IP Library › Granted Patent US 10,932,199
Granted Patent B2
US 10,932,199 · App. 15/762,064 · Granted Feb 23, 2021

Method and terminal for implementing uplink power control

Inventors: Weimin Li (Guangdong, CN); Bo Dai (Guangdong, CN); Yifei Yuan (Guangdong, CN); Huiying Fang (Guangdong, CN); Kun Liu (Guangdong, CN); Weiwei Yang (Guangdong, CN); Shupeng Li (Guangdong, CN)
Assignee: ZTE CORPORATION
H04W52/146H04W52/242H04W52/367H04W72/085H04W52/365
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Quick Facts
Patent No.
US 10,932,199
App. No.
15/762,064
Granted
Feb 23, 2021
Kind
B2
Abstract

A method and a terminal for uplink power control are disclosed. The method comprising: determining the uplink transmit power by a terminal according to a transmission scenario in which the terminal belongs. In embodiments of present disclosure, uplink transmit power is determined by a terminal for uplink transmission, wherein a scheme of uplink power control is achieved.

Claims (17)

1. A method performed by a wireless communication device, comprising:

determining a first uplink transmit power for a first transmission mode according to a formula: min{Pmax, 10*log 10(M)+Po+alpha*PL+Delta+fi},

wherein Pmax is a maximum transmit power of the wireless communication device, Po is a target received power parameter, PL is a downlink path loss estimated by the wireless communication device, alpha is a path loss compensation factor, Delta is a power offset, fi is a power adjustment amount, and M is a resource bandwidth,

wherein the target received power parameter Po is a sum of a common power parameter Po_nominal and a specific power parameter Po_UE, and

wherein the value of the resource bandwidth M is determined according to a preconfigured transmission mode, and a difference between a carrier bandwidth of the first transmission mode and a carrier bandwidth of the preconfigured transmission mode, wherein the preconfigured transmission mode includes one of the following: a first multi-tone transmission with a carrier bandwidth being a first bandwidth, and a second multi-tone transmission with a carrier bandwidth being a second bandwidth, wherein the first bandwidth is different from the second bandwidth.

2. A non-transitory computer-readable medium having stored thereon computer-executable instructions that when executed carry out a method, the method comprising:

determining a first uplink transmit power for a first transmission mode according to a formula: min{Pmax, 10*log 10(M)+Po+alpha*PL+Delta+fi},

wherein Pmax is a maximum transmit power of the wireless communication device, Po is a target received power parameter, PL is a downlink path loss estimated by the wireless communication device, alpha is a path loss compensation factor, Delta is a power offset, fi is a power adjustment amount, and M is a resource bandwidth,

wherein the target received power parameter Po is a sum of a common power parameter Po_nominal and a specific power parameter Po_UE, and

wherein the value of the resource bandwidth M is determined according to a preconfigured transmission mode, and a difference between a carrier bandwidth of the first transmission mode and a carrier bandwidth of the preconfigured transmission mode, wherein the preconfigured transmission mode includes one of the following: a first multi-tone transmission with a carrier bandwidth being a first bandwidth, and a second multi-tone transmission with a carrier bandwidth being a second bandwidth, wherein the first bandwidth is different from the second bandwidth.

3. An apparatus, comprising:

a memory; and

at least one processor coupled to the memory, the at least one processor configured to:

determine a first uplink transmit power for a first transmission mode according to a formula: min{Pmax, 10*log 10(M)+Po+alpha*PL+Delta+fi},

wherein Pmax is a maximum transmit power of the wireless communication device, Po is a target received power parameter, PL is a downlink path loss estimated by the wireless communication device, alpha is a path loss compensation factor, Delta is a power offset, fi is a power adjustment amount, and M is a resource bandwidth,

wherein the target received power parameter Po is a sum of a common power parameter Po_nominal and a specific power parameter Po_UE, and

wherein the value of the resource bandwidth M is determined according to a preconfigured transmission mode, and a difference between a carrier bandwidth of the first transmission mode and a carrier bandwidth of the preconfigured transmission mode, wherein the preconfigured transmission mode includes one of the following: a first multi-tone transmission with a carrier bandwidth being a first bandwidth, and a second multi-tone transmission with a carrier bandwidth being a second bandwidth, wherein the first bandwidth is different from the second bandwidth.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2018
From: LI, WEIMIN; DAI, BO; YUAN, YIFEI; FANG, HUIYING; LIU, KUN; YANG, WEIWEI; LI, SHUPENG
To: ZTE CORPORATION
Reel/Frame 045307/0046 →
Priority Claims (2)
CN 2016 1 0018690 · Jan 11, 2016 · national
CN 2016 1 0081444 · Feb 5, 2016 · national
Continuity (1)
Related Publication 20180317180A1 · Nov 1, 2018
Cited By (1)
US 12,739,757