METHOD FOR IMPROVING THE UTILIZATION RATE OF A VEHICLE-TO-X COMMUNICATION DEVICE AND VEHICLE-TO-X COMMUNICATION DEVICE
20200084031 · 2020-03-12
Inventors
Cpc classification
H04W4/44
ELECTRICITY
H04L9/088
ELECTRICITY
H04L9/0877
ELECTRICITY
H04L9/3252
ELECTRICITY
International classification
H04L9/08
ELECTRICITY
H04L9/32
ELECTRICITY
Abstract
A method for improving the utilization rate of a vehicle-to-X communication device for vehicle-to-X communication, having the steps: receipt of digital certificates by the vehicle-to-X communication device, generation of cryptographic keys for signing vehicle-to-X messages to be emitted using the digital certificates by an electronic computing apparatus, temporal spacing of the receipt of the digital certificates by the vehicle-to-X communication device, and generation of the cryptographic keys using the digital certificates. Furthermore, a vehicle-to-X communication device and use of the device in a vehicle or an infrastructure apparatus is provided.
Claims
1. A method for improving the utilization rate of a vehicle-to-X communication device for vehicle-to-X communication, comprising: receipt of digital certificates by the vehicle-to-X communication device, generation of cryptographic keys for signing vehicle-to-X messages to be emitted using the digital certificates by an electronic computing apparatus, and temporal spacing of the receipt of the digital certificates by the vehicle-to-X communication device and generation of the cryptographic keys using the digital certificates is provided.
2. The method according to claim 1, wherein the temporal spacing is configured as required with regard to a respective certificate and/or key.
3. The method according to claim 1, wherein the temporal spacing is configured as a function of a respective validity period of a respective certificate.
4. The method according to claim 1, wherein the temporal spacing of receipt of the digital certificates and generation of the keys is configured in such a way that generation of a respective key is shifted temporally from the time of receipt of the certificates towards an actual and/or probable time of use of a respective certificate and/or of the respective key.
5. The method according to claim 1, wherein generation of a respective key using a respective certificate proceeds directly before a validity period of a respective certificate comes into effect and/or directly subsequent to a validity period of a respective certificate coming into effect.
6. The method according to claim 1, wherein the electronic computing apparatus determines the start of a validity period of a respective certificate and initiates generation of a respective key such that generation of the respective key is completed prior to the start of the validity period.
7. The method according to claim 1, wherein, in the event of the computing capacity of the electronic computing unit not being fully utilized, keys for future vehicle-to-X message signatures are produced.
8. The method according to claim 1, wherein the certificates stored in a data memory are replaced by the keys produced.
9. A vehicle-to-X communication device, comprising: a receiving apparatus for receiving digital certificates, an electronic computing apparatus, configured to generate cryptographic keys for signing vehicle-to-X messages to be emitted using the digital certificates, wherein the vehicle-to-X communication device is configured to undertake temporal spacing of receipt of the digital certificates and generation of the cryptographic keys using the digital certificates.
10. The vehicle-to-X communication device according to claim 9, wherein the electronic computing apparatus is configured such that computing resources of the electronic computing apparatus are merely designed to cover the computing resources needed for signature of the vehicle-to-X messages.
11. The vehicle-to-X communication device according to claim 9, wherein the electronic computing apparatus comprises a hardware security module for producing the keys from the certificates and/or for signing the vehicle-to-X messages with the keys.
12. The vehicle-to-X communication device according to claim 9, wherein the device is configured to carry out a method comprising: receipt of digital certificates by the vehicle-to-X communication device, generation of cryptographic keys for signing vehicle-to-X messages to be emitted using the digital certificates by the electronic computing apparatus, and temporal spacing of the receipt of the digital certificates by the vehicle-to-X communication device and generation of the cryptographic, keys using the digital certificates.
13. Use of the vehicle-to-X communication device according to claim 9 in a vehicle or an infrastructure apparatus.
14. The vehicle-to-X communication device according to claim 10, wherein the electronic computing apparatus comprises a hardware security module for producing the keys from the certificates and/or for signing the vehicle-to-X messages with the keys.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0031] Certain particularly advantageous configurations of aspects of the invention are indicated in the subclaims. Further preferred embodiments are also apparent from the following description of exemplary embodiments made with reference to figures, in which in schematic representation:
[0032]
[0033]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0034]
[0035]
[0036] The vehicle-to-X communication device 10 furthermore comprises for example a data memory 11-2 for storing the received digital certificates and/or the generated keys. The data memory 11-2 is conveniently a data memory suitable for the purposes of ensuring information security.
[0037] The vehicle-to-X communication device 10 may furthermore be configured alternatively or in addition to receive digital certificates for example by means of a vehicle network 11-3, for example a data bus, such as in particular CAN, Ethernet or FlexRay.
[0038] If it turns out, over the course of the procedure, that a feature or a group of features is not absolutely necessary, then the applicant already requests now a wording of at least one independent claim in which the feature or group of features is no longer included. This may for example be a sub-combination of a claim present at the filing date or a sub-combination limited by further features of a claim present at the filing date. Such claims or combinations of features which are to be reworded should be understood also to be covered by the disclosure of this application.
[0039] It should also be pointed out that configurations, features and variants of aspects of the invention, which are described in the various embodiments or exemplary embodiments and/or shown in the figures, may be combined together as desired. Individual or multiple features are interchangeable as desired. Resultant combinations of features should be understood also to be covered by the disclosure of this application.
[0040] Back-references in dependent claims should not be understood to amount to renouncing independent objective protection for the features of the back-referenced subclaims. These features may also be combined as desired with other features.
[0041] Features which are only disclosed in the description or features which are disclosed in the description or in a claim only in conjunction with other features may in principle independently have significance which is essential to an aspect of the invention. They may therefore also be included individually in claims for the purpose of differentiation from the prior art.
[0042] In general, it should be noted that vehicle-to-X communication is in particular taken to mean direct communication between vehicles and/or between vehicles and infrastructure apparatuses. For example, it may thus be vehicle-to-vehicle communication or vehicle-to-infrastructure communication. If, in the context of this application, reference is made to communication between vehicles, this may in principle proceed for example in the context of vehicle-to-vehicle communication, which typically proceeds without mediation by a mobile radio network or a similar external infrastructure and which may therefore be distinguished from other solutions which are based for example on a mobile radio network. For example, vehicle-to-X communication may proceed on the basis of standards IEEE 802.11p or IEEE 1609.4. Vehicle-to-X communication may also be described as C2X communication or V2X communication. The sub-categories may be described as C2C (car-to-car) and V2V (vehicle-to-vehicle) or C2I (car-to-infrastructure) and V2I (vehicle-to-infrastructure). However, the an aspect of invention explicitly does not rule out vehicle-to-X communication with mediation for example via a mobile radio network.