaining a current value of the WIFI adjustment object by detecting the WIFI adjustment object; comparing the adjustment target value with the current value, and coupling back a comparison result; performing an initial adjustment and a fine adjustment on the WIFI adjustment object according to the coupled-back comparison result, and making a value of the adjustment object obtained after the adjustments consistent with the adjustment target value through precise adjustment, calibration, and correction.