Motion-based human video detection
US-2021117658-A1 · Apr 22, 2021 · US
US11665318B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11665318-B2 |
| Application number | US-202117539359-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 1, 2021 |
| Priority date | May 20, 2021 |
| Publication date | May 30, 2023 |
| Grant date | May 30, 2023 |
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The present disclosure discloses an object detection method used in an object detection apparatus that includes the steps outlined below. An image signal received from an image sensor is detected to generate an image detection signal when an image variation is detected. An infrared signal received from an infrared sensor is detected to generate an infrared detection signal when an infrared energy variation is detected. A time counting process is initialized when the image detection signal is generated. An object detection signal is generated when the infrared detection signal is generated within a predetermined time period after the time counting process is initialized. A detection distance of the image sensor is larger than a detection distance of the infrared sensor.
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What is claimed is: 1. An object detection method used in an object detection apparatus, comprising: detecting an image signal received from an image sensor to generate an image detection signal when an image variation is detected, wherein the image detection signal is generated by a motion detection circuit; detecting an infrared signal received from an infrared sensor to generate an infrared detection signal when an infrared energy variation is detected, wherein the infrared detection signal is generated by an infrared control circuit; initializing a time counting process when the image detection signal is generated, wherein the time counting process is performed by a counter; generating an object detection signal when the infrared detection signal is generated within a predetermined time period after the time counting process is initialized, wherein the object detection signal is generated by a confirming circuit, and the motion detection circuit, the infrared control circuit, the confirming circuit and the counter are disposed in a first chip; and generating a wake-up signal according to the object detection signal to wake up a second chip, wherein the second chip has a power dissipation higher than the power dissipation of the first chip; wherein a detection distance of the image sensor is larger than a detection distance of the infrared sensor. 2. The object detection method of claim 1 , further comprising: terminating the time counting process when the infrared detection signal is not generated within the predetermined time period after the time counting process is initialized, or when the object detection signal is generated within the predetermined time period after the time counting process is initialized. 3. The object detection method of claim 1 , wherein the step of detecting the image signal comprises calculating an image variation amount according to a plurality of images of the image signal such that the image detection signal is generated when the image variation amount is larger than an image variation threshold; and the step of detecting the infrared signal further comprises calculating an infrared energy variation amount of the infrared signal such that the infrared detection signal is generated when the infrared energy variation amount is larger than an infrared energy variation threshold. 4. The object detection method of claim 3 , further comprising: providing a register; and storing a predetermined value of the predetermined time period, the image variation threshold and the infrared energy variation threshold. 5. The object detection method of claim 3 , wherein the step of detecting the image signal further comprises: determining a background image according to the images of the image signal; and performing a sum of absolute differences calculation according to the background image and a current image of the images by using a block as a unit to generate the image variation amount. 6. The object detection method of claim 1 , further comprising: performing an image optimization process on the image signal; wherein the step of detecting the image signal is performed according to the optimized image signal. 7. The object detection method of claim 1 , further comprising: generating an interrupt signal to wake up the second chip to process the interrupt signal by a processing circuit when the processing circuit determines that the object detection signal is received twice within a predetermined time period. 8. An object detection apparatus, comprising: a motion detection circuit configured to detect an image signal received from an image sensor to generate an image detection signal when an image variation is detected; an infrared control circuit configured to detect an infrared signal received from an infrared sensor to generate an infrared detection signal when an infrared energy variation is detected; and a confirming circuit configured to initialize a time counting process performed by a counter when one of the image detection signal and the infrared detection signal is generated, and generate an object detection signal when the other one of the image detection signal and the infrared detection signal is generated within a predetermined time period after the time counting process is initialized; wherein the motion detection circuit, the infrared control circuit, the confirming circuit and the counter are disposed in a first chip, and the confirming circuit is further configured to generating a wake-up signal according to the object detection signal to wake up a second chip having a power dissipation higher than the power dissipation of the first chip. 9. The object detection apparatus of claim 8 , wherein a detection distance of the image sensor is larger than a detection distance of the infrared sensor. 10. An object detection method used in an object detection apparatus, comprising: detecting an image signal received from an image sensor to generate an image detection signal when an image variation is detected, wherein the operation of detecting the image signal comprises: determining a background image according to a plurality of images of the image signal; performing a sum of absolute differences calculation according to the background image and a current image of the images by using a block as a unit to generate an image variation amount; and generating the image detection signal when the image variation amount is larger than an image variation threshold; detecting an infrared signal received from an infrared sensor to generate an infrared detection signal when an infrared energy variation is detected, wherein the operation of detecting the infrared signal comprises calculating an infrared energy variation amount of the infrared signal such that the infrared detection signal is generated when the infrared energy variation amount is larger than an infrared energy variation threshold; initializing a time counting process when one of the image detection signal and the infrared detection signal is generated; and generating an object detection signal when the other one of the image detection signal and the infrared detection signal is generated within a predetermined time period after the time counting process is initialized.
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