IP Library Granted Patent US 11,026,181
Granted Patent B2
US 11,026,181 · App. 16/319,828 · Granted Jun 1, 2021

Terminal apparatus, base station apparatus, communication method, and integrated circuit

Inventors: Shoichi Suzuki (Sakai, JP); Wataru Ouchi (Sakai, JP); Tomoki Yoshimura (Sakai, JP); Liqing Liu (Sakai, JP); Kimihiko Imamura (Sakai, JP)
Assignees: SHARP KABUSHIKI KAISHA; FG Innovation Company Limited
H04W52/146H04L5/0094H04L27/2636H04W52/14H04W52/18H04W80/08H04L5/0007
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,026,181
App. No.
16/319,828
Granted
Jun 1, 2021
Kind
B2
Abstract

A terminal apparatus transmits uplink information on an uplink physical channel, encodes the uplink information and sets transmission power for the uplink physical channel at least based on a parameter, wherein in a case that a first error correction encoding method is applied to the uplink information, the parameter is given at least based on a product of a first value and a first number of bits before coding per resource element, and in a case that a second error correction encoding method is applied to the uplink information, the parameter is given at least based on a product of a second value and a second number of bits before coding per resource element, the second value being different from the first value, and the second error correction encoding method being different from the first error correction encoding method.

Claims (32)

1. A terminal apparatus comprising:

transmission circuitry configured to transmit uplink information on an uplink physical channel;

coding circuitry configured to encode the uplink information; and

transmission power control circuitry configured to set transmission power for the uplink physical channel, at least based on a parameter, wherein

in a case that a first error correction encoding method is applied to the uplink information, the parameter is given at least based on a product of a first value and a first number of bits before coding per resource element;

in a case that a second error correction encoding method is applied to the uplink information, the parameter is given at least based on a product of a second value and a second number of bits before coding per resource element, the second value being different from the first value, and the second error correction encoding method being different from the first error correction encoding method;

the first value and the second value correspond to a first error correction encoding method and a second error correction encoding method, respectively; and

the first error correction encoding method and the second error correction encoding method are selected from a predetermined set.

2. A base station apparatus comprising:

reception circuitry configured to receive uplink information on an uplink physical channel; and

decoding circuitry configured to decode the uplink information, wherein

the uplink information is decoded at least based on a parameter used for determining transmission power for transmitting the uplink information,

in a case that a first error correction decoding method is applied to the uplink information, the parameter is given at least based on a product of a first value and a first number of bits before coding per resource element;

in a case that a second error correction decoding method is applied to the uplink information, the parameter is given at least based on a product of a second value and a second number of bits before coding per resource element, the second value being different from the first value, and the second error correction encoding method being different from the first error correction encoding method;

the first value and the second value correspond to a first error correction encoding method and a second error correction encoding method, respectively; and

the first error correction encoding method and the second error correction encoding method are selected from a predetermined set.

3. A communication method used for a terminal apparatus, the communication method comprising the steps of:

transmitting uplink information on an uplink physical channel;

encoding the uplink information; and

setting transmission power for the uplink physical channel, at least based on a parameter, wherein

in a case that a first error correction encoding method is applied to the uplink information, the parameter is given at least based on a product of a first value and a first number of bits before coding per resource element;

in a case that a second error correction encoding method is applied to the uplink information, the parameter is given at least based on a product of a second value and a second number of bits before coding per resource element, the second value being different from the first value, and the second error correction encoding method being different from the first error correction encoding method;

the first value and the second value correspond to a first error correction encoding method and a second error correction encoding method, respectively; and

the first error correction encoding method and the second error correction encoding method are selected from a predetermined set.

4. A communication method used for a terminal apparatus, the communication method comprising the steps of:

receiving uplink information on an uplink physical channel; and

decoding the uplink information, wherein

the uplink information is decoded at least based on a parameter used for determining transmission power for transmitting the uplink information,

in a case that a first error correction decoding method is applied to the uplink information, the parameter is given at least based on a product of a first value a first number of bits before coding per resource element;

in a case that a second error correction decoding method is applied to the uplink information, the parameter is given at least based on a product of a second value and a second number of bits before coding per resource element, the second value being different from the first value, and the second error correction encoding method being different from the first error correction encoding method;

the first value and the second value correspond to a first error correction encoding method and a second error correction encoding method, respectively; and

the first error correction encoding method and the second error correction encoding method are selected from a predetermined set.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 24, 2024
From: SHARP KABUSHIKI KAISHA; FG INNOVATION COMPANY LIMITED
To: SHARP KABUSHIKI KAISHA
Reel/Frame 069039/0212 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2019
From: SUZUKI, SHOICHI; OUCHI, WATARU; YOSHIMURA, TOMOKI; LIU, LIQING; IMAMURA, KIMIHIKO
To: SHARP KABUSHIKI KAISHA; FG INNOVATION COMPANY LIMITED
Reel/Frame 049326/0596 →
Priority Claims (1)
JP JP2016-147057 · Jul 27, 2016 · national
Continuity (1)
Related Publication 20190268854A1 · Aug 29, 2019