Abstract:
An architecture to allow the translation or conversion of short-range direct communications between devices with different radio access, such as in a V2X (vehicle-to-everything) communication context, is disclosed. In an example, a translation process, such as is performed by a mobile/multi-access edge computing (MEC) communication entity, includes: obtaining or accessing, at a translation function, a communication message (e.g., IP message) provided from a first device operating with a first radio access technology (e.g., LTE C-V2X), the message addressed to a second device operating with a second radio access technology (e.g., IEEE 802.11p or DSRC/ITS-G5); converting the communication message, with the translation function, into a format compatible with the second radio access technology; and initiating a transmission of the translated communication message, from the translation function, to the second device using the second radio access technology.
Abstract:
A mobile small station including a transceiver, a processor, and a memory having instructions for execution by the processor to exchange measurement information with a macro station, provide a wide area network connection and act as a relay for a small station moving network with the mobile small station, and perform handover of relay responsibilities to another mobile small station in the small station moving network.
Abstract:
Embodiments of the present disclosure describe adjacent channel leakage reduction in wireless networks. An apparatus may include circuitry to receive, by a user equipment (UE) of a wireless communication network over downlink signaling, information to indicate a frequency offset of one or more uplink carrier bands of the UE and circuitry to shift a frequency of the one or more uplink carrier bands based on the frequency offset. Other embodiments may be described and/or claimed.
Abstract:
According to various examples, a processing system is described comprising a plurality of hardware circuit components, each hardware circuit component configured to provide a processing functionality, a data path leading through the plurality of hardware circuit components, at least one programmable circuit and a controller configured to select one of the hardware circuit components to be replaced by the at least one programmable circuit, program the programmable circuit to provide the processing functionality provided by the selected hardware circuit component and configure the data path to lead through the programmable circuit instead of the selected hardware circuit component.
Abstract:
Embodiments of the present disclosure describe adjacent channel leakage reduction in wireless networks. An apparatus may include circuitry to receive, by a user equipment (UE) of a wireless communication network over downlink signaling, information to indicate a frequency offset of one or more uplink carrier bands of the UE and circuitry to shift a frequency of the one or more uplink carrier bands based on the frequency offset. Other embodiments may be described and/or claimed.
Abstract:
A mobile small station including a transceiver, a processor, and a memory having instructions for execution by the processor to exchange measurement information with a macro station, provide a wide area network connection and act as a relay for a small station moving network with the mobile small station, and perform handover of relay responsibilities to another mobile small station in the small station moving network.