Sidelink resource allocation in unlicensed spectrum
Certain aspects of the present disclosure provide techniques for communicating using sidelink resources allocated in an unlicensed spectrum. A method that may be performed by a first UE includes establishing a connection with a second UE for sidelink communication in an unlicensed spectrum and communicating with the second UE via the connection using one or more sidelink sub-channels in the unlicensed spectrum according to a mapping between sidelink sub-channels and resource block (RB) sets of the unlicensed spectrum, wherein the unlicensed spectrum comprises a plurality of RB sets and one or more guard bands disposed between RB sets in the plurality RB sets.
1 . A first user equipment (UE), comprising:
one or more processors configured to execute instructions stored on at least one memory to cause the first UE to:
receive an indication of a plurality of resource block (RB) sets in an unlicensed spectrum, wherein one or more guard bands are disposed between RB sets in the plurality of RB sets; and
communicate with a second UE using one or more sidelink sub-channels in the unlicensed spectrum according to a mapping between the one or more sidelink sub-channels and the plurality of RB sets, wherein the mapping comprises the one or more sidelink sub-channels mapped continuously across the RB sets of the plurality of RB sets and the one or more guard bands in the unlicensed spectrum.
2 . The first UE of claim 1 , wherein the mapping further comprises multiple sidelink sub-channels being mapped to at least one RB set of the plurality of RB sets.
3 . The first UE of claim 1 , wherein, in order to communicate with the second UE using the one or more sidelink sub-channels, the one or more processors are configured to cause the first UE to:
perform a listen before talk (LBT) procedure across a first RB set and a second RB set to determine whether resources in the first RB set and resources in the second RB set are available for use; and
communicate with the second UE using the first RB set and the second RB set when, based on the LBT procedure, the resources in the first RB set are available for use and the resources in the second RB set are available for use.
4 . The first UE of claim 3 , wherein, in order to communicate with the second UE, the one or more processors are configured to cause the first UE to additionally communicate with the second UE using a first guard band disposed between the first RB set and the second RB set.
5 . The first UE of claim 3 , wherein, in order to communicate with the second UE, the one or more processors are configured to cause the first UE to refrain from communicating with the second UE using a first guard band disposed between the first RB set and the second RB set.
6 . The first UE of claim 1 , wherein the mapping between the sidelink sub-channels and RB sets of the unlicensed spectrum comprises the sidelink sub-channels being mapped continuously across the plurality of RB sets and not the one or more guard bands in the unlicensed spectrum.
7 . The first UE of claim 6 , wherein a first sidelink sub-channel of the one or more sidelink sub-channels and a second sidelink sub-channel of the one or more sidelink sub-channels map to a first RB set of the unlicensed spectrum.
8 . The first UE of claim 7 , wherein the second sidelink sub-channel occupies less bandwidth than the first sidelink sub-channel.
9 . The first UE of claim 8 , wherein the second sidelink sub-channel does not include a physical sidelink control channel (PSCCH) based on an amount of resources in the second sidelink sub-channel available for use being below a threshold.
10 . The first UE of claim 7 , wherein an amount of bandwidth occupied by each of the sidelink sub-channels is based on a relative frequency location of the corresponding sidelink sub-channel with respect to the one or more guard bands.
11 . The first UE of claim 7 , wherein:
a first portion of the second sidelink sub-channel is included within the first RB set of the unlicensed spectrum;
a second portion of the second sidelink sub-channel is included within a second RB set of the unlicensed spectrum; and
a guard band of the one or more guard bands is disposed between the first RB set and the second RB set.
12 . The first UE of claim 11 , wherein a bandwidth of the first sidelink sub-channel is equal to a sum of a bandwidth of the first portion of the second sidelink sub-channel and a bandwidth of the second portion of the second sidelink sub-channel.
13 . The first UE of claim 11 , wherein:
a physical sidelink control channel (PSCCH) in the second sidelink sub-channel is rate matched around the guard band; and
a physical sidelink shared channel (PSSCH) in the second sidelink sub-channel is one of rate matched into the guard band or rate matched around the guard band based on at least one of a capability of the first UE or a capability of the second UE.
14 . The first UE of claim 6 , wherein, in order to communicate with the second UE using the one or more sidelink sub-channels, the one or more processors are configured to cause the first UE to:
perform a listen before talk (LBT) procedure across a first RB set and a second RB set to determine whether resources in the first RB set and resources in the second RB set are available for use; and
communicate with the second UE using at least one of the one or more sidelink sub-channels spanning the first RB set and the second RB set when, based on the LBT procedure, the resources in the first RB set are available for use and the resources in the second RB set are available for use.
15 . The first UE of claim 14 , wherein, in order to communicate with the second UE using the at least one of the one or more sidelink sub-channels, the one or more processors are further configured to cause the first UE to communicate with the second UE using a guard band disposed between the first RB set and the second RB set based on a capability of at least one of the first UE or the second UE.
16 . The first UE of claim 14 , wherein, in order to communicate with the second UE using the at least one of the sidelink sub-channels, the one or more processors are configured to cause the first UE to refrain from communicating with the second UE using a guard band disposed between the first RB set and the second RB set based on a capability of at least one of the first UE or the second UE.
17 . The first UE of claim 1 , wherein the mapping between the sidelink sub-channels and the RB sets of the unlicensed spectrum comprises each of the sidelink sub-channels being fully confined within a corresponding RB set of the plurality of RB sets such that no sidelink sub-channel spans a guard band disposed between two RB set of the plurality of RB sets.
18 . The first UE of claim 17 , wherein:
the one or more sidelink sub-channels comprise a first sidelink sub-channel confined within a first RB set of the unlicensed spectrum and a second sidelink sub-channel confined within a second RB set of the unlicensed spectrum;
the first RB set is disposed adjacent to the second RB set; and
the first sidelink sub-channel is disposed adjacent to the second sidelink sub-channel but separated from the second sidelink sub-channel by at least a guard band.
19 . The first UE of claim 18 , wherein:
the one or more processors are further configured to cause the first UE to communicate an assignment of resources for communicating with the second UE; and
the assignment of resources includes resources disposed between the first sidelink sub-channel and the second sidelink sub-channel, including resources in the guard band, and resources in the first sidelink sub-channel and the second sidelink sub-channel.
20 . The first UE of claim 19 , wherein, in order to communicate with the second UE, the one or more processors are configured to cause the first UE to communicate via the resources disposed between the first sidelink sub-channel and the second sidelink sub-channel based on at least one of a capability of the first UE or the second UE.
21 . The first UE of claim 18 , wherein:
the one or more processors are further configured to cause the first UE to communicate an assignment of resources for communicating with the second UE; and
the assignment of resources includes a set of resources within the first sidelink sub-channel and the second sidelink sub-channel and excludes resources disposed between the first sidelink sub-channel and the second sidelink sub-channel.
22 . The first UE of claim 18 , wherein:
the one or more processors are further configured to cause the first UE to communicate an assignment of resources for communicating with the second UE; and
the assignment of resources includes a set of resources disposed between the first sidelink sub-channel and the second sidelink sub-channel, not including resources in the guard band, and resources in the first sidelink sub-channel and the second sidelink sub-channel.
23 . The first UE of claim 17 , wherein the one or more sidelink sub-channels comprise at least a first set of sidelink sub-channels confined within a first RB set of the unlicensed spectrum and a second set of sidelink sub-channels confined within a second RB set of the unlicensed spectrum.
24 . The first UE of claim 23 , wherein:
the first set of sidelink sub-channels comprises at least a first sidelink sub-channel; and
the second set of sidelink sub-channels comprises at least a second sidelink sub-channel.
25 . The first UE of claim 24 , wherein a first RB in frequency of the first sidelink sub-channel is defined with respect to a lowest indexed RB of a sidelink bandwidth part.
26 . The first UE of claim 25 , wherein the first RB in frequency of the first sidelink sub-channel starts at a first offset in frequency from a start of the first RB set of the unlicensed spectrum.
27 . The first UE of claim 26 , wherein a first RB in frequency of the second sidelink sub-channel starts the first offset from a start of the second RB set.
28 . The first UE of claim 26 , wherein a first RB in frequency of the second sidelink sub-channel is aligned with a start of the second RB set of the unlicensed spectrum.
29 . The first UE of claim 24 , wherein a first RB in frequency of the first sidelink sub-channel is defined with respect to a lowest indexed RB of the first RB set of the unlicensed spectrum.
30 . The first UE of claim 29 , wherein the one or more processors are further configured to cause the first UE to:
communicate an indication of a starting RB index, indicating the first RB in frequency of the first sidelink sub-channel; and
communicate an indication of a number of sidelink sub-channels included within at least the first set of sidelink sub-channels confined within the first RB set of the unlicensed spectrum.
31 . The first UE of claim 30 , wherein the one or more processors are configured to cause the first UE to communicate with the second UE based, at least in part, on the starting RB index and the number of sidelink sub-channels included within at least the first set of sidelink sub-channels confined within the first RB set of the unlicensed spectrum.
32 . A method for wireless communication by first user equipment (UE), comprising:
receiving an indication of a plurality of resource block (RB) sets in an unlicensed spectrum, wherein one or more guard bands are disposed between RB sets in the plurality of RB sets; and
communicating with a second UE using one or more sidelink sub-channels in the unlicensed spectrum according to a mapping between the one or more sidelink sub-channels and the plurality of RB sets, wherein the mapping comprises the one or more sidelink sub-channels mapped continuously across the RB sets of the plurality of RB sets and the one or more guard bands in the unlicensed spectrum.
33 . A first user equipment (UE), comprising:
means for receiving an indication of a plurality of resource block (RB) sets in an unlicensed spectrum, wherein one or more guard bands are disposed between RB sets in the plurality of RB sets; and
means for communicating with a second UE using one or more sidelink sub-channels in the unlicensed spectrum according to a mapping between the one or more sidelink sub-channels and the plurality of RB sets, wherein the mapping comprises the one or more sidelink sub-channels mapped continuously across the RB sets of the plurality of RB sets and the one or more guard bands in the unlicensed spectrum.