Abstract:
The present disclosure relates to a terminal chip and a measurement method thereof. In an example, a terminal chip includes a computing subsystem and a security subsystem. The security subsystem is configured to measure the computing subsystem. A boot time of the security subsystem is earlier than a boot time of the computing subsystem. The security subsystem includes an integrity verification unit configured to perform integrity measurement on data in a boot process of the computing subsystem.
Abstract:
A transmission cable is provided to implement high-speed inter-device interconnection and intercommunication. The transmission cable includes a positive dispersion transmission section, a negative dispersion transmission section, and a dispersion matching section. A cross-sectional diameter of the positive dispersion transmission section is less than a cross-sectional diameter of the negative dispersion transmission section. The dispersion matching section is configured to connect the positive dispersion transmission section and the negative dispersion transmission section. The transmission cable can implement dispersion cancellation to reduce total group delay.
Abstract:
A beam reconstruction method includes: generating or receiving a radio frequency signal, determining a to-be-adjusted beam angle, loading a voltage bias value on each liquid crystal metasurface array unit among a plurality of liquid crystal metasurface array units in a liquid crystal metasurface array based on the beam angle, and either emitting the generated radio frequency signal transmitted through the liquid crystal metasurface array or directing the received radio frequency signal through the liquid crystal metasurface array to a feed of an antenna. A lateral offset of a feed phase center is generated based on the voltage bias value after the radio frequency signal is transmitted through the liquid crystal metasurface array.
Abstract:
A mobile edge computing method and apparatus are provided. The method which is implemented by a mobile edge computing (MEC) management network element includes: receiving an MEC virtualization resource request sent by a control plane of a target radio access network (RAN), wherein the control plane belongs to the target RAN to which user equipment (UE) is handed over, and the MEC virtualization resource request includes an MEC computing resource requirement of the UE; creating, based on the MEC virtualization resource request, a new virtual machine (VM) on an MEC server for the UE, wherein the new VM is used on the target RAN side after the handover; and sending first information of the new VM to the control plane, wherein the first information includes an ID of the new VM. According to the application, the efficiency of usage of resources during a handover of UE is significantly improved.
Abstract:
The present invention provides a method. The method includes: performing coupling to acquire a first reference signal and a second reference signal from a transmit signal transmitted on a same transmit link at a transmit end; performing signal recombination according to the first reference signal and the second reference signal, to obtain a first interference cancellation signal and a second interference cancellation signal; enabling the first interference cancellation signal to pass through a simulated interference channel, and enabling the second interference cancellation signal to pass through the simulated interference channel; and coupling and output, to a same receive link at the local receive end, the first interference cancellation signal and the second interference cancellation signal that have passed through the simulated interference channel, and combining the first interference cancellation signal and the second interference cancellation signal with a signal received by the local receive end.
Abstract:
A signal processing method and apparatus are disclosed. The signal processing method includes: receiving, by a first signal processing apparatus, a mixed signal; acquiring, by the first signal processing apparatus, an energy strength ratio of the mixed signal, where the energy strength ratio includes a ratio of energy strength of a signal sent by a first signal source and received by the first signal processing apparatus to energy strength of a signal sent by a second signal source and received by the first signal processing apparatus; and if the energy strength ratio is less than a first preset threshold, using, by the first signal processing apparatus, the signal sent by the second signal source in the mixed signal as an interference signal and separating the interference signal, and determining that a mixed signal obtained after the separation processing is the desired signal sent by the first signal source.
Abstract:
Embodiments of the present invention provide a data processing system and a data processing method. An MMIO address of a data request is obtained, where data stored in a PCIe storage device can be directly obtained from the MMIO address, and according to the MMIO address, a network adapter can directly read the data from the PCIe storage device of the data processing system, and transmit the data to a second data processing system, or directly write the data received from the second data processing system into the PCIe storage device. Therefore, the processing system can implement transmitting data directly from the PCIe storage device to the network adapter without using memory. During data transmission between the two data processing systems, a usage ratio of a resource, such as memory and a CPU, is reduced, and efficiency of data transmission is improved.
Abstract:
This application provides a data processing system, and the data processing system includes: a Universal Serial Bus (USB) device; a general-purpose processor, deployed with a USB driver; and a dedicated processor, deployed with a first driver, where the first driver is configured to drive a data exchange between the USB device and the dedicated processor, to effectively reduce a transmission delay.
Abstract:
The present application provides example terminal chips. One example terminal chip includes a security element, an application processor, and an interface module configured to transfer information between the application processor and the security element. The terminal chip includes a first power interface configured to receive power outside the terminal chip. A first power input port of the security element is connected to the first power interface, and at least one of the application processor or the interface module is connected to the first power interface. In the example terminal chip, a power supply port of the security element is connected to a power supply port of the application processor or the interface module of the terminal chip.
Abstract:
The embodiments of the present invention disclose a bus security protection apparatus, including: a first check module, configured to check operation data, to generate a first check code; a first conversion module, configured to perform an exclusive-OR logical operation on the operation data and a polarity indication signal, to obtain polarity reversal data; a first encryption/decryption module, configured to perform an exclusive-OR logical operation on the polarity reversal data and preset scrambling data, to obtain encrypted data; a second encryption/decryption module, configured to perform an exclusive-OR logical operation on the encrypted data and the preset scrambling data, to obtain decrypted data; a second conversion module, configured to perform an exclusive-OR logical operation on the decrypted data and the polarity indication signal, to obtain decrypted conversion data; and a second check module, configured to: check the decrypted conversion data, to generate a second check code.