Apparatus, method and system for controlling smart key

US9367977B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9367977-B2
Application numberUS-201414294693-A
CountryUS
Kind codeB2
Filing dateJun 3, 2014
Priority dateNov 13, 2013
Publication dateJun 14, 2016
Grant dateJun 14, 2016

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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.

An apparatus, a method, and a system are provided for controlling a smart key. The smart key control apparatus includes a smart key controller that is configured to transmit a wake-up signal for a smart key when a start-up command is detected in a start-off state of a vehicle and authenticate the smart key based on a response of the smart key that corresponds to the wake-up signal. In addition, a peripheral controller is configured to adjust a power level of a neighboring portable terminal when an authentication for the smart key fails and a communicator is configured to transmit and receive a signal between the smart key and the portable terminal.

First claim

Opening claim text (preview).

What is claimed is: 1. A smart key control apparatus comprising: a smart key controller configured to transmit a wake-up signal for a smart key when a start-up command is detected in a start-off state of a vehicle, and authenticate the smart key based on a response of the smart key that corresponds to the wake-up signal; a peripheral controller configured to adjust a power level of a neighboring portable terminal when an authentication for the smart key fails; and a communicator configured to transmit and receive a signal between the smart key and the portable terminal. 2. The smart key control apparatus of claim 1 , wherein the peripheral controller is configured to transmit a control signal that requests an entrance of the portable terminal into a low power mode. 3. The smart key control apparatus of claim 2 , wherein the peripheral controller is configured to determine a power mode status of the portable terminal based on a response signal from the portable terminal that corresponds to the control signal. 4. The smart key control apparatus of claim 2 , wherein the peripheral controller is configured to transmit a control signal that requests a release of the low power mode of the portable terminal during a completion of the authentication of the smart key when the portable terminal enters the low power mode. 5. The smart key control apparatus of claim 1 , wherein the smart key controller is configured to retransmit the wake-up signal when the portable terminal enters the low power mode during authentication failure of the smart key. 6. The smart key control apparatus of claim 1 , wherein the smart key controller is configured to determine failure of the authentication of the smart key when an error signal generated from the smart key is received when 1-bit or 2-bit error for the wake-up signal occurs. 7. The smart key control apparatus of claim 1 , wherein the smart key controller is configured to determine failure of the authentication of the smart key when a response signal is not received within a certain period of time from the smart key in response to the wake-up signal. 8. The smart key control apparatus of claim 1 , wherein the communicator is configured to transmit a signal to the smart key using a low frequency (LF) communication method, and receive a signal from the smart key using a radio frequency (RF) communication method. 9. The smart key control apparatus of claim 1 , wherein the communicator is configured to transmit and receive a signal with the portable terminal using a short-distance wireless communication method selected from a group consisting of: a near field communication (NFC) and Bluetooth. 10. A method of controlling a smart key, the method comprising: transmitting, by a smart key controller, a wake-up signal for the smart key when a start-up command is detected in a start-off state of a vehicle; authenticating, by the smart key controller, the smart key based on a response of the smart key that corresponds to the wake-up signal; requesting, by a peripheral controller, an entrance of a neighboring portable terminal into a low power mode when an authentication for the smart key fails; and retransmitting, by the smart key controller, the wake-up signal when the portable terminal enters the low power mode. 11. The method of claim 10 , after retransmitting the wake-up signal, further comprising: requesting, by the peripheral controller, a release of the low power mode of the portable terminal during a completion of the authentication of the smart key based on a response of the smart key that corresponds to the wake-up signal. 12. A smart key control system comprising: a smart key; a smart key controller configured to transmit a wake-up signal to the smart key when a start-up command is detected in a start-off state of a vehicle, and adjust a power level generated from surroundings based on a result of key authentication of the smart key by the wake-up signal; and a portable terminal configured to operate in a low power mode by the smart key controller during authentication between the smart key and the smart key controller. 13. A non-transitory computer readable medium containing program instructions executed by a controller, the computer readable medium comprising: program instructions that transmit a wake-up signal for the smart key when a start-up command is detected in a start-off state of a vehicle; program instructions that authenticate the smart key based on a response of the smart key that corresponds to the wake-up signal; program instructions that request an entrance of a neighboring portable terminal into a low power mode when an authentication for the smart key fails; and program instructions that retransmit the wake-up signal when the portable terminal enters the low power mode. 14. The non-transitory computer readable medium of claim 13 , further comprising: program instructions that request a release of the low power mode of the portable terminal during a completion of the authentication of the smart key based on a response of the smart key that corresponds to the wake-up signal.

Assignees

Inventors

Classifications

  • whereby the wake-up circuit is situated in the keyless data carrier · CPC title

  • operated with bidirectional data transmission between data carrier and locks · CPC title

  • Near field communication [NFC] · CPC title

  • Mobile phones · CPC title

  • Bluetooth® · CPC title

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Frequently asked questions

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What does patent US9367977B2 cover?
An apparatus, a method, and a system are provided for controlling a smart key. The smart key control apparatus includes a smart key controller that is configured to transmit a wake-up signal for a smart key when a start-up command is detected in a start-off state of a vehicle and authenticate the smart key based on a response of the smart key that corresponds to the wake-up signal. In addition,…
Who is the assignee on this patent?
Hyundai Motor Co Ltd
What technology area does this patent fall under?
Primary CPC classification G07C9/00309. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Jun 14 2016 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 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).