IP Library Granted Patent US 9,872,260
Granted Patent B2
US 9,872,260 · App. 15/168,069 · Granted Jan 16, 2018

Power adjustment method, computer-readable recording medium and power adjustment apparatus

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Quick Facts
Patent No.
US 9,872,260
App. No.
15/168,069
Granted
Jan 16, 2018
Kind
B2
Abstract

A power adjustment method includes: measuring output power that is obtained when input power to be amplified in a linear region is input to a power amplifier configured to amplify input power linearly in the linear region and amplify input power nonlinearly in a nonlinear region; deriving a straight line connecting a measurement point corresponding to the measured output power and a boundary point between the linear region and the nonlinear region in a coordinate plane representing input/output characteristics; acquiring information on an approximate equation that is stored in advance in correspondence with the measured output power, the approximate equation representing a relation between input power and output power in the nonlinear region; and storing information on the derived straight line and the acquired information on the approximate equation in a semiconductor integrated circuit provided at a preceding stage of the power amplifier.

Claims (22)

1. A power adjustment method comprising:

measuring first output power that is obtained when first input power to be amplified in a linear region is input to a power amplifier configured to amplify input power linearly in the linear region in which output power is less than a predetermined value and amplify the input power nonlinearly in a nonlinear region in which the output power is equal to or more than the predetermined value;

deriving, using a processor, a straight line connecting a measurement point representing the first input power and the first output power and a boundary point that is stored in advance and represents the input power and the output power at a boundary between the linear region and the nonlinear region, in a coordinate plane having an axis of the input power and an axis of the output power;

acquiring, using the processor, a coefficient of an equation that is stored in advance in correspondence with the first output power, the equation representing a relation between the input power and the output power in the nonlinear region; and

storing information on the derived straight line and the acquired coefficient of the equation in a semiconductor integrated circuit provided at a preceding stage of the power amplifier.

2. The power adjustment method according to claim 1 , further comprising determining a gain of the power amplifier based on the measured first output power, wherein

the deriving includes deriving the straight line connecting the measurement point and the boundary point corresponding to the determined gain among a plurality of boundary points that are stored in advance in correspondence with a plurality of gains of the power amplifier.

3. The power adjustment method according to claim 1 , further comprising determining a gain of the power amplifier based on the measured first output power, wherein

the acquiring includes acquiring information on the equation corresponding to the determined gain among a plurality of equations that are stored in advance in correspondence with a plurality of gains of the power amplifier.

4. A non-transitory computer-readable recording medium having stored therein a power adjustment program that causes a computer to execute a process comprising:

acquiring first output power that is obtained when first input power to be amplified in a linear region is input to a power amplifier configured to amplify input power linearly in the linear region in which output power is less than a predetermined value and amplify the input power nonlinearly in a nonlinear region in which the output power is equal to or more than the predetermined value;

deriving a straight line connecting a measurement point representing the first input power and the first output power and a boundary point that is stored in advance and represents the input power and the output power at a boundary between the linear region and the nonlinear region, in a coordinate plane having an axis of the input power and an axis of the output power;

acquiring a coefficient of an equation that is stored in advance in correspondence with the first output power, the equation representing a relation between the input power and the output power in the nonlinear region; and

storing information on the derived straight line and the acquired coefficient of the equation in a semiconductor integrated circuit provided at a preceding stage of the power amplifier.

5. A power adjustment apparatus comprising:

a memory that stores therein, about a power amplifier configured to amplify input power linearly in a linear region in which output power is less than a predetermined value and amplify the input power nonlinearly in a nonlinear region in which the output power is equal to or more than the predetermined value, a boundary point representing the input power and the output power at a boundary between the linear region and the nonlinear region and a coefficient of an equation representing a relation between the input power and the output power in the nonlinear region; and

a processor connected to the memory, wherein

the processor executes a process comprising:

acquiring first output power that is obtained when first input power to be amplified in the linear region is input to a power amplifier to be adjusted;

deriving a straight line connecting a measurement point representing the first input power and the first output power and the boundary point in a coordinate plane having an axis of the input power and an axis of the output power;

acquiring the coefficient of the equation that is stored in the memory in correspondence with the first output power; and

storing information on the derived straight line and the acquired coefficient of the equation in a semiconductor integrated circuit provided at a preceding stage of the power amplifier to be adjusted.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2024
From: YAMATO KANZAI LIMITED
To: FCNT LLC
Reel/Frame 066908/0856 →
CHANGE OF NAME Recorded Mar 21, 2024
From: FCNT LIMITED
To: YAMATO KANZAI LIMITED
Reel/Frame 066854/0942 →
CHANGE OF NAME Recorded Mar 19, 2024
From: FUJITSU CONNECTED TECHNOLOGIES LIMITED
To: FCNT LIMITED
Reel/Frame 066832/0399 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 20, 2018
From: FUJITSU LIMITED
To: FUJITSU CONNECTED TECHNOLOGIES LIMITED
Reel/Frame 047609/0349 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 7, 2016
From: HACHIYA, NOBUHIDE; TANII, TAKASHI; MURAKAMI, YASUHIRO; YAMAMORI, YUSUKE; TAKEUCHI, YASUAKI; HIRAO, MASAHIKO; MURAKAMI, MANABU; HAYASHIHARA, MIKIO
To: FUJITSU LIMITED
Reel/Frame 039656/0310 →