Radar apparatus

US9696415B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9696415-B2
Application numberUS-201414503855-A
CountryUS
Kind codeB2
Filing dateOct 1, 2014
Priority dateOct 3, 2013
Publication dateJul 4, 2017
Grant dateJul 4, 2017

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  1. Title

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  2. Abstract

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  4. Key dates

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  5. First independent claim

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Abstract

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A radar apparatus includes a change amount calculation section for obtaining, for each of a plurality of peaks of a first spectrum belonging to the same group, a peak value at the present point in time and calculating the difference between the peak value and a peak value obtained before the present point in time; a ratio calculation section for comparing the obtained difference with a predetermined difference threshold and calculating a ratio of the number of peaks whose differences are greater than the difference threshold to the number of all the peaks belonging to the same group; and a pedestrian determination section for determining that the object is a pedestrian when the calculated ratio is greater than a predetermined ratio threshold and at least one of peaks belonging to the same group differs from the remaining peaks in terms of the sign of the difference.

First claim

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What is claimed is: 1. A radar apparatus which transmits a transmission wave toward an object and receives a reception wave which is the transmission wave reflected by the object, wherein the radar apparatus is a FM-CW radar apparatus for calculating a distance to the object based on a difference frequency between the transmission wave and the reception wave, the radar apparatus, comprising: a beat signal generator for generating a beat signal having the difference frequency between the transmission wave and the reception wave; a first spectrum calculator for performing Fourier transformation on the beat signal output from the beat signal generator, and calculating a first frequency spectrum indicating a relationship between a reception wave intensity and the frequency; a grouping section which groups a plurality of peaks of the first frequency spectrum on an object-by-object basis; a change amount calculator for obtaining, for each of a plurality of peaks belonging to a group, a peak value corresponding to the intensity value of the reception wave at the present point in time, comparing the peak value with a peak value obtained at the past point in time before the present point in time, and calculating a change amount indicating a time variation of each peak value; a ratio calculator for comparing the change amount with a predetermined change amount threshold and calculating a ratio of the number of peaks whose change amounts are greater than the change amount threshold to the total number of the plurality of peaks belonging to the same group; and a pedestrian determination section for determining that the object is a pedestrian when the ratio calculated by the ratio calculator is greater than a predetermined ratio threshold and at least one of the plurality of peaks belonging to the same group differs from the remaining peaks in terms of the plus or minus sign of the difference between the peak value at the present point in time and the peak value at the past point in time before the present point in time. 2. A radar apparatus according to claim 1 , wherein the change amount is at least one of the absolute value of the difference between the peak values, the standard deviation or the standard error of the peak values in a time change of the peak values, and the absolute value of the time derivative of a time change of the peak values. 3. A radar apparatus according to claim 2 , further comprising: a second spectrum calculator for performing Fourier transformation on the beat signal output from the beat signal generator using a time period within a time period being one unit of Fourier transformation performed by the first spectrum calculator and shorter than the time period as one unit of Fourier transformation, and calculating a second frequency spectrum indicating a relationship between the reception wave intensity and the frequency, wherein, for each peak having a frequency range of the second frequency spectrum, the grouping section groups a plurality of peaks of the first frequency spectrum having a frequency existing within the frequency range of the peak of the second frequency spectrum while regarding the plurality of peaks as those from the same object. 4. A radar apparatus according to claim 1 , further comprising: a second spectrum calculator for performing Fourier transformation on the beat signal output from the beat signal generator using a time period within a time period being one unit of Fourier transformation performed by the first spectrum calculator and shorter than the time period as one unit of Fourier transformation, and calculating a second frequency spectrum indicating a relationship between the reception wave intensity and the frequency, wherein, for each peak having a frequency range of the second frequency spectrum, the grouping section groups a plurality of peaks of the first frequency spectrum having a frequency existing within the frequency range of the peak of the second frequency spectrum while regarding the plurality of peaks as those from the same object. 5. A radar apparatus according to claim 4 , wherein the grouping section extracts two local minimums present immediately before and after each peak of the second frequency spectrum, and groups a plurality of peaks of the first frequency spectrum located between the local minimums while regarding the plurality of peaks as those from the same object. 6. A radar apparatus which transmits a transmission wave toward an object and receives a reception wave which is the transmission wave reflected by the object, wherein the radar apparatus is a multiple frequency CW radar apparatus for using a difference frequency between the transmission wave and the reception wave as a Doppler frequency representing a relative speed of the object, calculating a distance to the object based on a delay time of the reception wave with respect to the transmission wave at the Doppler frequency, and repeating one cycle in which the frequency of the transmission wave is sequentially, step by step, changed as time passes, the radar apparatus comprising: a beat signal generator for generating a beat signal having the difference frequency between the transmission wave and the reception wave; a frequency analyzer for performing frequency analysis on the beat signal output from the beat signal generator for each step of the frequency of the transmission wave and calculating a frequency spectrum; a first spectrum calculator for performing Fourier transformation on the change of the frequency of the frequency spectrum in one cycle for each peak value of the Doppler frequency of the frequency spectrum output from the frequency analyzer, and calculating a first spectrum indicating a relationship between a reception wave strength and the delay time; a grouping section which groups a plurality of peaks of the first spectrum on an object-by-object basis; a change amount calculator for obtaining, for each of a plurality of peaks belonging to a group, a peak value corresponding to the strength value of the reception wave at the present point in time, comparing the peak value with a peak value obtained at the past point in time before the present point in time, and calculating a change amount indicating a time variation of each peak value; a ratio calculator for comparing the change amount with a predetermined change amount threshold and calculating a ratio of the number of peaks whose change amounts are greater than the change amount threshold to the total number of the plurality of peaks belonging to the same group; and a pedestrian determination section for determining that the object is a pedestrian when the ratio calculated by the ratio calculator is greater than a predetermined ratio threshold and at least one of the plurality of peaks belonging to the same group differs from the remaining peaks in terms of the plus or minus sign of the difference between the peak value at the present point in time and the peak value at the past point in time before the present point in time. 7. A radar apparatus according to claim 6 , further comprising: a second spectrum calculator for performing Fourier transformation on the frequency spectrum in a period shorter than one cycle for each peak value of the Doppler frequency of the frequency spectrum output from the frequency analyzer, and calculating a second spectrum indicating a relationship between the reception wave strength and the delay time; wherein, for each peak having a delay time range of the second spectrum, the grouping section groups a plurality of peaks of the first spectrum having a delay time existing within the delay time range of each peak of the second spectrum while regarding the plurality of peaks as those from the same object. 8. A radar app

Assignees

Inventors

Classifications

  • G01S7/41Primary

    using analysis of echo signal for target characterisation; Target signature; Target cross-section · CPC title

  • with time compression of received pulses · CPC title

  • using transmission of continuous, frequency-modulated waves while heterodyning the received signal, or a signal derived therefrom, with a locally-generated signal related to the contemporaneously transmitted signal · CPC title

  • Systems determining position data of a target · CPC title

  • G01S13/04Primary

    Systems determining presence of a target (based on relative movement of target G01S13/56) · CPC title

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What does patent US9696415B2 cover?
A radar apparatus includes a change amount calculation section for obtaining, for each of a plurality of peaks of a first spectrum belonging to the same group, a peak value at the present point in time and calculating the difference between the peak value and a peak value obtained before the present point in time; a ratio calculation section for comparing the obtained difference with a predeter…
Who is the assignee on this patent?
Toyota Motor Co Ltd
What technology area does this patent fall under?
Primary CPC classification G01S7/41. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Jul 04 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).