IP Library › Granted Patent US 10,514,295
Granted Patent B2
US 10,514,295 · App. 15/616,359 · Granted Dec 24, 2019

Object detector, sensing device, and mobile apparatus

Inventor: Takuei Nishio (Kanagawa, JP)
Assignee: RICOH COMPANY, LTD.
G01J1/44G01J1/18G01V8/18G01J2001/4406
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Quick Facts
Patent No.
US 10,514,295
App. No.
15/616,359
Granted
Dec 24, 2019
Kind
B2
Abstract

An object detector including a light-emitting system to emit light to an object, a light detector, a signal detector, and a threshold adjuster. The light detector receives the light emitted from the light-emitting system and reflected by the object, and output a signal. The signal detector detects the signal output from the light detector based on a threshold value of voltage. The threshold adjuster changes the threshold value between when the light-emitting system emits light to a part of a light-emission range of the light-emitting system and when the light-emitting system emits light to other part of the light-emission range other than the part of the light-emission range.

Claims (68)

1. An object detector comprising:

a light-emitting system to emit light to an object;

a light detector to receive the light emitted from the light-emitting system and reflected by the object, and output a signal;

a signal detector to detect the signal output from the light detector based on a threshold value of voltage; and

threshold adjuster circuitry configured to change the threshold value between when the light-emitting system emits light to a part of a light-emission range of the light-emitting system and when the light-emitting system emits light to other part of the light-emission range other than the part of the light-emission range,

wherein the light-emitting system includes a light source and a scanning device to scan the light-emission range with light emitted from the light source, and

wherein the threshold value changes with a scan angle of the scanning device.

2. The object detector according to claim 1 ,

wherein the light-emitting system includes an incident optical system to cause the light emitted from the light source to enter the scanning device from an outside of the light-emission range.

3. The object detector according to claim 1 ,

wherein the light-emitting system includes a light source including a plurality of light-emitting elements to divide the light-emission range into a plurality of detection areas for detection.

4. The object detector according to claim 3 ,

wherein the plurality of detection areas is divided into a plurality of groups fewer than a number of the plurality of detection areas, and

wherein the threshold adjuster circuitry changes the threshold value between the plurality of groups.

5. The object detector according to claim 1 ,

wherein the light detector is a plurality of light detectors to divide the light-emission range into a plurality of detection areas for detection.

6. A sensing device comprising:

the object detector according to claim 1 ; and

a monitoring controller that determines at least one of a presence or an absence of the object, a direction of movement of the object, and a moving speed of the object, based on an output of the object detector.

7. A mobile object comprising:

a mobile object; and

the sensing device according to claim 6 mounted on the mobile object.

8. A mobile apparatus comprising:

a mobile object; and

the object detector according to claim 1 mounted on the mobile object.

9. An object detector comprising:

a light-emitting system to emit light to an object;

a light detector to receive the light emitted from the light-emitting system and reflected by the object, and output a signal;

a signal detector to detect the signal output from the light detector based on a threshold value of voltage;

threshold adjuster circuitry to change the threshold value between when the light-emitting system emits light to a part of a light-emission range of the light-emitting system and when the light-emitting system emits light to other part of the light-emission range other than the part of the light-emission range; and

a light receiving optical system to guide the light reflected by the object to the light detector,

wherein light utilization efficiency of the light receiving optical system is lower in an emission of light to an edge of the light-emission range than in the emission of light to a center of the light-emission range, and

wherein the threshold value is lower in the emission of light to the edge of the light-emission range than in the emission of light to the center of the light-emission range.

10. The object detector according to claim 9 ,

wherein the light-emitting system includes a light source including a plurality of light-emitting elements to divide the light-emission range into a plurality of detection areas for detection.

11. The object detector according to claim 10 ,

wherein the plurality of detection areas is divided into a plurality of groups fewer than a number of the plurality of detection areas, and

wherein the threshold adjuster circuitry changes the threshold value between the plurality of groups.

12. The object detector according to claim 9 ,

wherein the light detector includes a plurality of light detectors to divide the light-emission range into a plurality of detection areas for detection.

13. A sensing device comprising:

the object detector according to claim 9 ; and

a monitoring controller that determines at least one of a presence or an absence of the object, a direction of movement of the object, and a moving speed of the object, based on an output of the object detector.

14. A mobile apparatus comprising:

a mobile object; and

the object detector according to claim 9 mounted on the mobile object.

15. An object detector comprising:

a light-emitting system to emit light to an object;

a light detector to receive the light emitted from the light-emitting system and reflected by the object, and output a signal;

a signal detector to detect the signal output from the light detector based on a threshold value of voltage; and

threshold adjuster circuitry configured to change the threshold value between when the light-emitting system emits light to a part of a light-emission range of the light-emitting system and when the light-emitting system emits light to other part of the light-emission range other than the part of the light-emission range,

wherein the threshold adjuster circuitry includes:

a pulse-signal generating circuit to generate a pulse signal including a plurality of pulses, each of which is variable in a duty ratio;

a smoothing unit to smooth the pulse signal generated by the pulse-signal generating circuit; and

a duty controller to control a duty ratio of the pulse signal.

16. The object detector according to claim 15 ,

wherein the light-emitting system includes a light source including a plurality of light-emitting elements to divide the light-emission range into a plurality of detection areas for detection.

17. The object detector according to claim 16 ,

wherein the plurality of detection areas is divided into a plurality of groups fewer in number than a number of the plurality of detection areas, and

wherein the threshold adjuster circuitry changes the threshold value between the plurality of groups.

18. The object detector according to claim 15 ,

wherein the light detector includes a plurality of light detectors to divide the light-emission range into a plurality of detection areas for detection.

19. A sensing device comprising:

the object detector according to claim 15 ; and

a monitoring controller that determines at least one of a presence or an absence of the object, a direction of movement of the object, and a moving speed of the object, based on an output of the object detector.

20. A mobile apparatus comprising:

a mobile object; and

the object detector according to claim 15 mounted on the mobile object.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 7, 2017
From: NISHIO, TAKUEI
To: RICOH COMPANY, LTD.
Reel/Frame 042716/0378 →
Priority Claims (1)
JP 2016-115957 · Jun 10, 2016 · national
Continuity (1)
Related Publication 20170356796A1 · Dec 14, 2017