IP Library Granted Patent US 11,716,696
Granted Patent B2
US 11,716,696 · App. 16/336,796 · Granted Aug 1, 2023

User equipment and base station

Inventors: Hideaki Takahashi (Tokyo, JP); Hiromasa Umeda (Tokyo, JP); Kei Andou (Tokyo, JP)
Assignee: NTT DOCOMO, INC.
H04W52/367H04B1/04H04W36/0085H04W52/38H04W74/08
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 11,716,696
App. No.
16/336,796
Granted
Aug 1, 2023
Kind
B2
Abstract

Provided is a power control technique for a user equipment that supports high transmission power. An aspect of the invention relates to user equipment that supports a first power class in a certain frequency band, the user equipment including a transceiver that transmits radio signals to and receives radio signals from a base station; and a transmission power controller that controls transmission power to the base station, wherein, upon accessing the base station in the frequency band provided with, as a default power class, a second power class that is lower than the first power class, the transmission power controller controls the transmission power in accordance with a regulation of the default power class, and the transmission power controller controls the transmission power so that the transmission power becomes less than or equal to maximum output power of the default power class.

Claims (22)

1. A terminal comprising:

a transceiver that transmits radio signals to and receives radio signals from a base station; and

a controller that controls maximum transmission power to be less than or equal to maximum transmission power of a default power class by applying a regulation of the default power class to a supported first power class, upon transmitting a radio signal to the base station in a frequency band for which a second power class that is lower than the supported first power class is specified as the default power class,

wherein the controller detects whether maximum transmission power of the frequency band is reported from the base station,

wherein, upon detecting that an information element P-Max indicating the maximum transmission power of the frequency band is not included in system information received from the base station prior to establishing a Radio Resource Control (RRC) connection with the base station, the controller controls transmission power for transmitting a random access preamble prior to establishing the RRC connection to be less than or equal to the maximum transmission power of the default power class by applying the regulation of the default power class to the supported first power class, and

wherein, upon detecting that an information element P-Max indicating the maximum transmission power of the frequency band is included in system information received from the base station prior to establishing an RRC connection with the base station and a value higher than the maximum transmission power of the default power class is set to the P-Max, the controller controls transmission power for transmitting a random access preamble prior to establishing the RRC connection to be less than or equal to a maximum transmission power of the supported first power class by applying a regulation of the supported first power class.

2. The terminal according to claim 1 , wherein, upon detecting that the maximum transmission power in the frequency band is reported and that the reported maximum transmission power is the maximum transmission power of the default power class, the controller controls, in accordance with the regulation of the default power class in the frequency band, the maximum transmission power from the terminal to be the lower one of the maximum transmission power of the supported first power class and the reported maximum transmission power.

3. A communication method by a terminal, the method comprising:

transmitting radio signals to and receiving radio signals from a base station;

controlling maximum transmission power to be less than or equal to maximum transmission power of a default power class by applying a regulation of the default power class to a supported first power class, upon transmitting a radio signal to the base station in a frequency band for which a second power class that is lower than the supported first power class is specified as the default power class; and

detecting whether maximum transmission power of the frequency band is reported from the base station,

wherein, upon detecting that an information element P-Max indicating the maximum transmission power of the frequency band is not included in system information received from the base station prior to establishing a Radio Resource Control (RRC) connection with the base station, the controlling controls transmission power for transmitting a random access preamble prior to establishing the RRC connection to be less than or equal to the maximum transmission power of the default power class by applying the regulation of the default power class to the supported first power class, and

wherein, upon detecting that an information element P-Max indicating the maximum transmission power of the frequency band is included in system information received from the base station prior to establishing an RRC connection with the base station and a value higher than the maximum transmission power of the default power class is set to the P-Max, the controlling controls transmission power for transmitting a random access preamble prior to establishing the RRC connection to be less than or equal to a maximum transmission power of the supported first power class by applying a regulation of the supported first power class.

4. A radio communication system comprising:

a base station that communicates with a terminal; and

the terminal,

wherein the terminal includes:

a transceiver that transmits radio signals to and receives radio signals from a base station; and

a controller that controls maximum transmission power to be less than or equal to maximum transmission power of a default power class by applying a regulation of the default power class to a supported first power class, upon transmitting a radio signal to the base station in a frequency band for which a second power class that is lower than the supported first power class is specified as the default power class,

wherein the controller detects whether maximum transmission power of the frequency band is reported from the base station,

wherein, upon detecting that an information element P-Max indicating the maximum transmission power of the frequency band is not included in system information received from the base station prior to establishing a Radio Resource Control (RRC) connection with the base station, the controller controls transmission power for transmitting a random access preamble prior to establishing the RRC connection to be less than or equal to the maximum transmission power of the default power class by applying the regulation of the default power class to the supported first power class, and

wherein, upon detecting that an information element P-Max indicating the maximum transmission power of the frequency band is included in system information received from the base station prior to establishing an RRC connection with the base station and a value higher than the maximum transmission power of the default power class is set to the P-Max, the controller controls transmission power for transmitting a random access preamble prior to establishing the RRC connection to be less than or equal to a maximum transmission power of the supported first power class by applying a regulation of the supported first power class.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 6, 2019
From: TAKAHASHI, HIDEAKI; UMEDA, HIROMASA; ANDOU, KEI
To: NTT DOCOMO, INC.
Reel/Frame 049091/0551 →
Priority Claims (1)
JP 2016-192354 · Sep 29, 2016 · national
Continuity (1)
Related Publication 20190223119A1 · Jul 18, 2019
Cited By (2)
US 12,490,201 US 12,495,370