Method and device for feeding back channel state information, and method and device for determining channel state information
Method and device for feeding back channel state information (CSI) and method and device for determining CSI are provided. The method for feeding back CSI includes feeding back CSI according to a determined structure of the CSI, where the structure of the CSI includes M CSI subsets; an m-th CSI subset among the M CSI subsets includes km channel information components. The M CSI subsets include N CSI subsets, and an n-th CSI subset among the N CSI subsets includes Ln channel information components which are determined by transforming a group of base vectors.
1. A method for feeding back channel state information (CSI), comprising:
feeding back CSI according to a determined structure of the CSI;
wherein the structure of the CSI comprises M CSI subsets;
wherein an m-th CSI subset among the M CSI subsets comprises k m channel information components; and
wherein the channel information components of an m-th CSI subset among the M CSI subsets are determined by performing at least one of an amplitude expansion or a phase transformation on a group of base vectors which comprises a plurality of column vectors in an identity matrix;
wherein M and m are positive integers, k m is an integer greater than or equal to 0; and
wherein each of the CSI subsets is associated with at least one of:
a measurement pilot port group; or
a layer; and
wherein the CSI comprises precoding indication information, and information indicated by the precoding indication information of a k-th pilot port group at an h-th layer is determined by performing at least one of an amplitude expansion or a phase transformation on a group of base vectors which comprises a plurality of column vectors in an identity matrix, wherein k and h are integers; and
wherein the identity matrix is an n×n square matrix with ones on the main diagonal and zeros elsewhere, n is an integer greater than or equal to 1.
2. The method of claim 1 , wherein the k m channel information components comprise at least one of:
B m pieces of precoding indication information, wherein B m is an integer greater than or equal to 0;
A m pieces of weighting coefficient amplitude indication information, wherein A m is an integer greater than or equal to 0; or
P m pieces of weighting coefficient phase indication information, wherein P m is an integer greater than or equal to 0.
3. A method for determining channel state information (CSI), comprising:
determining CSI fed back by a terminal according to a structure of the CSI;
wherein a structure of the CSI comprises M CSI subsets;
wherein an m-th CSI subset among the M CSI subsets comprises k m channel information components; and
wherein the channel information components of an m-th CSI subset among the M CSI subsets are determined by performing at least one of an amplitude expansion or a phase transformation on a group of base vectors which comprises a plurality of column vectors in an identity matrix;
wherein M and m are positive integers, k m is an integer greater than or equal to 0; and
wherein each of the CSI subsets is associated with at least one of:
a measurement pilot port group; or
a layer; and
wherein the CSI comprises precoding indication information, and information indicated by the precoding indication information of a k-th pilot port group at an h-th layer is determined by performing at least one of an amplitude expansion or a phase transformation on a group of base vectors which comprises a plurality of column vectors in an identity matrix, wherein k and h are integers; and
wherein the identity matrix is an n×n square matrix with ones on the main diagonal and zeros elsewhere, n is an integer greater than or equal to 1.
4. The method of claim 3 , wherein the k m channel information components comprise at least one of:
B m pieces of precoding indication information, wherein B m is an integer greater than or equal to 0;
A m pieces of weighting coefficient amplitude indication information, wherein A m is an integer greater than or equal to 0; or
P m pieces of weighting coefficient phase indication information, wherein P m is an integer greater than or equal to 0.
5. A device for feeding back channel state information (CSI), comprising:
a first processor; and
a first memory, configured to store instructions executable by the first processor;
wherein the first processor is configured to:
feed back CSI according to a determined structure of the CSI;
wherein the structure of the CSI comprises M CSI subsets;
wherein an m-th CSI subset among the M CSI subsets comprises k m channel information components; and
wherein the channel information components of an m-th CSI subset among the M CSI subsets are determined by performing at least one of an amplitude expansion or a phase transformation on a group of base vectors which comprises a plurality of column vectors in an identity matrix;
wherein M and m are positive integers, k m is an integer greater than or equal to 0; and
wherein each of the CSI subsets is associated with at least one of:
a measurement pilot port group; or
a layer; and
wherein the CSI comprises precoding indication information, and information indicated by the precoding indication information of a k-th pilot port group at an h-th layer is determined by performing at least one of an amplitude expansion or a phase transformation on a group of base vectors which comprises a plurality of column vectors in an identity matrix, wherein k and h are integers; and
wherein the identity matrix is an n×n square matrix with ones on the main diagonal and zeros elsewhere, n is an integer greater than or equal to 1.
6. The device of claim 5 , wherein the k m channel information components comprise at least one of:
B m pieces of precoding indication information, wherein B m is an integer greater than or equal to 0;
A m pieces of weighting coefficient amplitude indication information, wherein A m is an integer greater than or equal to 0; or
P m pieces of weighting coefficient phase indication information, wherein P m is an integer greater than or equal to 0.
7. A device for determining channel state information (CSI), comprising:
a second processor; and
a second memory, configured to store instructions executable by the second processor;
wherein the second processor is configured to:
determine CSI fed back by a terminal according to a structure of the CSI;
wherein a structure of the CSI comprises M CSI subsets;
wherein an m-th CSI subset among the M CSI subsets comprises k m channel information components; and
wherein the channel information components of an m-th CSI subset among the M CSI subsets are determined by performing at least one of an amplitude expansion or a phase transformation on a group of base vectors which comprises a plurality of column vectors in an identity matrix;
wherein M and m are positive integers, k m is an integer greater than or equal to 0; and
wherein each of the CSI subsets is associated with at least one of:
a measurement pilot port group; or
a layer; and
wherein the CSI comprises precoding indication information, and information indicated by the precoding indication information of a k-th pilot port group at an h-th layer is determined by performing at least one of an amplitude expansion or a phase transformation on a group of base vectors which comprises a plurality of column vectors in an identity matrix, wherein k and h are integers; and
wherein the identity matrix is an n×n square matrix with ones on the main diagonal and zeros elsewhere, n is an integer greater than or equal to 1.
8. The device of claim 7 , wherein the k m channel information components comprise at least one of:
B m pieces of precoding indication information, wherein B m is an integer greater than or equal to 0;
A m pieces of weighting coefficient amplitude indication information, wherein A m is an integer greater than or equal to 0; or
P m pieces of weighting coefficient phase indication information, wherein P m is an integer greater than or equal to 0.