Vehicle proximity condition detection and haptic notification system

US10377307B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10377307-B2
Application numberUS-201815951832-A
CountryUS
Kind codeB2
Filing dateApr 12, 2018
Priority dateJan 18, 2016
Publication dateAug 13, 2019
Grant dateAug 13, 2019

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A computing device for a vehicle proximity condition detection and haptic notification system is provided. The device includes one or more processors for controlling operation of the computing device, and a memory for storing data and program instructions usable by the one or more processors. The one or more processors are configured to execute instructions stored in the memory to enable a user to specify operation of an active suspension system of an ego-vehicle so as to generate at least one pulse at at least one wheel of the vehicle, responsive to a vehicle proximity condition, and operate the active suspension system in accordance with the user's specification.

First claim

Opening claim text (preview).

What is claimed is: 1. A computing device for a vehicle, the computing device comprising: one or more processors for controlling operation of the computing device, and a memory for storing data and program instructions usable by the one or more processors, wherein the one or more processors are configured to execute instructions stored in the memory to: enable a user to specify operation of an active suspension system of an ego-vehicle so as to generate at least one pulse in at least one wheel of the ego-vehicle responsive to a vehicle proximity condition comprising multiple occurrences of other vehicles approaching the ego-vehicle from a rear of the ego-vehicle at a higher speed than that at which the ego-vehicle is traveling, and then changing lanes; and operate the active suspension system in accordance with the user-specified operation. 2. The computing device of claim 1 wherein the one or more processors are configured to execute instructions stored in the memory to enable a user to specify operation of an active suspension system of the ego-vehicle so as to respond to the low speed condition by generating a pulse or series of pulses only in one or more rear wheels of the ego-vehicle. 3. A computing device for a vehicle, the computing device comprising: one or more processors for controlling operation of the computing device, and a memory for storing data and program instructions usable by the one or more processors, wherein the one or more processors are configured to execute instructions stored in the memory to: enable a user to specify operation of an active suspension system of an ego-vehicle so as to generate at least one pulse in at least one wheel of the ego-vehicle and to, simultaneously with generating at least one pulse in at least one wheel of the ego-vehicle, tilt only a seat of the ego-vehicle toward a rear of the ego-vehicle responsive to a vehicle proximity condition and so as to provide a user-selected haptic response directed to informing an ego-vehicle occupant of the vehicle proximity condition; and operate the active suspension system in accordance with the user-specified operation. 4. The computing device of claim 3 wherein the vehicle proximity condition comprises a low following distance condition in which a following distance of the ego-vehicle behind a preceding vehicle traveling in a lane in which both the ego-vehicle and the preceding vehicle are traveling, is determined to be too small. 5. A computing device for a vehicle, the computing device comprising: one or more processors for controlling operation of the computing device, and a memory for storing data and program instructions usable by the one or more processors, wherein the one or more processors are configured to execute instructions stored in the memory to: enable a user to define a virtual space envelope around the ego-vehicle; enable a user to specify operation of an active suspension system of an ego-vehicle so as to generate at least one pulse in at least one wheel of the ego-vehicle responsive to an incursion of another vehicle into a user-defined virtual space envelope defined around the ego-vehicle; and operate the active suspension system in accordance with the user-specified operation. 6. The computing device of claim 5 wherein the vehicle proximity condition comprises an incursion of another vehicle into the virtual space envelope proximate a front of the ego-vehicle, and wherein the one or more processors are configured to execute instructions stored in the memory to enable a user to specify operation of the active suspension system so as to generate the at least one pulse at each front wheel of the ego-vehicle, responsive to the vehicle proximity condition. 7. The computing device of claim 5 wherein the vehicle proximity condition comprises an incursion of another vehicle into the virtual space envelope proximate a rear of the ego-vehicle, and wherein the one or more processors are configured to execute instructions stored in the memory to enable a user to specify operation of the active suspension system so as to generate the at least one pulse at each rear wheel of the ego-vehicle, responsive to the vehicle proximity condition. 8. The computing device of claim 5 wherein the vehicle proximity condition comprises an incursion of another vehicle into the virtual space envelope along a side of the ego-vehicle, and wherein the one or more processors are configured to execute instructions stored in the memory to enable a user to specify operation of the active suspension system so as to generate the at least one pulse at each wheel along a side of the ego-vehicle on which the other vehicle resides, responsive to the vehicle proximity condition. 9. The computing device of claim 5 wherein the one or more processors are configured to execute instructions stored in the memory to enable a user to specify operation of an active suspension system of the ego-vehicle so as to respond to an incursion of the virtual space envelope proximate a rear of the ego-vehicle by another vehicle traveling in a lane adjacent a lane in which the ego-vehicle is traveling, by generating the least one pulse at a rear wheel of the ego-vehicle closest to the adjacent lane. 10. The computing device of claim 5 wherein the one or more processors are configured to execute instructions stored in the memory to enable a user to specify operation of an active suspension system of the ego-vehicle so as to respond to an incursion of the virtual space envelope proximate a front of the ego-vehicle by another vehicle traveling in a lane adjacent a lane in which the ego-vehicle is traveling, by generating the least one pulse at a front wheel of the ego-vehicle closest to the adjacent lane. 11. The computing device of claim 5 wherein the one or more processors are configured to execute instructions stored in the memory to enable variation of a magnitude of the at least one pulse responsive to incursion of another vehicle into the virtual space envelope defined around the ego-vehicle, according to a speed of the other vehicle. 12. The computing device of claim 5 wherein the one or more processors are configured to execute instructions stored in the memory to enable variation of a magnitude of the at least one pulse responsive to incursion of another vehicle into the virtual space envelope defined around the ego-vehicle, according to a proximity of the other vehicle to the ego-vehicle. 13. A method, in a computing system, of operating at least a portion of an ego-vehicle responsive to an occurrence of a vehicle proximity condition, comprising steps of: receiving user input specifying operation of an active suspension system of the ego vehicle so as to generate at least one pulse in at least one wheel of the ego-vehicle responsive to an incursion of another vehicle into a user-defined virtual space envelope around the ego-vehicle, the space envelope having a boundary residing at a distance R from a front of the ego-vehicle and at a distance r from each side of the ego-vehicle, where R>r and operating the active suspension system in accordance with the user-specified operation. 14. A computing device for a vehicle, the computing device comprising: one or more processors for controlling operation of the computing device, and a memory for storing data and program instructions usable by the one or more processors, wherein the one or more processors are configured to execute instructions stored in the memory to: enable a user to define a virtual space envelope around the ego-vehicle; enable a user to specify an operation of an active suspension system of the ego-vehicle to be implemented responsi

Assignees

Inventors

Classifications

  • Details or parts not otherwise provided for · CPC title

  • mainly during a motion involving steering operation, e.g. cornering, overtaking (B60G17/0164 takes precedence) · CPC title

  • Warning systems, e.g. the seat or seat parts vibrates to warn the passenger when facing a danger · CPC title

  • characterised by the regulation being combined with other vehicle control systems {(conjoint control of vehicle sub-units including control of suspension systems B60W10/22)} · CPC title

  • Other conditions or factors · CPC title

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What does patent US10377307B2 cover?
A computing device for a vehicle proximity condition detection and haptic notification system is provided. The device includes one or more processors for controlling operation of the computing device, and a memory for storing data and program instructions usable by the one or more processors. The one or more processors are configured to execute instructions stored in the memory to enable a user…
Who is the assignee on this patent?
Toyota Eng & Mfg North America
What technology area does this patent fall under?
Primary CPC classification B60G17/0162. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Aug 13 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 5 related publications on this page (citations in our corpus or others sharing the same primary CPC).