IP Library Granted Patent US 12669618
Granted Patent B2
US 12669618 · App. 18/712,913 · Granted Jun 30, 2026

Signal processing apparatus, signal processing method and program

Inventor: Seiji Yoshida (Tokyo, JP)
Assignee: NTT, Inc.
G01S19/31G01S19/09
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Quick Facts
Patent No.
US 12669618
App. No.
18/712,913
Granted
Jun 30, 2026
Kind
B2
Abstract

A signal processing apparatus includes circuitry configured to measure a relative displacement amount of the signal processing apparatus for each predetermined measurement period, measure a first delay time corresponding to a time period required for the signal processing apparatus to output a positioning solution, and estimate a position of the signal processing apparatus at a time after a current time by the first delay time, based on the positioning solution, the relative displacement amount for each measurement period, the first delay time, and a second delay time. A positioning server determines the positioning solution based on observation data related to a GNSS signal, and the second delay time corresponds to a time period from transmission of the observation data to the positioning server to reception of the positioning solution.

Claims (23)

1 . A signal processing apparatus configured to communicate with a positioning server via a communication network, the positioning server configured to calculate a positioning solution from observation data, the observation data being obtained from a global navigation satellite systems (GNSS) signal via the communication network, the signal processing apparatus comprising:

a receiver configured to receive the GNSS signal and create the observation data;

a first communication circuit configured to transmit the observation data to the positioning server;

a second communication circuit configured to receive the positioning solution from the positioning server; and

circuitry configured to:

measure a relative displacement amount of the signal processing apparatus, for each measurement period;

measure a first delay time corresponding to a time period required for the signal processing apparatus to output the positioning solution; and

estimate a position of the signal processing apparatus at a time after a current time by the first delay time, based on the positioning solution, the relative displacement amount for each measurement period, the first delay time, and a second delay time, the second delay time corresponding to a time period from transmission of the observation data to the positioning server to reception of the positioning solution.

2 . The signal processing apparatus according to claim 1 , wherein the circuitry is configured to measure, for each measurement period, the relative displacement amount during a time period from a first timing at which the receiver receives the GNSS signal to a second timing at which the receiver receives the positioning solution.

3 . The signal processing apparatus according to claim 1 ,

wherein the circuitry is configured to distribute at least time information that is synchronized with an absolute time.

4 . The signal processing apparatus according to claim 1 ,

wherein the circuitry is configured to output the estimated position to a target.

5 . The signal processing apparatus according to claim 1 , wherein the circuitry is configured to estimate the position of the signal processing apparatus at the time after the current time by the first delay time, by using an extended Kalman filter or a particle filter.

6 . The signal processing apparatus according to claim 1 , wherein the signal processing apparatus is mounted on a moving body including a vehicle.

7 . A signal processing method by a signal processing apparatus configured to communicate with a positioning server via a communication network, the positioning server configured to calculate a positioning solution from observation data, the observation data being obtained from a global navigation satellite systems (GNSS) signal via the communication network, and the signal processing method comprising:

receiving the GNSS signal and creating the observation data;

transmitting the observation data to the positioning server;

receiving the positioning solution from the positioning server;

measuring a relative displacement amount of the signal processing apparatus for each measurement period;

measuring a first delay time corresponding to a time period that is required for the signal processing apparatus to output the positioning solution; and

estimating a position of the signal processing apparatus at a time that is after a current time by the first delay time, based on the positioning solution, the relative displacement amount for each measurement period, the first delay time, and a second delay time, the second delay time corresponding to a time period from transmission of the observation data to the positioning server to reception of the positioning solution.

8 . A non-transitory computer readable storage medium storing a program that causes a computer to execute the single processing method of claim 7 .