Dynamic spectrum sharing overhead impact mitigation
Systems, methods, apparatuses, and computer program products for overhead impact mitigation in dynamic spectrum sharing are provided. For example, a method may include informing, by a network element, a user equipment regarding at least one resource configured to a reference signal for a second radio access network. The user equipment may be configured to operate in a first radio access network different from the second radio access network. The informing may include indicating that the user equipment is permitted to use the reference signal. The method may also include transmitting the reference signal in the second radio access network using the at least one resource.
1 . A New Radio (NR) user equipment for reducing cell signaling overhead, the NR user equipment comprising:
at least one processor; and
at least one memory including computer program instructions, wherein the at least one memory and the computer program instructions are configured to, with the at least one processor, cause the NR user equipment to perform:
receiving, at the NR user equipment from a transmission over an entire long term evolution (LTE) network bandwidth when no LTE user equipment is currently scheduled, information regarding resources configured to an LTE cell-specific reference signal (CRS), the information being needed to generate LTE CRSs and to know the resources wherein the LTE CRSs are mapped using radio resource control (RRC), wherein the NR user equipment is configured to operate in a NR network different from the LTE network, wherein the information further indicates that the NR user equipment is permitted to use the LTE CRS, wherein the resources comprise: LTE physical downlink control channel (PDCCH), LTE CRS, LTE physical downlink shared channel (PDSCH), NR synchronization signal block (SSB), NR Channel State Information Reference Signals (NR CSI-RS), NR PDCCH control resource set (CORESET), and NR PDSCH demodulation reference signal (DMRS);
receiving, by the NR user equipment, the LTE CRS in the LTE network using one or more of the resources;
processing, by the NR user equipment, the LTE CRS as a channel state information reference signal;
using, by the NR user equipment, the LTE CRS in addition to native NR CSI-RS for tracking;
applying, by the NR user equipment, an LTE CRS filter for channel estimation for LTE signals in addition to an NR channel estimation filter; and
using, by the NR user equipment, the LTE CRS as the CSI-RS for channel acquisition by measuring channel state criteria requested by a network based on the LTE CRS transmission,
wherein the NR network and the LTE network are configured to dynamically share spectrum.
2 . The NR user equipment of claim 1 , wherein the at least one memory and the computer program instructions are configured to, with the at least one processor, cause the NR user equipment at least to perform:
receiving, at the NR user equipment, at least one parameter;
generating, using the at least one parameter, a comparative reference signal; and
comparing the received reference signal to the generated reference signal.
3 . The NR user equipment of claim 2 , wherein the at least one memory and the computer program instructions are configured to, with the at least one processor, cause the NR user equipment at least to perform:
applying machine learning to perform channel estimation based on the reference signal.
4 . The NR user equipment of claim 3 , wherein the LTE CRS is used instead of the NR CSI-RS.
5 . The NR user equipment of claim 4 , wherein the at least one memory and the computer program instructions are configured to, with the at least one processor, cause the NR user equipment at least to perform:
using, by the NR user equipment, the LTE CRS to enhance channel estimation-based NR demodulation reference signal (DMRS)-based channel estimation without requiring any new reference signal and without requiring the NR user equipment to do wideband channel estimation.
6 . The NR user equipment of claim 5 , wherein the LTE CRS serves as a temporary radio signal for fast SCell activation.
7 . The NR user equipment of claim 6 , wherein the resources, occupied by the LTE CRS, are reserved in an NR cell.
8 . A system for reducing cell signaling overhead, the system comprising:
a new radio (NR) user equipment;
at least one processor; and
at least one memory including computer program instructions, wherein the at least one memory and the computer program instructions are configured to, with the at least one processor, cause the NR user equipment to perform:
receiving, at the NR user equipment from a transmission over an entire long term evolution (LTE) network bandwidth when no LTE user equipment is currently scheduled, information regarding resources configured to an LTE cell-specific reference signal (CRS), the information being needed to generate LTE CRSs and to know the resources wherein the LTE CRSs are mapped using radio resource control (RRC), wherein the NR user equipment is configured to operate in a NR network different from the LTE network, wherein the information further indicates that the NR user equipment is permitted to use the LTE CRS, wherein the resources comprise: LTE physical downlink control channel (PDCCH), LTE CRS, LTE physical downlink shared channel (PDSCH), NR synchronization signal block (SSB), NR Channel State Information Reference Signals (NR CSI-RS), NR PDCCH control resource set (CORESET), and NR PDSCH demodulation reference signal (DMRS);
receiving, by the NR user equipment, the LTE CRS in the LTE network using one or more of the resources;
processing, by the NR user equipment, the LTE CRS as a channel state information reference signal;
using, by the NR user equipment, the LTE CRS in addition to native NR CSI-RS for tracking;
applying, by the NR user equipment, an LTE CRS filter for channel estimation for LTE signals in addition to an NR channel estimation filter; and
using, by the NR user equipment, the LTE CRS as the CSI-RS for channel acquisition by measuring channel state criteria requested by a network based on the LTE CRS transmission,
wherein the NR network and the LTE network are configured to dynamically share spectrum.
9 . The system of claim 8 , wherein the at least one memory and the computer program instructions are configured to, with the at least one processor, cause the NR user equipment at least to perform:
receiving, at the NR user equipment, at least one parameter;
generating, using the at least one parameter, a comparative reference signal; and
comparing the received reference signal to the generated reference signal.
10 . The system of claim 9 , wherein the at least one memory and the computer program instructions are configured to, with the at least one processor, cause the NR user equipment at least to perform:
applying machine learning to perform channel estimation based on the reference signal.
11 . The system of claim 10 , wherein the LTE CRS is used instead of the NR CSI-RS.
12 . The system of claim 11 , wherein the at least one memory and the computer program instructions are configured to, with the at least one processor, cause the NR user equipment at least to perform:
using, by the NR user equipment, the LTE CRS to enhance channel estimation-based NR demodulation reference signal (DMRS)-based channel estimation without requiring any new reference signal and without requiring the NR user equipment to do wideband channel estimation.
13 . The system of claim 12 , wherein the LTE CRS serves as a temporary radio signal for fast SCell activation.
14 . The system of claim 12 , wherein the resources, occupied by the LTE CRS, are reserved in an NR cell.
15 . A method for reducing cell signaling overhead, the method comprising:
receiving, at a NR user equipment from a transmission over an entire long term evolution (LTE) network bandwidth when no LTE user equipment is currently scheduled, information regarding resources configured to an LTE cell-specific reference signal (CRS), the information being needed to generate LTE CRSs and to know the resources wherein the LTE CRSs are mapped using radio resource control (RRC), wherein the NR user equipment is configured to operate in a NR network different from the LTE network, wherein the information further indicates that the NR user equipment is permitted to use the LTE CRS, wherein the resources comprise: LTE physical downlink control channel (PDCCH), LTE CRS, LTE physical downlink shared channel (PDSCH), NR synchronization signal block (SSB), NR Channel State Information Reference Signals (NR CSI-RS), NR PDCCH control resource set (CORESET), and NR PDSCH demodulation reference signal (DMRS);
receiving, by the NR user equipment, the LTE CRS in the LTE network using one or more of the resources;
processing, by the NR user equipment, the LTE CRS as a channel state information reference signal;
using, by the NR user equipment, the LTE CRS in addition to native NR CSI-RS for tracking;
applying, by the NR user equipment, an LTE CRS filter for channel estimation for LTE signals in addition to an NR channel estimation filter; and
using, by the NR user equipment, the LTE CRS as the CSI-RS for channel acquisition by measuring channel state criteria requested by a network based on the LTE CRS transmission,
wherein the NR network and the LTE network are configured to dynamically share spectrum.
16 . The method of claim 15 , further comprising:
receiving, at the NR user equipment, at least one parameter;
generating, using the at least one parameter, a comparative reference signal; and
comparing the received reference signal to the generated reference signal.
17 . The method of claim 16 , further comprising:
applying machine learning to perform channel estimation based on the reference signal.
18 . The method of claim 17 , wherein the LTE CRS is used instead of the NR CSI-RS.
19 . The method of claim 18 , further comprising:
using, by the NR user equipment, the LTE CRS to enhance channel estimation-based NR demodulation reference signal (DMRS)-based channel estimation without requiring any new reference signal and without requiring the NR user equipment to do wideband channel estimation.
20 . The method of claim 19 , wherein the LTE CRS serves as a temporary radio signal for fast SCell activation, and wherein the resources, occupied by the LTE CRS, are reserved in an NR cell.