Method for locating the position of wheels which are fitted with an electronic unit incorporating means of measuring an operating parameter of said wheel
US-2015233711-A1 · Aug 20, 2015 · US
US9539867B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9539867-B2 |
| Application number | US-201214371279-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 12, 2012 |
| Priority date | Jan 18, 2012 |
| Publication date | Jan 10, 2017 |
| Grant date | Jan 10, 2017 |
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Official abstract text for this publication.
A wheel position detector for a vehicle includes: a transmitter at each wheel having a first control portion for transmitting a frame with specific identification information; and a receiver at a vehicle body receiving the frame from one wheel and having a second control portion for performing wheel position detection; and a wheel speed sensor for detecting a tooth of a gear. The second control portion: acquires gear information indicating a tooth position; sets a variation allowance based on the tooth position; registers the one wheel with using the variation allowance; and performs the wheel position detection by excluding an identified wheel as the one wheel from a candidate of another wheel mounting the transmitter that transmits another frame when the second control portion identifies the one wheel.
Opening claim text (preview).
What is claimed is: 1. A wheel position detector for a vehicle having a plurality of wheels, each of which includes a tire mounted on a vehicle body, the wheel position detector comprising: a transmitter that is arranged at each wheel, and includes a first control portion for generating and transmitting a frame including specific identification information; and a receiver that is arranged at the vehicle body, receives the frame transmitted from the transmitter of one of the wheels via a reception antenna at a reception time, and includes a second control portion for performing wheel position detection of specifying the one of wheels according to the specific identification information in the frame and storing a relationship between the one of wheels and the specific identification information, wherein each transmitter further includes an acceleration sensor that outputs a detection signal corresponding to acceleration, which has a gravity acceleration component varying with a rotation of a respective wheel mounting the transmitter, wherein the first control portion of the transmitter at each wheel detects an angle of the transmitter based on the gravity acceleration component in the detection signal from the acceleration sensor, wherein each wheel has a central axis as a center of the wheel, a predetermined position of a circumference of the wheel is referred as a zero degree position, and the angle of the transmitter is defined by the transmitter, the center and the zero angle position, wherein the transmitter at each wheel repeatedly transmits the frame at every time the angle of the transmitter reaches a specified transmission value, the wheel position detector further comprising: a wheel speed sensor for each wheel that detects a tooth of a gear, which rotates in association with the wheel, wherein the gear of each wheel has an outer periphery, which provides teeth as conductive portions and a plurality of intermediate portions between the teeth so that conductive portions and the intermediate portions are alternately arranged along the outer periphery, and a magnetic resistance of tooth is different from a magnetic resistance of an intermediate portion, wherein the second control portion acquires gear information indicating a tooth position of the gear based on a detection signal from the wheel speed sensor, wherein the second control portion sets a variation allowance based on the tooth position when the receiver receives the frame, wherein the second control portion excludes a certain wheel from a candidate of the one of wheels mounting the transmitter that transmits the frame when the receiver receives the frame, and the tooth position of the certain wheel is not disposed within the variation allowance after the variation allowance is set, wherein the second control portion registers a remaining wheel as the one of wheels mounting the transmitter that transmits the frame, wherein the second control portion performs the wheel position detection by excluding an identified wheel as the one of wheels from a candidate of another one of wheels mounting the transmitter that transmits another frame when the second control portion identifies the one of wheels mounting the transmitter that transmits the frame. 2. The wheel position detector according to claim 1 , wherein the second control portion changes the variation allowance at every time the receiver receives the frame, wherein the second control portion sets another variation allowance based on another tooth position when the receiver receives a new frame, wherein the second control portion changes the variation allowance to a new variation allowance, which is provided by an overlap portion between the variation allowance and the another variation allowance, wherein the second control portion corrects the tooth position transmitted with a different transmission angle at the reception time to be a tooth position with an equal transmission angle, and wherein the second control portion specifies the one of wheels mounting the transmitter that transmits the frame, by determining whether a corrected tooth position with the equal transmission angle is disposed within the variation allowance. 3. The wheel position detector according to claim 1 , wherein the second control portion increases a range of the variation allowance accordingly as a vehicle speed increases. 4. The wheel position detector according to claim 1 , wherein the first control portion transmits the frame, which further includes data that determines a range of the variation allowance set by the second control portion. 5. A tire inflation pressure detector including the wheel position detector according to claim 1 , wherein the transmitter of each wheel further includes a sensing portion for outputting a detection signal corresponding to a tire inflation pressure of the tire, wherein the first control portion of each wheel processes the detection signal from the sensing portion to acquire information about the tire inflation pressure, and the transmitter stores the information about the tire inflation pressure in the frame, and transmits the frame to the receiver, and wherein the second control portion in the receiver detects the tire inflation pressure of the tire on each wheel based on the information about the tire inflation pressure.
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for detecting the actual angular position of the monitoring device while the wheel is turning · CPC title
Sharing hardware components like housing, antenna, receiver or signal transmission line with other vehicle systems like keyless entry or brake control units · CPC title
cooperating with wheel hub mounted speed sensors · CPC title
allocating a corresponding wheel position on vehicle, e.g. front/left or rear/right · CPC title
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