EP1253404B1

Pedestrian navigation method and apparatus operative in a dead reckoning mode

Abstract

This record has no abstract on file.

EP1253404B1, drawing sheet 1
Sheet 1 of 40

Term

Term ended

Expired 23 April 2022, 4.4 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

34 claims: 5 independent, 29 dependent

  1. 1
    A method of determining a displacement of a pedestrian by detecting accelerations of said pedestrian, said method comprising the steps of:- detecting (6AP, 6LR) accelerations having at least a component that is substantially along an antero-posterior (forward-backward) direction which is substantially non-vertical, - determining at least one characteristic feature of said detected accelerations correlated with a displacement step motion, and - determining said displacement on the basis of said determined characteristic feature(s), - characterized by a step of distinguishing between forward and backward steps relative to said pedestrian, wherein said distinguishing step comprises: - detecting accelerations along an antero-posterior (forward-backward) direction relative to said pedestrian, - determining (S15) a time of occurrence of a current first characteristic value and a previous first characteristic value in the antero-posterior accelerations, - determining (S16) whether a time interval separating said current and previous first characteristic values is within determined time limits, - determining (S17) a time of occurrence of a second characteristic value in the antero-posterior accelerations occurring within a time range at least sufficiently large to contain said determined time limits, and - discriminating (S18-S20) between a forward and a backward step on the basis of the order of occurrence of said current first characteristic value and said second characteristic value.
  2. 4
    Method according to any one of claims 1 to 3, wherein said acceleration is detected (6LR) along a lateral (left-right) direction of said pedestrian.
  3. 5
    Method according to any one of claims 1 to 4, wherein said step characteristic feature determining step involves determining (S2) a peak acceleration from said detected accelerations and correlating said peak with a motion of the body corresponding to a displacement.
  4. 6
    Method according to any of claims 1 to 5, further comprising a step (S3) of distinguishing between whether said pedestrian is making a step in an antero-posterior sense (forward or backward direction) on the one hand, or in a lateral sense (left or right direction) on the other, said distinguishing step comprising:- determining a variance of successive acceleration values over a given time period for both an acceleration in the antero-posterior sense (S2) and in the lateral sense, - comparing (S3) the variance determined for the antero-posterior acceleration values with the variance determined for the lateral acceleration values, - determining (S4) that said pedestrian is making a step in said antero-posterior sense if the variance of said antero-posterior acceleration values exceeds the variance of said lateral acceleration values, and - determining (S7) that said pedestrian is making a step in said lateral sense if the variance of said lateral acceleration values exceeds the variance of said antero-posterior acceleration values.
  5. 8
    Method according to any one of claims 1 to 7, further comprising a step of distinguishing between left and right displacement steps relative to said pedestrian, said distinguishing step comprising:- detecting accelerations along a lateral (left-right) direction relative to said pedestrian, - determining (S35) a time of occurrence of a current first characteristic value and a previous first characteristic value in the lateral accelerations, - determining (S36) whether a time interval separating said current and previous first characteristic values is within determined time limits, - determining (S37) a time of occurrence of a second characteristic value in the lateral accelerations occurring within a time range at least sufficiently large to contain said determined time limits, and - discriminating (S38-S40) between a left and a right step on the basis of the order of occurrence of said current first characteristic value and said second characteristic value.
  6. 10
    Method according to any one of claims 1 to 9, wherein said acceleration detecting step further comprises detecting accelerations (6V) along said vertical direction.
  7. 11
    Method according to any one of claims 1 to 10, wherein said characteristic determination step comprises the sub-steps of:- determining a first time corresponding to an occurrence of a characteristic feature in said accelerations along a direction substantially perpendicular to a vertical direction of said pedestrian, - detecting (S23;S53) accelerations along a vertical direction of said pedestrian, - determining (S25;S55) a second time corresponding to an occurrence of said characteristic feature in said accelerations along a vertical direction of said pedestrian, - comparing (S30;S50) said first and second times, and - using a result of said comparison to confirm the presence of a displacement step.
  8. 13
    Method according to any one of claims 1 to 12, wherein:- said acceleration detecting step comprises acquiring successive acceleration values, - said characteristic and displacement determination steps comprise the sub-steps of: - determining a current peak acceleration in said successive acceleration values by means of a sliding window, - determining a variance of said successive acceleration values acquired between said current peak and a previous peak acceleration value, - comparing (S3) said variance to an adaptive threshold to detect if said pedestrian is walking or not, - determining whether the time interval between two successive peak acceleration values falls within a physiologically possible time interval, and - storing the time of acquisition of said current peak acceleration value as the time of occurrence of a detected foot impact corresponding to a displacement step.
  9. 14
    Method according to any one of claims 1 to 13, wherein said displacement determining step involves determining a distance travelled by using at least one first model which yields a pedestrian displacement speed in response to a variance and/or a frequency of occurrence of said characteristic feature in values of said acquired accelerations, and at least a time indicator or a second model which correlates a pedestrian displacement speed obtained by said first model with a step length.
  10. 15
    Method according to any one of claims 1 to 14, wherein said displacement determining step involves calculating a displacement on foot and/or a displacement speed of said pedestrian.
  11. 16
    Method according to any one of claims 1 to 15, further comprising a step of detecting an about turn in a displacement of said pedestrian, comprising:- detecting (S125) a condition in which an azimuth rate of change of said pedestrian exceeds a determined threshold, - determining (S130) whether said azimuth rate of change corresponds roughly to a 180° turn, - in the affirmative, determining whether alignments of trajectories before and after said turn are the same to within a determined discrepancy limit, - in the affirmative, considering that an about turn is effected.
  12. 17
    Method according to any one of claims 1 to 16, wherein said accelerations are detected by acceleration sensor means mounted on the lower back of said pedestrian.
  13. 18
    An apparatus (1) for determining a displacement of a pedestrian by detecting accelerations of said pedestrian, said apparatus comprising:- sensing means (6AP, 6LR) for detecting accelerations having at least a component that is substantially along an antero-posterior (forward-backward) direction which is substantially non-vertical, - characteristic determining means (2) for determining at least one characteristic feature of said detected accelerations correlated with a displacement step motion, and - displacement determining means (2) for determining said displacement on the basis of said determined characteristic feature(s), characterized by second distinguishing means for distinguishing between forward and backward steps relative to said pedestrian, said second distinguishing means comprising: - means (6AP) for detecting accelerations along an antero-posterior (forward-backward) direction relative to said pedestrian, - means for determining (S15) a time of occurrence of a current first characteristic value and a previous first characteristic value in the antero-posterior accelerations, - means for determining (S16) whether a time interval separating said current and previous first characteristic values is within determined time limits, - means for determining (S17) a time of occurrence of a second characteristic value in the antero-posterior accelerations occurring within a time range at least sufficiently large to contain said determined time limits, and - means for discriminating (S18-S20) between a forward and a backward step on the basis of the order of occurrence of said current first characteristic value and said second characteristic value.
  14. 21
    Apparatus according to any of claims 18 to 20, wherein said sensing means comprise means (6LR) for detecting acceleration along a lateral (left-right) direction of said pedestrian.
  15. 22
    Apparatus according to any claims 18 to 21, wherein said step characteristic feature determining means is operative to detect (S2) a peak acceleration from said detected accelerations and to correlate said peak with a motion of the body corresponding to a displacement.
  16. 23
    Apparatus according to any one of claims 18 to 22, further comprising first distinguishing means for distinguishing (S3) between whether said pedestrian is making a step in an antero-posterior sense (forward or backward direction) on the one hand, or in a lateral sense (left or right direction) on the other, said first distinguishing means comprising:- means for determining a variance of successive acceleration values over a given time period for both an acceleration in the antero-posterior sense (S2) and in the lateral sense, - means for comparing (S3) the variance determined for the antero-posterior acceleration values with the variance determined for the lateral acceleration values, - means for determining (S4) that said pedestrian is making a step in said antero-posterior sense if the variance of said antero-posterior acceleration values exceeds the variance of said lateral acceleration values, and - means for determining (S7) that said pedestrian is making a step in said lateral sense if the variance of said lateral acceleration values exceeds the variance of said antero-posterior acceleration values.
  17. 25
    Apparatus according to any one of claims 18 to 24, further comprising third distinguishing means for distinguishing between left and right displacement steps relative to said pedestrian, said third distinguishing step comprising:- means (6LR) for detecting accelerations along a lateral (left-right) direction relative to said pedestrian, - means for determining (S35) a time of occurrence of a current first characteristic value and a previous first characteristic value in the lateral accelerations, - means for determining (S36) whether a time interval separating said current and previous first characteristic values is within determined time limits, - means for determining (S37) a time of occurrence of a second characteristic value in the lateral accelerations occurring within a time range at least sufficiently large to contain said determined time limits, and - means for discriminating (S38-S40) between a left and a right step on the basis of the order of occurrence of said current first characteristic value and said second characteristic value.
  18. 27
    Apparatus according to any one of claims 18 to 26, wherein said acceleration detecting means further comprises means (6V) for detecting accelerations along said vertical direction.
  19. 28
    Apparatus according to any one of claims 18 to 27, wherein said characteristic determination means comprises:- means for determining a first time corresponding to an occurrence of a characteristic feature in said accelerations along a direction substantially perpendicular to a vertical direction of said pedestrian, - means for detecting (S23;S53) accelerations along a vertical direction of said pedestrian, - means for determining (S25;S55) a second time corresponding to an occurrence of said characteristic feature in said accelerations along a vertical direction of said pedestrian, - means for comparing (S30;S50) said first and second times, and - means using a result of said comparison to confirm the presence of a displacement step.
  20. 30
    Apparatus according to any one of claims 18 to 29, wherein:- said acceleration detecting means is operative to acquire successive acceleration values, - said characteristic and displacement determination means comprise: - means for determining a current peak acceleration in said successive acceleration values by means of a sliding window, - means for determining a variance of said successive acceleration values acquired between said current peak and a previous peak acceleration value, - means for comparing said variance to an adaptive threshold to detect if said pedestrian is walking or not, - means for determining whether the time interval between two successive peak acceleration values falls within a physiologically possible time interval, and - means for storing the time of acquisition of said current peak acceleration value as the time of occurrence of a detected foot impact corresponding to a displacement step.
  21. 31
    Apparatus according to any one of claims 18 to 30, wherein said displacement determining means comprises means for determining a distance travelled by using at least one first model which yields a pedestrian displacement speed in response to a variance and/or a frequency of occurrence of said characteristic feature in values of said acquired accelerations, and at least a second model which correlates a pedestrian displacement speed obtained by said first model with a step length.
  22. 32
    Apparatus according to any one of claims 18 to 31, wherein said displacement determining means are operative for calculating a displacement on foot and/or a displacement speed of said pedestrian.
  23. 33
    Apparatus according to any one of claims 18 to 32, further comprising means for detecting an about turn in a displacement of said pedestrian, comprising:- means for detecting (S125) a condition in which an azimuth rate of change of said pedestrian exceeds a determined threshold, - means for determining (S130) whether said azimuth rate of change corresponds roughly to a 180° turn, - means, operative in the affirmative, for determining whether alignments of trajectories before and after said turn are the same to within a determined discrepancy limit, and - means, operative in the affirmative, for considering that an about turn is effected.
  24. 34
    Apparatus according to any one of claims 18 to 33, wherein said accelerations are detected by acceleration sensor means mounted on the lower back of said pedestrian.
Independent claims24