Energy-efficient device discovery techniques
Techniques for energy-efficient device discovery are described. In one embodiment, for example, user equipment may comprise logic, at least a portion of which is in hardware, the logic to initiate a synchronous operation mode, determine to announce one or more characteristics of a discovery zone of a wireless channel, and send a discovery announcement signal over the wireless channel, the discovery announcement signal describing the one or more characteristics of the discovery zone. Other embodiments are described and claimed.
1. An apparatus, comprising:
a memory; and
logic for user equipment (UE), at least a portion of the logic comprised in circuitry coupled to the memory, the logic to:
determine that the UE is to operate as a synchronization source based on a determination that a measured reference signal received power (RSRP) is below an RSRP threshold comprised in a message received from an evolved node B (eNB) while the UE is located within a coverage area of the eNB;
determine a timing reference for device-to-device discovery; and
generate synchronization signals for transmission by the UE, the synchronization signals to indicate the timing reference for device-to-device discovery.
2. The apparatus of claim 1 , the logic to determine the timing reference based on one or more synchronization signals received from the eNB.
3. The apparatus of claim 1 , the logic to determine the timing reference based on one or more synchronization signals received from a second UE.
4. The apparatus of claim 1 , comprising:
at least one radio frequency (RF) transceiver; and
at least one RF antenna.
5. The apparatus of claim 4 , comprising a touchscreen display.
6. At least one non-transitory computer-readable storage medium comprising a set of instructions that, in response to being executed at user equipment (UE), cause the UE to:
determine that the UE is to operate as a synchronization source based on a determination that a measured reference signal received power (RSRP) is below an RSRP threshold comprised in a message received from an evolved node B (eNB) while the UE is located within a coverage area of the eNB;
determine a timing reference for device-to-device discovery; and
generate synchronization signals for transmission by the UE, the synchronization signals to indicate the timing reference for device-to-device discovery.
7. The at least one non-transitory computer-readable storage medium of claim 6 , comprising instructions that, in response to being executed at the UE, cause the UE to determine the timing reference based on one or more synchronization signals received from the eNB.
8. The at least one non-transitory computer-readable storage medium of claim 6 , comprising instructions that, in response to being executed at the UE, cause the UE to determine the timing reference based on one or more synchronization signals received from a second UE.
9. User equipment (UE), comprising:
baseband circuitry to:
determine that the UE is to operate as a synchronization source based on a determination that a measured reference signal received power (RSRP) is below an RSRP threshold comprised in a message received from an evolved node B (eNB) while the UE is located within a coverage area of the eNB;
determine a timing reference for device-to-device discovery; and
generate synchronization signals indicating the timing reference for device-to-device discovery; and
a radio frequency (RF) transceiver coupled to the baseband circuitry, the RF transceiver to transmit the synchronization signals.
10. The UE of claim 9 , the baseband circuitry to determine the timing reference based on one or more synchronization signals received from the eNB.
11. The UE of claim 9 , the baseband circuitry to determine the timing reference based on one or more synchronization signals received from a second UE.
12. The UE of claim 9 , comprising at least one RF antenna coupled to the RF transceiver.
13. The UE of claim 12 , comprising a touchscreen display.