IP Library Granted Patent US 12693394
Granted Patent B2
US 12693394 · App. 18/461,362 · Granted Jul 28, 2026

Apparatus and method for measuring distance and/or velocity of object

Inventors: Yumiko Kato (Osaka, JP); Kohei Kikuchi (Osaka, JP); Kenji Narumi (Osaka, JP); Hiroyuki Takagi (Osaka, JP); Yasuhisa Inada (Osaka, JP)
Assignee: Panasonic Intellectual Property Management Co., Ltd.
G01S7/4911G01S7/4816G01S17/58
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Quick Facts
Patent No.
US 12693394
App. No.
18/461,362
Granted
Jul 28, 2026
Kind
B2
Abstract

A measurement apparatus includes a light source, an interference optical system, a photodetector, a processing circuit, and a storage apparatus. The interference optical system splits light emitted from the light source into reference light and output light and generates interfering light between reflected light resulting from reflection of the output light on an object and the reference light. The photodetector outputs a detection signal corresponding to strength of the interfering light. The processing circuit modulates the frequency of the light outputted from the light source with a period including an up-chirp duration in which the frequency increases and a down-chirp duration in which the frequency decreases. The storage apparatus stores first correction data for the up-chirp duration and second correction data for the down-chirp duration. The processing circuit determines distance or velocity based on a signal obtained by correcting the detection signal based on the first or second correction data.

Claims (53)

1 . A measurement apparatus, comprising:

a light source that emits light whose frequency is modulated;

an interference optical system that splits the light emitted from the light source into reference light and output light and generates interfering light between reflected light resulting from reflection of the output light on an object and the reference light;

a photodetector that receives the interfering light and outputs a detection signal corresponding to strength of the interfering light;

a processing circuit that controls the light source to modulate the frequency of the light in a period including an up-chirp duration in which the frequency increases and a down-chirp duration in which the frequency decreases, and based on the detection signal, generates and outputs measurement data concerning distance and/or velocity of the object; and

a storage apparatus that stores first correction data for the up-chirp duration and second correction data for the down-chirp duration, wherein

the processing circuit generates the measurement data, based on a first corrected signal obtained by correcting a part of the detection signal corresponding to the up-chirp duration based on the first correction data and/or a second corrected signal obtained by correcting a part of the detection signal corresponding to the down-chirp duration based on the second correction data.

2 . The measurement apparatus according to claim 1 , wherein the processing circuit determines frequency of the first corrected signal and frequency of the second corrected signal, determines distance from the measurement apparatus to the object based on the frequency of the first corrected signal and the frequency of the second corrected signal, and generates the measurement data including information on the distance.

3 . The measurement apparatus according to claim 1 , wherein the processing circuit determines frequency of the first corrected signal and frequency of the second corrected signal, and

determines velocity of the object based on a difference between the frequency of the first corrected signal and the frequency of the second corrected signal and generates the measurement data including information on the velocity.

4 . The measurement apparatus according to claim 1 , wherein

the processing circuit changes the frequency of the light emitted from the light source by changing control voltage to be applied to the light source,

the first correction data and the second correction data are data of a table or a function that defines correspondence relationship between the control voltage and a correction value, and

the processing circuit corrects the detection signal based on the correction value corresponding to the control voltage.

5 . The measurement apparatus according to claim 4 , wherein

the first correction data are data of a table or a function that defines the correspondence relationship between the control voltage and the correction value in a first time period as a part of the up-chirp duration,

the second correction data are data of a table or a function that defines the correspondence relationship between the control voltage and the correction value in a second time period as a part of the down-chirp duration, and

the processing circuit

extracts from the detection signal, a first signal corresponding to the first time period and a second signal corresponding to the second time period,

generates the first corrected signal by correcting the first signal based on the correction value in the first correction data, and

generates the second corrected signal by correcting the second signal based on the correction value in the second correction data.

6 . The measurement apparatus according to claim 1 , wherein

the interference optical system splits the light emitted from the light source into the output light, first reference light as the reference light, and second reference light,

the measurement apparatus further includes a measurement device that measures wavelength or frequency of the second reference light, and

the first correction data and the second correction data are data of a table or a function that defines correspondence relationship between the wavelength or the frequency of the second reference light and a correction value.

7 . The measurement apparatus according to claim 6 , wherein

the first correction data are data of a table or a function that defines the correspondence relationship between the wavelength or the frequency of the second reference light and the correction value in a first time period as a part of the up-chirp duration,

the second correction data are data of a table or a function that defines the correspondence relationship between the wavelength or the frequency of the second reference light and the correction value in a second time period as a part of the down-chirp duration, and

the processing circuit

extracts from the detection signal, a first signal corresponding to the first time period and a second signal corresponding to the second time period,

generates the first corrected signal by correcting the first signal based on the correction value in the first correction data, and

generates the second corrected signal by correcting the second signal based on the correction value in the second correction data.

8 . The measurement apparatus according to claim 1 , wherein the processing circuit causes the light source to emit the light in which a period of frequency modulation is consistent, and

the first correction data and the second correction data are data of a table or a function that defines correspondence relationship between a phase in the period of the frequency modulation and a correction value.

9 . The measurement apparatus according to claim 1 , wherein the first correction data and the second correction data are data of a table or a function that defines correspondence relationship between time from a reference point of time in frequency modulation of the light source and a correction value.

10 . The measurement apparatus according to claim 1 , wherein the first correction data and the second correction data are data of a table or a function that includes information on a correction value to alter timing of sampling of the detection signal.

11 . A method executed by a computer in a system including a measurement apparatus that includes

a light source that emits light whose frequency is modulated in a period including an up-chirp duration in which the frequency increases and a down-chirp duration in which the frequency decreases,

an interference optical system that splits the light emitted from the light source into reference light and output light and generates interfering light between reflected light resulting from reflection of the output light on an object and the reference light,

a photodetector that receives the interfering light and outputs a detection signal corresponding to strength of the interfering light, and

a storage apparatus that stores first correction data for the up-chirp duration and second correction data for the down-chirp duration,

the method comprising:

generating a first corrected signal by correcting a part of the detection signal corresponding to the up-chirp duration based on the first correction data and/or a second corrected signal by correcting a part of the detection signal corresponding to the down-chirp duration based on the second correction data; and

generating and outputting measurement data concerning distance and/or velocity of the object based on the first corrected signal and/or the second corrected signal.

12 . A non-transitory computer-readable medium having a program executed by a computer, the computer being configured to control a measurement apparatus,

wherein the measurement apparatus includes

a light source that emits light whose frequency is modulated in a period including an up-chirp duration in which the frequency increases and a down-chirp duration in which the frequency decreases,

an interference optical system that splits the light emitted from the light source into reference light and output light and generates interfering light between reflected light resulting from reflection of the output light on an object and the reference light,

a photodetector that receives the interfering light and outputs a detection signal corresponding to strength of the interfering light, and

a storage apparatus that stores first correction data for the up-chirp duration and second correction data for the down-chirp duration,

the program causing the computer to execute operations comprising:

generating a first corrected signal by correcting a part of the detection signal corresponding to the up-chirp duration based on the first correction data and/or a second corrected signal by correcting a part of the detection signal corresponding to the down-chirp duration based on the second correction data; and

generating and outputting measurement data concerning distance and/or velocity of the object based on the first corrected signal and/or the second corrected signal.