Apparatus, system and method for configuring a tire information sensor with a transmission protocol based on vehicle trigger characteristics
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
B60C-023/04
H04L-029/08
H04W-004/80
출원번호
US-0225470
(2016-08-01)
등록번호
US-10220660
(2019-03-05)
발명자
/ 주소
McIntyre, Matthew D.
Deniau, Jean-Christophe
Farrell, Brian
Gad, Yasser
Vijayan, Dhivya
출원인 / 주소
Continental Automotive Systems, Inc.
인용정보
피인용 횟수 :
0인용 특허 :
218
초록▼
In a vehicle tire pressure sensor, a wireless, low frequency (LF) receiver identifies a particular type of signal protocol that was used to form a first message that is sent to the sensor by the vehicle. Using the identification of the protocol used to form the first message, the sensor determines a
In a vehicle tire pressure sensor, a wireless, low frequency (LF) receiver identifies a particular type of signal protocol that was used to form a first message that is sent to the sensor by the vehicle. Using the identification of the protocol used to form the first message, the sensor determines a type of signal protocol to be used to transmit information to the vehicle, such as an identifier for the tire pressure sensor in a second message.
대표청구항▼
1. A tire pressure sensor for a motor vehicle having a tire pressure monitor, the tire pressure sensor comprising: a non-Bluetooth wireless receiver located inside a vehicle tire, the non-Bluetooth wireless receiver being configured to: receive from the vehicle tire pressure monitor, a first, non-Bl
1. A tire pressure sensor for a motor vehicle having a tire pressure monitor, the tire pressure sensor comprising: a non-Bluetooth wireless receiver located inside a vehicle tire, the non-Bluetooth wireless receiver being configured to: receive from the vehicle tire pressure monitor, a first, non-Bluetooth low-frequency (LF) wireless message when the non-Bluetooth wireless receiver is inside the vehicle tire, the received first non-Bluetooth message being formed using one of a plurality of different types of first wireless message protocols;while the non-Bluetooth wireless receiver is inside the tire, identify a particular type of wireless message protocol that was used to form the received first non-Bluetooth wireless message; andgenerate a non-Bluetooth output message to a non-Bluetooth wireless transmitter co-located with the non-Bluetooth wireless receiver while the non-Bluetooth wireless receiver is inside the vehicle tire, the non-Bluetooth output message from the non-Bluetooth wireless receiver comprising an identifier, which identifies the non-Bluetooth wireless message protocol by which the received non-Bluetooth first wireless message was formed by the vehicle tire pressure monitor; anda non-Bluetooth wireless transmitter co-located with the non-Bluetooth wireless receiver inside the vehicle tire, the non-Bluetooth wireless transmitter being coupled to the non-Bluetooth wireless receiver, and configured to transmit to the tire pressure monitor from inside the tire, a second, non-Bluetooth, high-frequency message containing tire information using a second non-Bluetooth wireless message protocol, which is selected in response the identifier for the tire pressure sensor;wherein the reception of the first non-Bluetooth message by the non-Bluetooth wireless receiver, the identification of the first non-Bluetooth wireless message protocol by the non-Bluetooth wireless receiver and selection of the second non-Bluetooth wireless message protocol by the non-Bluetooth wireless receiver takes place inside the tire. 2. The tire pressure sensor of claim 1, wherein the non-Bluetooth wireless transmitter is configured to transmit the identifier to the vehicle tire pressure monitor autonomously. 3. The tire pressure sensor of claim 1, further comprising a tire operating condition sensing device operatively coupled to the non-Bluetooth wireless transmitter, the tire operating condition sensing device providing signals that represent an operating condition of a tire, wherein the non-Bluetooth wireless transmitter is configured to receive information from the operating condition sensing device and to transmit the information on a radio frequency (RF) signal, which is formed using a non-Bluetooth message protocol identified by said first non-Bluetooth wireless message from the non-Bluetooth wireless receiver. 4. The tire pressure sensor of claim 3, wherein the non-Bluetooth wireless transmitter transmits the operating condition information on a second radio frequency band, using the protocol identified by the non-Bluetooth wireless receiver and only as often as is required by a manufacturer of the vehicle. 5. The tire pressure sensor of claim 1, wherein the non-Bluetooth wireless receiver is additionally configured to receive a second non-Bluetooth wireless signal, which is formed using one of a plurality of different types of protocols and upon receipt of said second wireless signal, initialize said non-Bluetooth wireless transmitter. 6. The tire pressure sensor of claim 1, wherein the non-Bluetooth wireless receiver is a non-Bluetooth low-frequency, short-range wireless signal receiver, the first wireless signal is a short-range, low-frequency signal and wherein the non-Bluetooth wireless transmitter is a high-frequency radio frequency transmitter.
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