MLchartDataset catalogue

Patent · US2012221207A1 · A1 · US

Sensor controller, navigation device, and sensor control method

(11) Publication number
US2012221207A1
(21) Application number
13/497,630
(22) Filing date
2010-09-21
(30) Priority date
2009-09-25
(43) Publication date
2012-08-30
(52) CPC
  • G01C Measuring distances, levels or bearings; surveying; navigation; gyroscopic instruments; photogrammetry or videogrammetry: 21/3407, 21/3602, 21/3691, 21/3697
  • G06V Image or video recognition or understanding: 20/56, 20/58, 20/586
  • G08G Traffic control systems: 1/0104, 1/04, 1/09675, 1/166, 1/167, 1/168
(73) Assignee
NAKAMURA JUNYA; CLARION CO LTD
(54) Title
Sensor controller, navigation device, and sensor control method
(57) Abstract

Conventional navigation devices are equipped with technology that supports the driving of a driver by detecting the surroundings of a vehicle using a plurality of sensors such as cameras. However, because complex arithmetic processing is carried out using the detection results from the plurality of sensors, the processing load increases and other processes requiring a rapid response can be delayed. As a result, consideration has been given to decreasing the amount of arithmetic processing and reducing the processing load by uniformly decreasing the processing area for information detected by the sensors. However, if the processing area is uniformly decreased, information necessary for driving support may not be obtained. Provided is a sensor control technology that better obtains information necessary for driving support: a sensor controller, characterised by carrying out predetermined processing by changing the processing area of the information acquired by the sensors according to the vehicle driving conditions.

Full text
View on Google Patents

Claims (1)

  1. A sensor controller being connected to multiple sensor unit adapted to detect information around a vehicle, comprising, a traveling state grasping unit adapted to grasp a traveling state of the vehicle, a processing unit adapted to perform a certain process on a predetermined area, within the information around the vehicle detected by the sensor unit, and a processing portion changing unit adapted to change the predetermined area to be processed by the processing unit, in accordance with the traveling state grasped by the traveling state grasping unit. 2. The sensor controller according to claim 1, wherein, the processing portion changing unit selects a sensor to be activated, out of the sensor unit, in accordance with the traveling state grasped by the traveling state grasping unit. 3. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies the number of lanes on the road where the vehicle is traveling, and the processing portion changing unit expands the predetermined area in accordance with the number of lanes. 4. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies the number of lanes on the road where the vehicle is traveling, and the lane where the vehicle is traveling, the processing portion changing unit expands the predetermined area in accordance with the number of lanes, when it is unclear in which lane the vehicle is traveling according to the traveling state grasping unit, and the processing unit performs a lane recognition process on the predetermined area being expanded. 5. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies a gear position of the vehicle, and the processing portion changing unit expands the predetermined area, with regard to information detected by the sensor unit adapted to detect the information on the front, the left, and the right of the vehicle, when the gear position indicates going forward. 6. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies a gear position of the vehicle, and the processing portion changing unit expands the predetermined area, with regard to information detected by the sensor unit adapted to detect the information on the rear, the left, and the right of the vehicle, when the gear position indicates going backward. 7. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies a traveling direction of the vehicle entering an intersection, and the processing portion changing unit expands the predetermined area in accordance with the traveling direction. 8. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies a traveling direction of the vehicle entering an intersection, and the processing portion changing unit expands the predetermined area, with regard to information detected by the sensor unit adapted to detect the information on the rear of and on the left of the vehicle, when the traveling direction is left. 9. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies a traveling direction of the vehicle entering an intersection, and the processing portion changing unit expands the predetermined area, with regard to information detected by the sensor unit adapted to detect the information on the rear of and on the right of the vehicle, when the traveling direction is right. 10. The sensor controller according to claim 2, wherein, the traveling state grasping unit specifies a road type of the road where the vehicle is traveling, and the processing portion changing unit selects a sensor to be activated in accordance with the road type. 11. The sensor controller according to claim 2, wherein, the traveling state grasping unit specifies a road type of the road where the vehicle is traveling, and existence of an oncoming vehicle, and the processing portion changing unit selects a sensor to be activated out of the sensor unit, with regard to information detected by the sensor means for detecting the information on the left side and the right side, when the road type is a narrow road and the oncoming vehicle exists. 12. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies a road type of the road where the vehicle is traveling, and the processing portion changing unit expands the predetermined area in accordance with the road type. 13. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies a road type of the road where the vehicle is traveling, and existence of an oncoming vehicle, and the processing portion changing unit expands the predetermined area, with regard to information detected by the sensor unit adapted to detect the information on the left side and the right side, when the road type is a narrow road and the oncoming vehicle exists. 14. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies whether or not the vehicle performs a lane change on the road currently traveling, and the processing portion changing unit expands the predetermined area when the vehicle performs the lane change, with regard to information detected by the sensor unit adapted to detect information in the direction toward which the vehicle changes lanes. 15. The sensor controller according to claim 2, wherein, the traveling state grasping unit specifies whether or not the vehicle performs a lane change on the road currently traveling, and the processing portion changing unit activates the sensor unit adapted to detect the information in the direction toward which the vehicle changes lanes. 16. The sensor controller according to claim 14, wherein, the traveling state grasping unit specifies that when the road on which the vehicle is traveling is provided with a lane exclusive to the traveling direction and the vehicle is not traveling in the exclusive lane, the lane change is performed toward the exclusive lane. 17. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies existence of a road divider of the road on which the vehicle is traveling, and whether or not the vehicle is traveling in the lane adjacent to the road divider, the processing portion changing unit reduces the predetermined area, with regard to information detected by the sensor unit adapted to detecting the information on the side where the road divider exists, when the vehicle is traveling in the lane adjacent to the road divider. 18. The sensor controller according to claim 1, wherein, the processing portion changing unit raises a priority for executing the processing unit, in accordance with the traveling state grasped by the traveling state grasping unit. 19. A navigation device connected to multiple sensor unit adapted to detect information around a vehicle, comprising, a traveling state grasping unit adapted to grasp a traveling state of the vehicle, a processing unit adapted to perform a certain process on a predetermined area, within the information around the vehicle detected by the sensor unit, and a processing portion changing unit adapted to change the predetermined area to be processed by the processing unit, in accordance with the traveling state grasped by the traveling state grasping unit. 20. A sensor control method according to a sensor controller connected to multiple sensor unit adapted to detect information around a vehicle, wherein, the sensor controller comprises a processing unit adapted to perform a certain process on a predetermined area, within the information around the vehicle detected by the sensor unit, and the sensor control method executes, a traveling state grasping step for grasping a traveling state of the vehicle, and a processing portion changing step for changing the predetermined area in accordance with the traveling state grasped by the traveling state grasping step. 21. The sensor controller according to claim 15, wherein, the traveling state grasping unit specifies that when the road on which the vehicle is traveling is provided with a lane exclusive to the traveling direction and the vehicle is not traveling in the exclusive lane, the lane change is performed toward the exclusive lane.

Citations (6)

  • US2006271278A1
  • US6125326A
  • US6314369B1
  • US7054467B1
  • US7962280B2
  • US8239131B2
Record as JSON
{
  "publication_number": "US2012221207A1",
  "country": "US",
  "kind": "A1",
  "title": "Sensor controller, navigation device, and sensor control method",
  "abstract": "Conventional navigation devices are equipped with technology that supports the driving of a driver by detecting the surroundings of a vehicle using a plurality of sensors such as cameras. However, because complex arithmetic processing is carried out using the detection results from the plurality of sensors, the processing load increases and other processes requiring a rapid response can be delayed. As a result, consideration has been given to decreasing the amount of arithmetic processing and reducing the processing load by uniformly decreasing the processing area for information detected by the sensors. However, if the processing area is uniformly decreased, information necessary for driving support may not be obtained. Provided is a sensor control technology that better obtains information necessary for driving support: a sensor controller, characterised by carrying out predetermined processing by changing the processing area of the information acquired by the sensors according to the vehicle driving conditions.",
  "claims": [
    "1. A sensor controller being connected to multiple sensor unit adapted to detect information around a vehicle, comprising, a traveling state grasping unit adapted to grasp a traveling state of the vehicle, a processing unit adapted to perform a certain process on a predetermined area, within the information around the vehicle detected by the sensor unit, and a processing portion changing unit adapted to change the predetermined area to be processed by the processing unit, in accordance with the traveling state grasped by the traveling state grasping unit. 2. The sensor controller according to claim 1, wherein, the processing portion changing unit selects a sensor to be activated, out of the sensor unit, in accordance with the traveling state grasped by the traveling state grasping unit. 3. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies the number of lanes on the road where the vehicle is traveling, and the processing portion changing unit expands the predetermined area in accordance with the number of lanes. 4. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies the number of lanes on the road where the vehicle is traveling, and the lane where the vehicle is traveling, the processing portion changing unit expands the predetermined area in accordance with the number of lanes, when it is unclear in which lane the vehicle is traveling according to the traveling state grasping unit, and the processing unit performs a lane recognition process on the predetermined area being expanded. 5. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies a gear position of the vehicle, and the processing portion changing unit expands the predetermined area, with regard to information detected by the sensor unit adapted to detect the information on the front, the left, and the right of the vehicle, when the gear position indicates going forward. 6. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies a gear position of the vehicle, and the processing portion changing unit expands the predetermined area, with regard to information detected by the sensor unit adapted to detect the information on the rear, the left, and the right of the vehicle, when the gear position indicates going backward. 7. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies a traveling direction of the vehicle entering an intersection, and the processing portion changing unit expands the predetermined area in accordance with the traveling direction. 8. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies a traveling direction of the vehicle entering an intersection, and the processing portion changing unit expands the predetermined area, with regard to information detected by the sensor unit adapted to detect the information on the rear of and on the left of the vehicle, when the traveling direction is left. 9. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies a traveling direction of the vehicle entering an intersection, and the processing portion changing unit expands the predetermined area, with regard to information detected by the sensor unit adapted to detect the information on the rear of and on the right of the vehicle, when the traveling direction is right. 10. The sensor controller according to claim 2, wherein, the traveling state grasping unit specifies a road type of the road where the vehicle is traveling, and the processing portion changing unit selects a sensor to be activated in accordance with the road type. 11. The sensor controller according to claim 2, wherein, the traveling state grasping unit specifies a road type of the road where the vehicle is traveling, and existence of an oncoming vehicle, and the processing portion changing unit selects a sensor to be activated out of the sensor unit, with regard to information detected by the sensor means for detecting the information on the left side and the right side, when the road type is a narrow road and the oncoming vehicle exists. 12. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies a road type of the road where the vehicle is traveling, and the processing portion changing unit expands the predetermined area in accordance with the road type. 13. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies a road type of the road where the vehicle is traveling, and existence of an oncoming vehicle, and the processing portion changing unit expands the predetermined area, with regard to information detected by the sensor unit adapted to detect the information on the left side and the right side, when the road type is a narrow road and the oncoming vehicle exists. 14. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies whether or not the vehicle performs a lane change on the road currently traveling, and the processing portion changing unit expands the predetermined area when the vehicle performs the lane change, with regard to information detected by the sensor unit adapted to detect information in the direction toward which the vehicle changes lanes. 15. The sensor controller according to claim 2, wherein, the traveling state grasping unit specifies whether or not the vehicle performs a lane change on the road currently traveling, and the processing portion changing unit activates the sensor unit adapted to detect the information in the direction toward which the vehicle changes lanes. 16. The sensor controller according to claim 14, wherein, the traveling state grasping unit specifies that when the road on which the vehicle is traveling is provided with a lane exclusive to the traveling direction and the vehicle is not traveling in the exclusive lane, the lane change is performed toward the exclusive lane. 17. The sensor controller according to claim 1, wherein, the traveling state grasping unit specifies existence of a road divider of the road on which the vehicle is traveling, and whether or not the vehicle is traveling in the lane adjacent to the road divider, the processing portion changing unit reduces the predetermined area, with regard to information detected by the sensor unit adapted to detecting the information on the side where the road divider exists, when the vehicle is traveling in the lane adjacent to the road divider. 18. The sensor controller according to claim 1, wherein, the processing portion changing unit raises a priority for executing the processing unit, in accordance with the traveling state grasped by the traveling state grasping unit. 19. A navigation device connected to multiple sensor unit adapted to detect information around a vehicle, comprising, a traveling state grasping unit adapted to grasp a traveling state of the vehicle, a processing unit adapted to perform a certain process on a predetermined area, within the information around the vehicle detected by the sensor unit, and a processing portion changing unit adapted to change the predetermined area to be processed by the processing unit, in accordance with the traveling state grasped by the traveling state grasping unit. 20. A sensor control method according to a sensor controller connected to multiple sensor unit adapted to detect information around a vehicle, wherein, the sensor controller comprises a processing unit adapted to perform a certain process on a predetermined area, within the information around the vehicle detected by the sensor unit, and the sensor control method executes, a traveling state grasping step for grasping a traveling state of the vehicle, and a processing portion changing step for changing the predetermined area in accordance with the traveling state grasped by the traveling state grasping step. 21. The sensor controller according to claim 15, wherein, the traveling state grasping unit specifies that when the road on which the vehicle is traveling is provided with a lane exclusive to the traveling direction and the vehicle is not traveling in the exclusive lane, the lane change is performed toward the exclusive lane."
  ],
  "cpc": [
    "G01C 21/3407",
    "G01C 21/3602",
    "G01C 21/3691",
    "G01C 21/3697",
    "G06V 20/56",
    "G06V 20/58",
    "G06V 20/586",
    "G08G 1/0104",
    "G08G 1/04",
    "G08G 1/09675",
    "G08G 1/166",
    "G08G 1/167",
    "G08G 1/168"
  ],
  "assignees": [
    "NAKAMURA JUNYA",
    "CLARION CO LTD"
  ],
  "filing_date": "2010-09-21",
  "publication_date": "2012-08-30",
  "priority_date": "2009-09-25",
  "application_number": "US-201013497630-A",
  "family_id": "43795856",
  "citations": [
    "US2006271278A1",
    "US6125326A",
    "US6314369B1",
    "US7054467B1",
    "US7962280B2",
    "US8239131B2"
  ]
}

Record 2,288 of 5,000 in Patents full text (MLC-0201). Request the full dataset.