Abstract:
This application provides an application running method. When running a target application, a first terminal device obtains device information and/or a software running environment of a second terminal device; when the device information and/or the software running environment of the second terminal device meet/meets an execution requirement of a first task of the target application, the first terminal device transfers task running information of the first task to the second terminal device, and the first terminal device does not execute the first task; and the second terminal device executes the first task based on the task running information related to the first task.
Abstract:
A detection device includes a transmitting component, configured to transmit a laser beam; a collimating and shaping component, configured to process the laser beam as a collimated linear laser beam; a scanning rotating mirror component, including at least one reflection surface, configured to reflect the linear laser beam; a receiving component, configured to receive a target echo, and convert the target echo from an optical signal into an electrical signal corresponding to the target echo, where the target echo includes a reflected signal of the linear laser beam.
Abstract:
A controlling data packet sending method. The method for controlling data packet sending includes: obtaining a plurality of control models, where the plurality of control models corresponds to a plurality of conditions; selecting, based on a first condition, a first control model corresponding to the first condition from the plurality of control models, the first control model is used to process a transmission parameter of any network in at least one network; processing, by using the first control model, a transmission parameter of a first network accessed by an end node, to obtain a first control parameter required for sending the data packet of the first application by the end node by using the first network; and controlling sending of the data packet of the first application based on the first control parameter.
Abstract:
A smart lock unlocking method and a related device are provided, and may be specifically applied to an intelligent vehicle and a self-driving vehicle, to implement an unlocking function of a smart lock of the vehicle. The method includes: A terminal device monitors a distance change trend between the terminal device and an intelligent device, where the intelligent device includes a smart lock (S401). If the terminal device determines that the terminal device is approaching the intelligent device and a distance between the terminal device and the intelligent device is less than a first distance threshold, the terminal device enables an identity authentication process between the terminal device and the intelligent device (S402). The terminal device unlocks the smart lock when identity authentication between the terminal device and the intelligent device succeeds (S403).
Abstract:
This application relates to the field of electronic technologies, and relates to a camera module, an anti-jitter component, and a terminal. The camera module includes an optical folding element, a lens group, and an image sensor that are sequentially arranged along an imaging light beam transmission direction. The camera module further includes a front-end anti-jitter component and a back-end anti-jitter component. The front-end anti-jitter component is connected to at least one of the optical folding element and the lens group. The back-end anti-jitter component is connected to the image sensor. The front-end anti-jitter component is configured to perform first jitter compensation on the imaging light beam and the back-end anti-jitter component is configured to perform second jitter compensation on the imaging light beam.
Abstract:
Embodiments of the present disclosure provide a method, an apparatus, and a system for controlling a self-optimization switch. By using technical solutions provided in embodiments of the present disclosure, enabling and disabling of self-optimization can be controlled, and a state of the self-optimization switch can be obtained. A technical solution provided in embodiments of the present disclosure is as follows: a method for controlling a self-optimization switch includes: obtaining a target state of a self-optimization switch; and sending a setting command that includes the target state to a managed unit, where the setting command instructs the managed unit to change the state of the self-optimization switch to the target state.
Abstract:
A channel estimation apparatus and method are provided to ensure that a channel estimation value can correctly reflect a transmission channel status, so that an orthogonal frequency division multiplexing (OFDM)-based wireless system can correctly transmit an aggregate long frame according to the channel estimation value. The channel estimation apparatus determines a first channel estimation value, receives a first symbol group of a long frame according to the first channel estimation value, and determines a second channel estimation value according to the first symbol group, and if a difference between the first channel estimation value and the second channel estimation value is less than or equal to a first threshold, determines a third channel estimation value according to the first channel estimation value and the second channel estimation value.
Abstract:
A waterproof optical fibre connector includes a flange and a terminal connector. The terminal connector includes an outer casing, an inner casing, an optical fibre and a connecting component coupled with the fibre. The inner casing is tubular for housing the fibre and the connecting component. The outer casing is tubular for housing the inner casing. The inner casing includes a body and a waterproof clip connected to a back end of the body. The fibre passes through the clip. The tail of the inner wall of the outer casing tapers from the front to the back, pressing the clip inwards such that the clip and the fibre are fixed together. At least one first protrusion is provided on the inner surface of the front end of the sleeve of the flange, and the front end of the body of the inner casing bears against the first protrusion.
Abstract:
The present disclosure relates to methods and apparatuses for sending a multi-tone signal. One example method includes generating a first multi-tone signal, and sending the first multi-tone signal. The first multi-tone signal includes N single-tone signals. Amplitude values of the single-tone signals are the same. Initial phases of at least two of the N single-tone signals are the same or absolute values of initial phases of at least two of the N single-tone signals are the same. N is an integer greater than or equal to 2.
Abstract:
The present disclosure relates to localization methods, apparatuses, and systems. One example localization method includes obtaining phase value groups respectively corresponding to a plurality of anchor nodes, where phase values corresponding to the plurality of anchor nodes are obtained through measurement after the plurality of anchor nodes perform frequency shifting and receive a signal sent by a target node while performing frequency shifting, and the phase value group includes phase values of a plurality of frequencies, and determining a location of the target node based on the phase value groups respectively corresponding to the plurality of anchor nodes.