Non-terrestrial progressive paging
A radio network node may receive from a core network a beam pattern configuration and a progressive paging configuration comprising one or more paging subpattern indications. The node may calculate beams of the subpatterns based on information in the beam pattern configuration. The node may transmit a paging message according to indicated subpatterns according to an order in the progressive paging configuration. The progressive paging configuration may comprise one or more wait periods corresponding to the one or more subpattern indications. The node may wait during a wait period associated with a subpattern after transmitting the paging message according to the subpattern. If a response is not received, the node may transmit the paging message according to a next-in-order subpattern. If a response to the paging message transmitted during a subpattern is received by the node, paging may be stopped and a connection with the user equipment may be established.
1 . A method, comprising:
facilitating, by a radio network node comprising at least one processor, receiving, from a first network component, a beam pattern configuration comprising beam pattern information corresponding to at least one beam pattern;
facilitating, by the radio network node, receiving, from a second network component, a progressive paging configuration comprising at least one subpattern indication indicative of at least one of the at least one beam pattern;
facilitating, by the radio network node, receiving, from a third network component, a paging request directed to a user equipment;
responsive to the paging request, facilitating, by the radio network node, transmitting a paging message to the user equipment according to the at least one of the at least one beam pattern indicated by the at least one subpattern indication;
facilitating, by the radio network node, forming a first formed beam, wherein a first pattern of the at least one beam pattern comprises the first formed beam; and
facilitating, by the radio network node, forming a second formed beam, wherein a second pattern of the at least one beam pattern comprises the second formed beam,
wherein the first formed beam is different than the second formed beam, wherein the first formed beam and the second formed beam are different than at least one baseline beam that corresponds to at least one baseline beam gain and at least one baseline beam width, wherein the first formed beam corresponds to a first beam gain that is less that the at least one baseline beam gain and a first beam width that is greater than the at least one baseline beam width, and wherein the second formed beam corresponds to a second beam gain that is less that the first beam gain and a second beam width that is greater than the first beam width.
2 . The method of claim 1 , wherein the radio network node is configured with a baseline beam configuration comprising baseline beam information corresponding to at least one baseline beam pattern comprising the at least one baseline beam, and wherein the at least one baseline beam pattern is different than the at least one of the at least one beam pattern indicated by the at least one subpattern indication.
3 . The method of claim 1 , wherein the facilitating of the transmitting of the paging message further comprises:
facilitating forming of at least one formed beam corresponding to the at least one of the at least one beam pattern indicated by the at least one subpattern indication based on a function of at least one baseline beam corresponding to a baseline beam pattern.
4 . The method of claim 3 , wherein the at least one formed beam is determined based on a beam function applied to the at least one baseline beam.
5 . The method of claim 4 , wherein the beam function comprises a mathematical function.
6 . The method of claim 5 , wherein the mathematical function comprises an average of at least two beam vectors corresponding to at least two of the at least one baseline beam.
7 . The method of claim 1 , wherein the progressive paging configuration comprises at least one wait period associated with the at least one subpattern indication, the method further comprising:
facilitating, by the radio network node, waiting a wait period of the at least one wait period after a first transmitting of the paging message to the user equipment according to the first pattern; and
responsive to failing, by the radio network node, to receive a paging response from the user equipment by an occurrence of an end of the wait period, facilitating, by the radio network node, a second transmitting of the paging message to the user equipment according to the second pattern.
8 . The method of claim 1 , wherein the progressive paging configuration comprises at least one wait period associated with the at least one of the at least one subpattern indication, the method further comprising:
facilitating, by the radio network node, waiting a wait period of the at least one wait period after a first transmitting of the paging message to the user equipment according to a pattern of the at least one of the at least one beam pattern indicated by a subpattern indication of the at least one subpattern indication;
facilitating, by the radio network node, receiving, from the user equipment, a paging response by an occurrence of an end of the wait period; and
facilitating, by the radio network node, establishing a communication session with the user equipment.
9 . The method of claim 1 , further comprising:
facilitating, by the radio network node, transmitting, to the user equipment, the progressive paging configuration, usable by the user equipment to determine monitoring of the at least one of the at least one beam pattern.
10 . The method of claim 1 , wherein the radio network node is a radio access network node of a long-range wireless radio access network.
11 . The method of claim 10 , wherein at least one of the first network component, second network component, or third network component is part of a core network corresponding to the long-range wireless radio access network.
12 . The method of claim 1 , wherein the radio network node comprises a satellite.
13 . A radio node, comprising:
at least one processor configured to process executable instructions that, when executed by the at least one processor, facilitate performance of operations, comprising:
receiving a beam pattern configuration comprising beam pattern information corresponding to at least one beam pattern, wherein the beam pattern configuration is transmitted via a core network;
receiving a progressive paging configuration comprising at least one subpattern indication indicative of at least one of the at least one beam pattern, wherein the progressive paging configuration is transmitted via the core network;
receiving a paging request directed to at least one user equipment, wherein the paging request is transmitted via the core network;
responsive to the paging request, transmitting a paging message directed to the at least one user equipment according to the at least one of the at least one beam pattern indicated by the at least one subpattern indication;
forming a first formed beam, wherein a first pattern of the at least one beam pattern comprises the first formed beam; and
forming a second formed beam, wherein a second pattern of the at least one beam pattern comprises the second formed beam,
wherein the first formed beam is different than the second formed beam, wherein the first formed beam and the second formed beam are different than a baseline beam that corresponds to a baseline beam gain and a baseline beam width, wherein the first formed beam corresponds to a first beam gain that is less that the baseline beam gain and a first beam width that is greater than the baseline beam width, and wherein the second formed beam corresponds to a second beam gain that is less that the first beam gain and a second beam width that is greater than the first beam width.
14 . The radio node of claim 13 , wherein the progressive paging configuration comprises at least one wait period associated with the at least one of the at least one subpattern indication, and wherein the operations further comprise:
waiting a first wait period of the at least one wait period after a first transmitting of the paging message to the at least one user equipment according to the first pattern of the at least one of the at least one beam pattern indicated by a first subpattern indication of the at least one subpattern indication; and
based on failing to receive a paging response from the at least one user equipment as late as an occurrence of an end of the first wait period, transmitting the paging message to the at least one user equipment according to the second pattern of the at least one of the at least one beam pattern indicated by a second subpattern indication of the at least one subpattern indication.
15 . The radio node of claim 14 , wherein the first wait period is associated in the progressive paging configuration with the first subpattern indication of the at least one subpattern indication, wherein a second wait period is associated with the second subpattern indication of the at least one subpattern indication in the progressive paging configuration, and wherein the operations further comprise:
waiting the second wait period after transmitting the paging message according to the second pattern of the at least one of the at least one beam pattern; and
based on failing to receive a paging response from the at least one user equipment as late as an occurrence of an end of the second wait period, transmitting the paging message to the at least one user equipment according to a third pattern of the at least one of the at least one beam pattern indicated by a third subpattern indication of the at least one subpattern indication.
16 . The radio node of claim 15 , wherein the first wait period and the second wait period are different.
17 . The radio node of claim 13 , wherein the operations further comprise:
forming at least one formed beam corresponding to the at least one of the at least one beam pattern indicated by the at least one subpattern indication, and wherein the at least one formed beam is determined based on a beam function applied to an at least one baseline beam.
18 . A non-transitory machine-readable medium, comprising executable instructions that, when executed by at least one processor of a radio network node, facilitate performance of operations, comprising:
receiving a progressive paging configuration, comprising at least one subpattern indication indicative of at least one beam pattern, wherein the progressive paging configuration is transmitted via a core network;
receiving a paging request directed to at least one user equipment via the core network;
responsive to the paging request, transmitting a paging message directed to the at least one user equipment according to the at least one beam pattern indicated by the at least one subpattern indication;
forming a first formed beam, wherein a first pattern of the at least one beam pattern comprises the first formed beam; and
forming a second formed beam, wherein a second pattern of the at least one beam pattern comprises the second formed beam,
wherein the first formed beam is different than the second formed beam, wherein the first formed beam and the second formed beam are different than a baseline beam that corresponds to a baseline beam gain and a baseline beam width, wherein the first formed beam corresponds to a first beam gain that is less that the baseline beam gain and a first beam width that is greater than the baseline beam width, and wherein the second formed beam corresponds to a second beam gain that is less that the first beam gain and a second beam width that is greater than the first beam width.
19 . The non-transitory machine-readable medium of claim 18 , wherein the at least one beam pattern indicated by the at least one subpattern indication comprises fewer beams than the baseline beam pattern.
20 . The non-transitory machine-readable medium of claim 18 , wherein the radio network node corresponds to a satellite.