Motion judgment method and device and computer readable storage medium
A technology of motion and state of motion, applied in measuring devices, measuring distances, instruments, etc., can solve the problems of low step counting accuracy of pedometer devices, acceleration data processing, etc.
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Embodiment 1
[0100] Please refer to figure 2 , the motion judgment method includes:
[0101] S100. Acquire acceleration data, where the acceleration data includes effective peaks;
[0102] Wherein, the step counting device includes an acceleration sensor, and the acceleration data is the data collected by the acceleration sensor of the step counting device. Specifically, the acceleration data is waveform data that changes with time. When the user wears the pedometer and performs an action, the acceleration sensor receives changes in the acceleration generated by the user's movement and expresses it in the form of a waveform. During the user's moving process, the user realizes walking through the alternate swing of the left and right hands and the sequential movement of the left and right feet. During the walking process, the acceleration data detected by the acceleration sensor changes periodically. Therefore, the user's However, when the user performs other actions, the user cannot mai...
Embodiment 2
[0111] Please refer to image 3 , in Embodiment 1, the step S300 includes:
[0112] S310. Save the feature value in a first cache area, and store the feature time point in a second cache area;
[0113] Wherein, the user usually maintains the same motion state for a period of time during the exercise process, so in order to facilitate the determination of the user's motion state, the acceleration data within a period of time can be continuously determined, and all acceleration data within a period of time can be determined. The acceleration data is comprehensively analyzed, thereby improving the accuracy of the step counting device in judging the user's exercise state. Specifically, the pedometer saves the characteristic value in the first buffer area, saves the characteristic time point in the second buffer area, and the first buffer area and the second buffer area It may be a virtual area for saving data in the pedometer device, and the pedometer device can read or write or...
Embodiment 3
[0120] Please refer to Figure 4 , in Embodiment 2, before the step S310, also includes:
[0121] S330. Obtain the number of feature values in the first cache area and the number of feature time points in the second cache area;
[0122] S340. When the number of the feature values is greater than a first threshold, delete the feature value added earliest in the first cache area;
[0123] S350. When the number of the characteristic time points is greater than a second threshold, delete the earliest added characteristic time point in the second cache area;
[0124] S360. Execute the steps of determining a first parameter value according to the feature value stored in the first cache area, and determining a second parameter value according to the feature time point stored in the second cache area.
[0125] Wherein, in order to facilitate the periodic calculation of the acceleration data, after saving the characteristic value to the first buffer area and saving the characteri...
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