IP Library › Granted Patent US 11,914,021
Granted Patent B2
US 11,914,021 · App. 16/979,322 · Granted Feb 27, 2024

Velocity measurement device, velocity measurement program, recording medium, and velocity measurement method

Inventor: Hitoshi Nohmi (Mitaka, JP)
Assignee: ALOUETTE TECHNOLOGY INC.
G01S13/58G01S7/4026G01S7/4056G01S7/403
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Quick Facts
Patent No.
US 11,914,021
App. No.
16/979,322
Granted
Feb 27, 2024
Kind
B2
Abstract

An object is to enable measurement of position and velocity of a measurement object. A velocity measurement device includes a transmitting means, a receiving means, and a signal processing means. The transmitting means transmits a transmission signal by a transmitting antenna toward a measurement object. The receiving means receives a reflected wave from the measurement object with multiple receiving antennas and generates a reception signal for each of the receiving antennas. The signal processing means obtains a phase plane of the reflected wave with respect to an antenna plane of the multiple receiving antennas from a phase difference between the reception signals to specify an arrival direction of the reflected wave, obtains a distance to the measurement object from a propagation delay time of the reflected wave, and calculates a phase fluctuation of the reflected wave to calculate a velocity of the measurement object from the phase fluctuation.

Claims (31)

1. A velocity measurement device, comprising:

a transmitting means that transmits a transmission signal by a transmitting antenna toward a measurement object;

a receiving means that receives a reflected wave from the measurement object with a plurality of receiving antennas and generates a reception signal for each of the receiving antennas; and

a signal processing means that obtains a phase plane of the reflected wave with respect to an antenna plane of the plurality of receiving antennas from a phase difference between the reception signals to specify an arrival direction of the reflected wave, obtains a distance to the measurement object from a propagation delay time of the reflected wave, and calculates a phase fluctuation of the reflected wave to calculate a velocity of the measurement object from the phase fluctuation, wherein

the velocity measurement device measures a velocity of a vehicle running on a road as the velocity of the measurement object.

2. The velocity measurement device according to claim 1 , further comprising a display means that displays an image representing the position and the velocity of the measurement object in accordance with the arrival direction of the reflected wave, the distance to the measurement object, and the velocity of the measurement object.

3. The velocity measurement device according to claim 1 , further comprising a signal generating means that generates a reference signal for synchronizing the transmission signal of the transmitting means, the reception signal of the receiving means, and a signal process of the signal processing means.

4. The velocity measurement device according to claim 1 , wherein

the transmitting means outputs a pulse signal, or a pulse signal chirp-modulated for pulse compression, for detecting the measurement object or a distance to the measurement object, and wherein

the receiving means performs the pulse compression of the reception signal in phase synchronization with a reference signal and separates the measurement object by the distance.

5. The velocity measurement device according to claim 1 , wherein

the transmitting means outputs an FMCW signal for detecting the measurement object or a distance to the measurement object, wherein

the transmitting means branches a portion of the transmission signal to generate a local signal, and wherein

the receiving means generates an intermediate frequency signal by using the local signal, analyzes the intermediate frequency signal in phase synchronization with a reference signal, and separates each measurement object by the distance.

6. The velocity measurement device according to claim 1 , wherein

the plurality of receiving antennas is arranged one-dimensionally, and wherein

the receiving means or the signal processing means specifies an azimuth of the measurement object from a phase difference of the reception signal.

7. A velocity measurement program stored on a non-transitory computer readable medium for causing a computer to measure a velocity of a measurement object, the velocity measurement program causing the computer to execute processes of:

transmitting a transmission signal by a transmitting antenna toward a measurement object; and

obtaining, from a phase difference between reception signals generated from a reflected wave from the measurement object received with a plurality of receiving antennas, a phase plane of the reflected wave with respect to an antenna plane of the plurality of receiving antennas to specify an arrival direction of the reflected wave, obtaining a distance to the measurement object from a propagation delay time of the reflected wave, calculating a phase fluctuation of the reflected wave to calculate a velocity of the measurement object from the phase fluctuation, and measuring a velocity of a vehicle running on a road as the velocity of the measurement object.

8. The velocity measurement program according to claim 7 , further causing the computer to execute a process of displaying an image representing the position and the velocity of the measurement object in accordance with the arrival direction of the reflected wave, the distance to the measurement object, and the velocity of the measurement object.

9. A non-transitory computer-readable recording medium recording a velocity measurement program for causing a computer to measure a velocity of a measurement object, the velocity measurement program causing the computer to execute the processes of:

transmitting a transmission signal by a transmitting antenna toward a measurement object; and

obtaining, from a phase difference between reception signals generated from a reflected wave from the measurement object received with a plurality of receiving antennas, a phase plane of the reflected wave with respect to an antenna plane of the plurality of receiving antennas to specify an arrival direction of the reflected wave, obtaining a distance to the measurement object from a propagation delay time of the reflected wave, calculating a phase fluctuation of the reflected wave to calculate a velocity of the measurement object from the phase fluctuation, and measuring a velocity of a vehicle running on a road as the velocity of the measurement object.

10. The computer-readable recording medium according to claim 9 , recording the velocity measurement program further causing the computer to execute a process of displaying an image representing the position and the velocity of the measurement object in accordance with the arrival direction of the reflected wave, the distance to the measurement object, and the velocity of the measurement object.

11. A velocity measurement method comprising:

transmitting a transmission signal by a transmitting antenna toward a measurement object;

receiving a reflected wave from the measurement object with a plurality of receiving antennas and generating a reception signal for each of the receiving antennas; and

obtaining a phase plane of the reflected wave with respect to an antenna plane of the plurality of receiving antennas from a phase difference between the reception signals to specify an arrival direction of the reflected wave, obtaining a distance to the measurement object from a propagation delay time of the reflected wave, calculating a phase fluctuation of the reflected wave to calculate a velocity of the measurement object from the phase fluctuation, and measuring a velocity of a vehicle running on a road as the velocity of the measurement object.

12. The velocity measurement method according to claim 11 , further comprising

displaying an image representing the position and the velocity of the measurement object in accordance with the arrival direction of the reflected wave, the distance to the measurement object, and the velocity of the measurement object.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 9, 2020
From: NOHMI, HITOSHI
To: ALOUETTE TECHNOLOGY INC.
Reel/Frame 053723/0874 →
Continuity (1)
Related Publication 20210003692A1 · Jan 7, 2021