Relay handover determination
Disclosed are techniques for wireless communication that over come problems associated with conventional approaches including load balancing and handover efficiency issues. In one aspect a wireless communication technique takes into account the load of a donor gNB before a relay decides to reselect from one donor gNB to another. In another aspect, a wireless communication technique ensures that relays are handed over to base stations that will be able to serve the relay as the mobile relay continues to follow its expected path (e.g. streets or tracks).
1. A method of wireless communication comprising:
determining, by a first base station, a handover decision is one of positive or negative, wherein the handover decision is determined to be positive at least partially based on path information of a relay for a future time indicating that the relay is predicted to be within a coverage area of a second base station; and
connecting the relay to the second base station at least partially based on the handover decision determined to be positive.
2. The method of claim 1 , wherein the path information is received by the first base station from the relay connected to the first base station.
3. The method of claim 1 , wherein path information of the relay for a future time window is determined from a past trajectory of the relay.
4. The method of claim 3 , further comprising periodically receiving a current location of the relay, from the relay, and determining the past trajectory of the relay based on the received current locations.
5. The method of claim 1 , further comprising periodically requesting and receiving, by the first base station, a current location of the relay, and determining a past trajectory of the relay based on the received current locations.
6. The method of claim 1 , further comprising periodically receiving the path information from the relay wherein the path information comprises a trajectory of the relay indicating a location of the relay for a future time window.
7. A method of wireless communication comprising:
determining, by a relay connected to a first base station, that a handover decision is one of positive or negative, wherein the handover decision is determined to be positive at least partially based on future path information for the relay indicating that the relay will be within a coverage area of a second base station; and
connecting the relay to the second base station at least partially based on the handover decision determined to be positive.
8. The method of claim 7 , wherein the handover decision is determined to be positive at least partially based also on at least one of: a signal strength of the first base station is below a strength threshold, load information of the first base station is above a load threshold, a signal strength of the second base station is above the strength threshold, or load information of the second base station is below the load threshold.
9. The method of claim 7 , wherein a coverage area of the first base station and the coverage area of the second base station are preconfigured in the relay.
10. The method of claim 7 , wherein a coverage area of the first base station and the coverage area of the second base station are determined respectively based on a signal strength of the first base station and a signal strength of the second base station while having travelled along a same trajectory previously.
11. The method of claim 7 , wherein the future path information of the relay is received from the relay and a coverage area of base stations covering a future path of the relay.
12. The method of claim 7 , further comprising disconnecting the relay from the first base station after connecting the relay to the second base station.
13. A method of wireless communication comprising:
receiving a handover decision from a first base station, the handover decision determined to be one of positive or negative, wherein the handover decision is determined to be positive at least partially based on path information of a relay for a future time indicating the relay will be within a coverage area of a second base station; and
connecting the relay to the second base station at least partially based on the handover decision being positive.
14. The method of claim 13 , wherein the path information is transmitted to the first base station connected to the relay.
15. The method of claim 13 , wherein the path information of the relay for a future time window is determined from a past trajectory of the relay.
16. The method of claim 15 , further comprising periodically transmitting a current location of the relay to the first base station, wherein the past trajectory of the relay is based on the transmitted current locations.
17. The method of claim 13 , further comprising periodically receiving requests from the first base station for a current location of the relay and transmitting current locations of the relay in response to the received requests, wherein a past trajectory of the relay is based on the transmitted current locations.
18. The method of claim 13 , further comprising periodically transmitting the path information wherein the path information comprises a trajectory of the relay indicating a location of the relay for a future time window.
19. An apparatus comprising:
at least one processor;
an antenna coupled to the at least one processor;
and a memory coupled to the at least one processor;
the at least one processor, antenna and memory being configured to:
determine a handover decision is one of positive or negative, wherein the handover decision is determined to be positive at least partially based on path information of a relay for a future time indicating that the relay is predicted to be within a coverage area of a second base station; and
connect the relay to the second base station at least partially based on the handover decision determined to be positive.
20. The apparatus of claim 19 , wherein the path information is received from the relay.
21. The apparatus of claim 19 , wherein path information of the relay for a future time window is determined from a past trajectory of the relay.
22. The apparatus of claim 21 , wherein the at least one processor, the antenna, and the memory are further configured to periodically receive a current location of the relay, from the relay, and determine the past trajectory of the relay based on the received current locations.
23. The apparatus of claim 19 , wherein the at least one processor, the antenna, and the memory are further configured to periodically request and receive a current location of the relay, and determine a past trajectory of the relay based on the received current locations.
24. The apparatus of claim 19 , wherein the at least one processor, the antenna, and the memory are further configured to periodically receive the path information from the relay wherein the path information comprises a trajectory of the relay indicating a location of the relay for a future time window.