Multi-cluster uplink transmission in wireless communication network
A method in a wireless communication device comprises determining transmission powers for at least two clusters, wherein each cluster includes at least one physical resource block (RB), determining a difference in a characteristic of the transmission powers determined for the at least two clusters, and varying a transmit power allocated to at least one cluster if the difference in the characteristic exceeds a power spread threshold, wherein the power allocated to each cluster is a function of pathloss between the wireless communication device and a serving base station.
1. A method in a wireless communication device, the method comprising:
determining transmission powers for at least two clusters, wherein each cluster includes at least one physical resource block;
determining a difference in a characteristic of the transmission powers determined for the at least two clusters; and
reducing a transmit power allocated to at least one cluster if the difference in the power characteristic exceeds the threshold;
wherein reducing the transmit power allocated to the at least one cluster based on:
∑
j
≠
j
0
w
j
(
i
)
·
P
^
PUSCH
,
j
(
i
)
≤
P
^
c
,
max
(
i
)
-
P
^
PUCCH
(
i
)
-
P
^
PUSCH
,
j
0
(
i
)
max
j
(
w
j
(
i
)
P
^
PUSCH
,
j
(
i
)
)
-
min
j
(
w
j
(
i
)
·
P
^
PUSCH
,
j
(
i
)
)
≤
P
spread
,
where
min
j
(
)
is
taken
over
only
positive
-
valued
arguments
where {circumflex over (P)} PUSCH,j (i) is a linear value of the power allocated to a j-th Physical Uplink Shared Channel (“PUSCH”) in subframe i; {circumflex over (P)} c,max (i) is a configured maximum transmit power; {circumflex over (P)} PUCCH (i) is a linear value of the power allocated to a Physical Uplink Control Channel (“PUCCH”) in subframe i; w j (i) is a power scaling factor applied to a j-th PUSCH in subframe i; Index j=j0 corresponds to a PUSCH carrying Uplink Control Information;
wherein a power scaling factor w j (i) is set to zero for at least one index j; and
wherein the power allocated to each cluster is a function of pathloss between the wireless communication device and a serving base station.
2. The method of claim 1 wherein at least one of the at least two clusters is for PUCCH transmission and another of the at least two clusters is for PUSCH transmission.
3. The method of claim 1 wherein the at least two clusters are for PUSCH transmission.