Method for generating a modified energy-efficient track for a vehicle
US-2024418521-A1 · Dec 19, 2024 · US
US9376118B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9376118-B2 |
| Application number | US-201414325885-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 8, 2014 |
| Priority date | Jul 8, 2014 |
| Publication date | Jun 28, 2016 |
| Grant date | Jun 28, 2016 |
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A method and system monitor a plurality of operating parameters for a tire over time during usage of the tire as the tire is exposed to actual operating conditions. The system and method may also determine a tire health parameter for the tire that provides an indication of the condition of the tire based upon the data collected for the tire over time during usage of the tire. The plurality of operating parameters includes, in the least, a temperature associated with the tire during usage of the tire and a duration of usage of the tire.
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What is claimed is: 1. A method of assessing a condition of a tire on a vehicle, the tire belonging to a tire model, the method comprising: providing at least one temperature sensor in the tire; collecting data associated with a plurality of operating parameters over time during usage of the tire as the tire is exposed to actual operating conditions, wherein the collecting further includes: periodically measuring a cavity air temperature present in an interior of the tire during usage of the tire as the tire is exposed to actual operating conditions, to thereby generate data on a cavity air temperature history during usage of the tire; periodically measuring an ambient air temperature located outside the interior of the tire during usage of the tire as the tire is exposed to actual operating conditions, to thereby generate data on an ambient air temperature history during usage of the tire; and measuring a duration of usage of the tire in actual operating conditions; calculating a belt edge temperature at a belt edge area within the tire over time during usage of the tire as the tire is exposed to actual operating conditions, based on a first formula using the cavity air temperature and ambient air temperature, thereby generating a belt edge temperature history during usage of the tire, wherein the first formula is the following: T be =a*T cav +b*T amb wherein T be is the belt edge temperature, T cav and T amb are the cavity air temperature and the ambient air temperature that have been measured periodically, and a and b are tire model-specific coefficients determined during a tire characterization of the tire model prior to exposure of the tire to actual operating conditions; determining a tire health parameter for the tire that provides an indication of accumulated damage and wear for the tire based upon a second formula using the belt edge temperature history and the duration of usage of the tire during usage of the tire as the tire is exposed to actual operating conditions as well as additional tire-model specific coefficients determined during the tire characterization of the tire model; displaying the tire health parameter to an operator or owner of the vehicle to provide a predictive indication of when maintenance will be required on the tire. 2. The method of claim 1 , wherein the tire health parameter includes an equivalent mileage for the tire. 3. The method of claim 1 , wherein the tire model-specific coefficients vary with respect to tread depth of the tire such that the first formula for calculating the belt edge temperature of the tire is the following: T be (TD)= a (TD)* T cav +b (TD)* T amb , wherein TD is tread depth, T be (TD) is a belt edge temperature value as a function of the tread depth, and a(TD) and b(TD) are model-specific cavity air and ambient functions of the tread depth, which are determined during the tire characterization of the tire model. 4. The method of claim 1 , further comprising: determining the tire health parameter in part based on a nominal tire health parameter determined during the tire characterization of the tire model. 5. The method of claim 1 , wherein the tire health parameter is determined in part based on a reference belt edge temperature constant determined during the tire characterization of the tire model. 6. The method of claim 1 , wherein the tire health parameter is determined in part based on an activation energy constant determined during the tire characterization of the tire model. 7. The method of claim 1 , wherein the second formula is the following: D = ∫ ⅆ D ⅆ n | 0 ⅇ E a ( T be - T 0 ) R gc ( T be T 0 ) ⅆ n , wherein D is the tire health parameter, T be is the belt edge temperature, T 0 is a reference temperature value, E a is an activation energy value, R gc is a gas constant, n is actual mileage defined by the duration of usage of the tire, and dD/dn| 0 is a nominal tire health constant. 8. The method of claim 1 , further comprising: comparing the tire health parameter to a threshold value indicating a need for maintenance of the tire; and generating an alert for the owner or operator of the vehicle if the tire health parameter is beyond the threshold value.
Tyre data · CPC title
Display means · CPC title
related to parameters of the vehicle itself {, e.g. tyre models} · CPC title
Means for informing the driver, warning the driver or prompting a driver intervention · CPC title
Communicating with external units being not part of the vehicle, e.g. tools for diagnostic, mobile phones, electronic keys or service stations · CPC title
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