Control device and method for estimating driving range for a vehicle
A control device and a method for estimating a driving range for a vehicle. The method comprises, based on available driving energy for the vehicle, estimating distance to empty taking into account an estimated variation in rolling resistance of the vehicle, wherein said estimated variation in rolling resistance of the vehicle is determined using a predetermined transient rolling resistance model into which transient tire temperature effects on rolling resistance are incorporated.
1 . A method, performed by a control device, for estimating a driving range for a vehicle, the method comprising:
based on available driving energy for the vehicle, estimating the driving range taking into account an estimated variation in rolling resistance of the vehicle, wherein the estimated variation in rolling resistance of the vehicle is determined using a predetermined transient rolling resistance model into which transient tire rubber temperature effects on rolling resistance are incorporated, wherein the transient tire rubber temperature used in the model is a tire rubber temperature of at least a portion of the tire that face towards a road surface; and
approving or adjusting the planned upcoming driving event in dependence of whether the estimated driving range is determined to be sufficient or not for completing the planned upcoming driving event.
2 . The method according to claim 1 , wherein the predetermined transient rolling resistance model takes into account ambient temperature.
3 . The method according to claim 1 , wherein the predetermined transient rolling resistance model takes into account at least one parameter causing cooling of the tire during driving of the vehicle.
4 . The method according to claim 3 , wherein at least one parameter causing cooling of the tire during driving comprises rain, wet road condition and/or aerodynamic cooling.
5 . The method according to claim 1 , wherein the predetermined transient rolling resistant model takes into account vehicle speed.
6 . The method according to claim 1 , wherein the predetermined transient rolling resistance model takes into account an estimated transient temperature of the tires determined based on predicted driving conditions of the vehicle.
7 . The method according to claim 1 , wherein the predetermined transient rolling resistance model takes into account a predicted or measured initial temperature of the tire rubber at a start of a planned driving event, and/or a predicted temperature of the tire rubber at the start of a portion of the planned upcoming driving event.
8 . The method according to claim 1 , wherein the predetermined transient rolling resistance model is adapted to calculate a time-dependent adjusted rolling resistance coefficient based on a predetermined rolling resistance coefficient determined according to a standardized procedure.
9 . The method of claim 1 , wherein the estimation of a variation in rolling resistance of the vehicle for an upcoming driving event comprises estimating a duration of a transient tire rubber temperature behavior.
10 . The method of claim 9 further comprising estimating the duration of transient tire rubber temperature behavior based on predicted driving conditions of the vehicle for one or more portions of the planned upcoming driving event.
11 . The method according to claim 1 , the portion of the tire that faces towards the road surface comprises a crown and a shoulder of the tire.
12 . A method, performed by a control device, the method comprising:
estimating a driving range for a vehicle for a planned upcoming driving event, said estimating comprising:
based on available driving energy for the vehicle, estimating the driving range taking into account an estimated variation in rolling resistance of the vehicle,
wherein the estimated variation in rolling resistance of the vehicle is determined using a predetermined transient rolling resistance model into which transient tire rubber temperature effects on rolling resistance are incorporated, wherein the transient tire rubber temperature used in the model is a tire rubber temperature of at least a portion of the tire that face towards a road surface; and
approving or adjusting the planned upcoming driving event in dependence of whether the estimated driving range is determined to be sufficient or not for completing the planned upcoming driving event.
13 . The method according to claim 12 , wherein the upcoming driving event comprises a plurality of portions, each being associated with a variation in tire rubber temperature.
14 . The method according to claim 12 , wherein the planned upcoming driving event comprises at least one planned stop.
15 . A computer program product stored on a non-transitory computer-readable medium, said computer program product for estimating a driving range for a vehicle, wherein said computer program product comprising computer instructions to cause one or more computing devices to perform the following operations:
based on available driving energy for the vehicle, estimating the driving range taking into account an estimated variation in rolling resistance of the vehicle, wherein the estimated variation in rolling resistance of the vehicle is determined using a predetermined transient rolling resistance model into which transient tire rubber temperature effects on rolling resistance are incorporated, wherein the transient tire rubber temperature used in the model is a tire rubber temperature of at least a portion of the tire that face towards a road surface; and
approving or adjusting the planned upcoming driving event in dependence of whether the estimated driving range is determined to be sufficient or not for completing the planned upcoming driving event.
16 . The computer program product according to claim 15 , wherein the predetermined transient rolling resistance model takes into account ambient temperature.
17 . The computer program product according to claim 15 , wherein the predetermined transient rolling resistance model takes into account at least one parameter causing cooling of the tire during driving of the vehicle.
18 . The computer program product according to claim 15 , wherein the predetermined transient rolling resistant model takes into account vehicle speed.
19 . The computer program product according to claim 15 , wherein the predetermined transient rolling resistance model takes into account an estimated transient temperature of the tires determined based on predicted driving conditions of the vehicle.
20 . A control device configured to estimate a driving range for a vehicle, wherein the control device is configured to:
based on available driving energy for the vehicle, estimate the driving range taking into account an estimated variation in rolling resistance of the vehicle, wherein the estimated variation in rolling resistance of the vehicle is determined using a predetermined transient rolling resistance model into which transient tire temperature effects on rolling resistance are incorporated, wherein the transient tire rubber temperature used in the model is a tire rubber temperature of at least a portion of the tire that face towards a road surface; and
approving or adjusting the planned upcoming driving event in dependence of whether the estimated driving range is determined to be sufficient or not for completing the planned upcoming driving event.
21 . The control device according to claim 20 , wherein the predetermined transient rolling resistance model takes into account ambient temperature.
22 . The control device according to claim 20 , wherein the predetermined transient rolling resistance model takes into account at least one parameter causing cooling of the tire during driving of the vehicle.
23 . A vehicle comprising a control device configured to estimate a driving range for a vehicle, wherein the control device is configured to:
based on available driving energy for the vehicle, estimate the driving range taking into account an estimated variation in rolling resistance of the vehicle, wherein the estimated variation in rolling resistance of the vehicle is determined using a predetermined transient rolling resistance model into which transient tire temperature effects on rolling resistance are incorporated, wherein the transient tire rubber temperature used in the model is a tire rubber temperature of at least a portion of the tire that face towards a road surface; and
approving or adjusting the planned upcoming driving event in dependence of whether the estimated driving range is determined to be sufficient or not for completing the planned upcoming driving event.