EP2186078A1 - Notrufeinrichtung für ein fahrzeug - Google Patents
Notrufeinrichtung für ein fahrzeugInfo
- Publication number
- EP2186078A1 EP2186078A1 EP08787510A EP08787510A EP2186078A1 EP 2186078 A1 EP2186078 A1 EP 2186078A1 EP 08787510 A EP08787510 A EP 08787510A EP 08787510 A EP08787510 A EP 08787510A EP 2186078 A1 EP2186078 A1 EP 2186078A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- emergency call
- connection
- server
- vehicle
- data
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
Classifications
-
- G—PHYSICS
- G08—SIGNALLING
- G08G—TRAFFIC CONTROL SYSTEMS
- G08G1/00—Traffic control systems for road vehicles
- G08G1/09—Arrangements for giving variable traffic instructions
- G08G1/0962—Arrangements for giving variable traffic instructions having an indicator mounted inside the vehicle, e.g. giving voice messages
- G08G1/0967—Systems involving transmission of highway information, e.g. weather, speed limits
- G08G1/096708—Systems involving transmission of highway information, e.g. weather, speed limits where the received information might be used to generate an automatic action on the vehicle control
- G08G1/096716—Systems involving transmission of highway information, e.g. weather, speed limits where the received information might be used to generate an automatic action on the vehicle control where the received information does not generate an automatic action on the vehicle control
-
- G—PHYSICS
- G08—SIGNALLING
- G08G—TRAFFIC CONTROL SYSTEMS
- G08G1/00—Traffic control systems for road vehicles
- G08G1/01—Detecting movement of traffic to be counted or controlled
- G08G1/04—Detecting movement of traffic to be counted or controlled using optical or ultrasonic detectors
-
- G—PHYSICS
- G08—SIGNALLING
- G08G—TRAFFIC CONTROL SYSTEMS
- G08G1/00—Traffic control systems for road vehicles
- G08G1/09—Arrangements for giving variable traffic instructions
- G08G1/095—Traffic lights
-
- G—PHYSICS
- G08—SIGNALLING
- G08G—TRAFFIC CONTROL SYSTEMS
- G08G1/00—Traffic control systems for road vehicles
- G08G1/09—Arrangements for giving variable traffic instructions
- G08G1/0962—Arrangements for giving variable traffic instructions having an indicator mounted inside the vehicle, e.g. giving voice messages
- G08G1/0967—Systems involving transmission of highway information, e.g. weather, speed limits
- G08G1/096708—Systems involving transmission of highway information, e.g. weather, speed limits where the received information might be used to generate an automatic action on the vehicle control
- G08G1/096725—Systems involving transmission of highway information, e.g. weather, speed limits where the received information might be used to generate an automatic action on the vehicle control where the received information generates an automatic action on the vehicle control
-
- G—PHYSICS
- G08—SIGNALLING
- G08G—TRAFFIC CONTROL SYSTEMS
- G08G1/00—Traffic control systems for road vehicles
- G08G1/09—Arrangements for giving variable traffic instructions
- G08G1/0962—Arrangements for giving variable traffic instructions having an indicator mounted inside the vehicle, e.g. giving voice messages
- G08G1/0967—Systems involving transmission of highway information, e.g. weather, speed limits
- G08G1/096733—Systems involving transmission of highway information, e.g. weather, speed limits where a selection of the information might take place
- G08G1/096758—Systems involving transmission of highway information, e.g. weather, speed limits where a selection of the information might take place where no selection takes place on the transmitted or the received information
-
- G—PHYSICS
- G08—SIGNALLING
- G08G—TRAFFIC CONTROL SYSTEMS
- G08G1/00—Traffic control systems for road vehicles
- G08G1/09—Arrangements for giving variable traffic instructions
- G08G1/0962—Arrangements for giving variable traffic instructions having an indicator mounted inside the vehicle, e.g. giving voice messages
- G08G1/0967—Systems involving transmission of highway information, e.g. weather, speed limits
- G08G1/096766—Systems involving transmission of highway information, e.g. weather, speed limits where the system is characterised by the origin of the information transmission
- G08G1/096783—Systems involving transmission of highway information, e.g. weather, speed limits where the system is characterised by the origin of the information transmission where the origin of the information is a roadside individual element
Definitions
- the invention relates to the emergency call and safety technology for vehicles.
- the invention relates to an emergency call device for a vehicle for network-based transmission of an emergency call, an emergency call system, the use of an emergency call device in a vehicle, a vehicle with an emergency call device, a method, a program element and a computer-readable medium.
- Vehicle emergency call systems have been known for some time. For automated deposition of a
- Ecall Emergency calls are placed in vehicles to transmit units in case of an accident automatically a single number, for example, the Euronotruf devis 1 12 or the
- PSAP Safety Answering Point
- the rescue center uses a fixed database in which the ambulance data is stored.
- the rescue center and possible helpers such as paramedics
- GSM Global System for Mobile Communications
- Geodesists also use geographical navigation to locate geodesists using satellite navigation systems such as the Global Positioning System (GPS) or generally a Global Navigation Satellite System (GNSS).
- GPS Global Positioning System
- GNSS Global Navigation Satellite System
- an emergency call device for a vehicle for network-based transmission of an emergency call, an emergency call system, a use, a method, a program element, and a computer-readable medium according to the features of the independent claims. Further developments of the invention will become apparent from the dependent claims. The described embodiments equally relate to the emergency call device, the emergency call system, the use, the vehicle, the method, the program element and the computer-readable medium.
- auxiliary unit in the context of the invention, both any medical emergency service, such as an ambulance to understand, as well as any technical support service, such as the General German Automobile Club (ADAC), local workshops, service mobile or other medical or technical support facilities, the In the event of an accident or technical failure, the user of the vehicle can provide assistance.
- an emergency call device for a vehicle is provided for the network-based transmission of an emergency call to auxiliary units.
- the emergency call device has an interface for establishing a connection with a server, as well as a transmitting unit for transmitting emergency call data to the server via the connection.
- connection is a permanent IP connection and the network interface is in case of acceptance of the emergency call by an auxiliary unit continues to set up a communication connection with the auxiliary unit via the server.
- the communication connection uses the already existing IP connection between the emergency call device and the server.
- an automated emergency call is transmitted to the emergency server via a transmitting unit of the emergency call device
- the necessary data such as position, severity of the accident, type of accident and, for example, individual data about the occupants are transmitted to the emergency server via the IP connection in addition to the emergency call.
- the server in turn automatically transmits the emergency call to the nearby free auxiliary units. It is thus possible to preselect the free auxiliary units by the server.
- the server works fully automatically.
- the individual connections between the server and the respective rescue units can be any physical connection for the exchange of data, such as an IP connection or a GSM radio connection. If an auxiliary unit accepts the emergency call, a connection, for example a voice connection, is established from the receiving rescue unit to the vehicle via the server.
- At least the part of the communication link between the vehicle and the server uses the still existing IP connection between the vehicle and the server.
- a routing of the server is thus not required and the setup time and error rate can be reduced.
- a voice over IP connection can be established in the already existing IP connection.
- each auxiliary unit can also maintain its respective connection to the server to optimize the setup time.
- the communication link has a first and a second section.
- the first section is between the emergency call device and the server, and the second section is between the server and the auxiliary unit accepting the emergency call.
- At least the first section of the communication connection is a voice over IP connection.
- the vehicle in such an automated emergency call, the vehicle establishes an IP connection to the server and transmits the necessary data to the server. If an ambulance picks up the emergency call, a voice connection is established via Voice over IP. Since both the vehicle and the server are already registered in the network and there is an IP connection between the vehicle and the server, a Voice over IP connection can be established without any technical effort and without any further time losses.
- no rescue coordination center is necessary for transmitting the emergency call to the auxiliary units.
- the emergency unit accepting the emergency call is selected by the direct, independent acceptance of the emergency call of the auxiliary unit.
- auxiliary units eliminates the need for a mediating body, such as a Public Safety Answering Points or a rescue center, which must be staffed. This can save costs and avoid sources of error. Likewise, the self-selection of the auxiliary unit, which can provide assistance and accepts the emergency call to avoid avoiding the incorrect assignment by the rescue center.
- the emergency call data are selected from the group consisting of the current and historical position of the vehicle, type of accident, severity of an accident, time of accident, number of occupants, individual information of the occupants, biometric information, information on a technical defect, Fault diagnostic information, and measurements from sensors of the vehicle.
- assistance can be given to the emergency call, which is adapted individually to the present case.
- that auxiliary unit can decide to accept the emergency call, which has the necessary elements for optimal assistance.
- the historical position may be retrieved later by pre-recording the positions of the vehicle.
- the security can be increased, for example, in the event that the position determination unit should fail.
- the type of emergency call data and the parameters of the technical transmission of the emergency call data are adapted to additional information.
- the additional information corresponds to the external environment of the vehicle.
- the external environment of the vehicle includes not only the physical and meteorological environmental conditions and the static traffic conditions such as the course of roads, but also the information landscape formed by other vehicles and an infrastructure via communication with the vehicle. Similarly, the external environment includes measured values that are determined by a detection unit of the vehicle.
- this embodiment of the invention not only emergency data, but general data concern and also a communication between the vehicle and the vehicle or a communication between the vehicle and infrastructure is possible with this embodiment of the invention.
- the infrastructure may be, for example, a server.
- the emergency call device is thus a communication unit. This situation-dependent transmission of data can also serve to reduce the transmitted data rate and the amount of data sent in standard situations that do not include an emergency call.
- a communication unit for a first vehicle for transferring data between the first vehicle and a second vehicle or between the first vehicle and an infrastructure is thus indicated.
- the communication unit has a transmitting unit, a memory unit and a computing unit.
- the memory unit is designed to supply additional information.
- the arithmetic unit for adapting the type of data and for adapting technical parameters of the transmission on the basis of Additional information executed.
- the additional information corresponds to the external environment of the first vehicle.
- the memory unit receives data from e.g. a detection unit, provided by the second vehicle or by an infrastructure, based on which the arithmetic unit adapts the parameters of the transmission such as bandwidth, data format or frequency of a transmission.
- an increased bandwidth, an extended file content, an adapted data format or an increased sampling rate of measured values for communicating with the server, with auxiliary units, with other vehicles or with an infrastructure can mean a gain in security.
- a situation-adapted reduction of the bandwidth of the vehicle-to-server or vehicle-to-auxiliary unit communication can provide an increased bandwidth to other applications. It can thus be avoided that always the same unadjusted base set of data is transmitted to the server or the auxiliary units. This reduces the amount of data to be sent and saves storage space.
- the technical parameters of the communication of the vehicle are adapted to the external environment of the vehicle.
- the vehicle of the emergency call device no longer needs to do so.
- a vehicle In order to properly assess the information landscape and external environment, a vehicle must, in addition to the information of a message, also take note of its reception time, repetition rate, reception strength and geographical position of the transmitter. From this data, it can then calculate whether it has to send out this message or whether it makes more sense to remain silent. The establishment of a permanent IP connection is not required, but still advantageous.
- the type of emergency call data is selected from the group consisting of data format, content of the data and format of the data.
- the parameters of the technical transmission are selected from the group consisting of data rate, frequency of updating the data and bandwidth of the established connection.
- bandwidth and data rate By adapting the bandwidth and data rate to the current situation in which the vehicle is located, more bandwidth and storage capacity can be made available for other communication tasks. It may, for example, the update of the GPS coordinates of the vehicle in their frequency to the situation in which the vehicle is adjusted. In this case, the situation can be detected by a situation analysis on the basis of the data from environmental sensors or, for example, digital data of a digital map by the emergency call device.
- the additional information is selected from the group consisting of information from a digital map, information of a situation analysis by means of sensors, meteorological information, danger information from a user of the vehicle, information from other road users and information of a traffic infrastructure.
- the emergency call device can determine the potential danger or potential for special situations (use cases) and adapt and select the type of data such as format and content for an emergency call or other communications. For example, more data can be sent in front of or behind a curve than on a straight line. Furthermore, for example, at intersections that are part of a traffic infrastructure, information about the gas pedal and the brake pedal of a vehicle can be sent to the surrounding vehicles. This can make a statement about the behavior and the actions of a driver. Depending on the situation, the data will be adjusted. Another possibility is to perform, for example, a situation analysis based on the data from environment sensors or sensors of a detection unit and to adapt the data sent and the data rate to the determined situation.
- the data rate of the IP connection or the data rate of the communication connection can be linked to the severity of the defect or the danger of the situation or current data, for example Smoke development sensors are adjusted.
- an increased security can be achieved by means of the emergency call device.
- the communication between the sensors, the control unit and transmitter or receiver in the vehicle is wired or wireless, eg via short-range communication such as Bluetooth.
- each emergency call device can also be a permanently installed device.
- the emergency call device may be a fixed emergency call column on a road.
- an emergency call system for vehicles for network-based transmission of an emergency call is specified.
- the emergency call system has an emergency call device according to one of the preceding embodiments of the invention and a server.
- the server is designed such that the emergency call is forwarded to all server-side registered auxiliary units.
- an emergency call device in a vehicle is indicated.
- a vehicle with an emergency call device according to one of the preceding exemplary embodiments is specified.
- a method for network-based transmission of an emergency call of an emergency call device in a vehicle to auxiliary units comprises the following steps: establishing a first connection between the vehicle and the server, sending emergency call data by the emergency call device to a server via the first connection, distributing the emergency call data by the server to the auxiliary units via a second connection, establishing a Communication link between the vehicle and an auxiliary unit accepting the emergency call via the server.
- the first connection is a permanent IP connection and the communication connection uses the existing IP connection.
- the communication link has a first and a second section.
- the first section is between the emergency call device and the server, and the second section is between the server and the auxiliary unit accepting the emergency call.
- the establishment of a voice over IP connection takes place at least in the first section of the communication connection.
- the second section of the communication connection between the server and the auxiliary unit both by means of IP connection or GSM connection as well as by means of any other possible physical data transmission connection.
- the still existing IP connection is used between the vehicle and the server in order to be able to accelerate the establishment of a voice connection such as a Voice over IP connection in the existing IP connection.
- the method further comprises the steps of: adjusting the type of emergency call data and the parameters of the technical transmission of the emergency call data to additional information, wherein the additional information corresponds to the external environment of the vehicle.
- the external environment of the vehicle consists not only of physical environmental conditions and meteorological conditions, but also of the information landscape formed by other vehicles or transmitting infrastructures.
- the physical environmental conditions can be done, for example, by sensors of a detection unit of the emergency call device.
- the amount of data and its content is adapted to the particular situation of the vehicle. For example, it can be determined via digital data by the emergency call device, which danger potential exists due to the route dynamics. But other data of the digital map can be used.
- the type of emergency call data is selected from the group consisting of data format, content of the data and format of the data.
- the technical transmission parameters are selected from the group consisting of data rate, frequency of update of the data, and bandwidth of the established connection.
- the method further comprises the following steps: providing information about the auxiliary units in the form of an emergency call database to the server by a certification authority and allowing a registration of voluntary auxiliary units in the database by a certification authority.
- voluntary support units can register with the certification body and have them registered in the emergency database. These new, voluntary aid units then receive the information about an accident as well as the previously registered auxiliary units and can, under certain circumstances, come to the accident site faster and help. This can be done faster help. In order to prevent misuse of this information, the certification body must check the applicant and check for any necessary criteria. Only then is it possible to register in the emergency database with a correspondingly updated transmission to the server.
- the volunteer support units may be relief workers in factories, doctors, military or retired military personnel.
- voluntary auxiliary units by local workshops or private car experts or employees of motor vehicle associations are.
- the certified registration of voluntary auxiliary units may be used for the categorized supply of information services.
- sports facilities for travelers can be provided by sports clubs, which are auxiliary units.
- directions to local attractions for example, can be offered by voluntary additional services. It can be ensured by the certification authority that the entry in the server is not abused.
- a computer-readable medium on which a program element is stored is indicated, which, when stored on a computer Processor is instructing the processor to perform the above steps.
- the computer program element may be part of a software that is stored on a processor of the emergency call device.
- the computer program element can be used in a control unit or a computer unit which, in combination with the emergency call device, initiates and regulates the automated emergency call.
- this embodiment of the invention comprises a computer program element, which already uses the invention from the beginning, as well as a program element, which causes an existing program for use of the invention by an update.
- media conversion generally refers to the transfer, conversion or conversion of a file from one file format to another. This applies to the transfer of data between different media and file systems as well as for the transfer of data from one storage medium to another.
- the control unit can access the detection unit and let the detection unit communicate the current vehicle position.
- the detection unit for example, a GPS receiver.
- media conversion refers to the conversion of data between visual, auditory and textual formats, as well as combination formats thereof.
- the media-converted data can be transmitted, for example, directly to the receiver selected by the control unit.
- address information can be made clear to the user of a digital map.
- Fig. 1 shows a schematic representation of an emergency call system according to an embodiment of the invention.
- FIG. 2 shows a schematic representation of a communication between vehicles and an infrastructure according to an embodiment of the invention.
- Fig. 3 shows an emergency call device with a detection system according to an embodiment of the invention.
- FIG. 4 shows a flow chart of a method according to an embodiment of the invention.
- the emergency call device for a vehicle for network-based transmission of an emergency call to auxiliary units 104 is executed. The transmission takes place directly so without forwarding the emergency call by a rescue center with persons.
- the emergency call device comprises a network interface 102 and a transmission unit 103.
- a connection 107 can be established to the server.
- the connection 107 is an IP connection that is maintained permanently between the vehicle and the server during an emergency call.
- the vehicle transmits the necessary data such as position, accident severity and, for example, the time of the accident via the IP connection.
- the message about the emergency call to all auxiliary units 104 is sent by means of respective connections 1 14 between the server and the auxiliary unit and also transmits the relevant information.
- a communication link 108 is established between the emergency call accepting unit 105 and the vehicle 100 via the server.
- the connection 14 between the server and the auxiliary units can be, for example, an IP connection or also a GSM connection or also any other physical connection for data transmission.
- the first part 109 of the communication connection 108 can use the existing IP connection and save setup times.
- the first part 109 may be implemented as a Voice over IP connection between the server and the emergency call device 101. Since routing no longer has to be performed by the server, the setup time of the voice connection is unnecessary.
- an emergency database 1 1 1 in the server in which the information about the auxiliary units 104 are stored.
- a certification authority 1 12 is shown, through which voluntary additional auxiliary units can be entered into the emergency database after a qualifying examination by the certification authority.
- These additional auxiliary units can indicate under what circumstances they want to be notified in the event of an emergency call.
- Crucial parameters may be, for example, time of day, distance to the accident, type of road on which the accident took place, or severity of the accident. Due to the direct connection to the auxiliary units, the selection of that auxiliary unit which accepts the emergency call can be made independently by the auxiliary unit. An immediate and self-sufficient emergency call can thus take place. In addition to shorter connection times, lower costs and a lower susceptibility to errors can be realized.
- FIG. 2 shows a vehicle-to-vehicle communication 206 and a vehicle-to-infrastructure communication 202 according to one embodiment of the invention.
- vehicles 100 are shown, as well as an infrastructure 201, which can also be designed, for example, as a server, as shown in FIG. 1 by reference numeral 106.
- 201 can also be a transport infrastructure.
- communication units 203 are shown in the vehicles, which may be embodied, for example, as an emergency call device as shown in FIG. 1 with 101.
- the communication units are configured to communicate data between a first and a second vehicle or between a vehicle and the infrastructure.
- each communication unit can have a transmitting unit, a memory unit and a computing unit.
- the memory unit can be designed to supply additional information. Furthermore, the arithmetic unit for adapting the type of data and for adapting technical parameters of the transmission the data is executed on the basis of the additional information, the additional information corresponding to the external environment of the first vehicle.
- the communication 202 between the vehicle and the infrastructure may be implemented as an IP connection 107 as shown in FIG. 1.
- the format of the data to be transmitted via the communication 206 and 202 as well as the data rate can be adapted to the respective situation of the vehicle. For example, it can be determined on the basis of a digital map, which danger potential exists for special situations. Thereupon, the bandwidth of the communication link 202 and 206 may be reduced or increased by the communication units 203. But also on the basis of sensor values of a detection unit, which is located in the vehicle, the data traffic can be adjusted. The available bandwidth can be used for other communication tasks of the vehicle.
- a system 300 with an emergency call device 103 and a detection unit 316 shows a system 300 with an emergency call device 103 and a detection unit 316.
- values of various sensors can be used for a situation analysis.
- a speedometer 301, a spring travel sensor 302, an ESP sensor 303, an optical detector 304, a beam sensor 305, a position determination unit 306, a navigation unit 307, a direction sensor 308, a path sensor 309, or a steering wheel rotation angle sensor 310 may be used.
- a control unit 317 is shown, which may be designed as a CPU.
- This control unit is able to regulate and control the adaptation of the data traffic of the emergency call device 103 or the transmission unit (see page 16 above) on the basis of the measured values.
- Measured values can be stored in a memory 318.
- a monitor is indicated at 319, on which, for example, current values of the sensors can be displayed.
- an output unit 320 and an input unit 321 are shown as a user interface.
- a driver assistance system 322 may be used in the system 300.
- An encryption device 323 is able to increase the security of communication with other vehicles or infrastructure facilities.
- the IP connection which can be maintained permanently, can be established to the server. 4 shows a flowchart according to an exemplary embodiment of the invention.
- step S1 a first connection is established between the vehicle and a server.
- step S2 emergency call data is sent by the emergency call device to a server via the first connection.
- step S3 emergency call data is distributed by a server to the auxiliary units via a second connection, wherein establishment of a communication connection between the vehicle and an emergency unit accepting the emergency call is made via the server through step S4.
- a voice over IP connection is established at least in the first section of the communication connection.
- step S6 the type of emergency call data and / or the parameters of the technical transmission of the emergency call data are adapted to additional information.
- step S7 information about the auxiliary units in the form of an emergency call database is provided to the server by a certification authority.
- Method step S8 describes allowing a registration of voluntary auxiliary units in the database by a certification authority.
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- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Life Sciences & Earth Sciences (AREA)
- Atmospheric Sciences (AREA)
- Alarm Systems (AREA)
- Telephonic Communication Services (AREA)
- Mobile Radio Communication Systems (AREA)
- Traffic Control Systems (AREA)
- Refinement Of Pig-Iron, Manufacture Of Cast Iron, And Steel Manufacture Other Than In Revolving Furnaces (AREA)
Description
Claims
Applications Claiming Priority (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102007040972 | 2007-08-29 | ||
| PCT/EP2008/061214 WO2009027427A1 (de) | 2007-08-29 | 2008-08-27 | Notrufeinrichtung für ein fahrzeug |
| DE102008039831A DE102008039831A1 (de) | 2007-08-29 | 2008-08-27 | Notrufeinrichtung für ein Fahrzeug |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP2186078A1 true EP2186078A1 (de) | 2010-05-19 |
| EP2186078B1 EP2186078B1 (de) | 2011-05-04 |
Family
ID=40299281
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP08787510A Active EP2186078B1 (de) | 2007-08-29 | 2008-08-27 | Notrufeinrichtung für ein fahrzeug |
Country Status (6)
| Country | Link |
|---|---|
| US (1) | US8331338B2 (de) |
| EP (1) | EP2186078B1 (de) |
| AT (1) | ATE508448T1 (de) |
| DE (3) | DE102008035992A1 (de) |
| ES (1) | ES2365292T3 (de) |
| WO (1) | WO2009027427A1 (de) |
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| GB2486176A (en) * | 2010-12-02 | 2012-06-13 | Sungard Public Sector Ltd | An IP packet based communication system which interfaces with external radio and telephony communication networks, suitable for use by the emergency services. |
| DE102010061380A1 (de) | 2010-12-21 | 2012-06-21 | Dr. Ing. H.C. F. Porsche Aktiengesellschaft | Assistenzvorrichtung |
| US9032493B2 (en) * | 2011-03-31 | 2015-05-12 | Intel Corporation | Connecting mobile devices, internet-connected vehicles, and cloud services |
| US9268545B2 (en) | 2011-03-31 | 2016-02-23 | Intel Corporation | Connecting mobile devices, internet-connected hosts, and cloud services |
| US8849237B2 (en) | 2011-05-11 | 2014-09-30 | Qualcomm Incorporated | Priority registration for in-vehicle emergency call service |
| US8989697B2 (en) | 2011-05-11 | 2015-03-24 | Qualcomm Incorporated | Priority registration for in-vehicle emergency call service |
| DE102011085028A1 (de) | 2011-10-21 | 2013-04-25 | Robert Bosch Gmbh | Verfahren zur Erweiterung des Aufmerksamkeitsbereichs |
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| DE102012108863A1 (de) | 2012-09-20 | 2014-05-28 | Continental Teves Ag & Co. Ohg | Verfahren zur Erkennung eines Ampelzustands mittels einer Kamera |
| WO2014049987A1 (ja) | 2012-09-28 | 2014-04-03 | パナソニック株式会社 | 通知装置およびそれを利用した車両 |
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| DE102013225139B4 (de) * | 2013-12-06 | 2020-12-10 | Bayerische Motoren Werke Aktiengesellschaft | Verfahren, Vorrichtung, Computerprogramm und Computerprogrammprodukt zur Alarmverteilung bei einem Alarm einer Alarmanlage eines Fahrzeuges |
| DE102014003781B4 (de) * | 2014-03-15 | 2016-07-21 | Audi Ag | Fahrerassistenzsystem für ein Kraftfahrzeug und zugehöriges Betriebsverfahren |
| TWI534765B (zh) * | 2014-09-26 | 2016-05-21 | 富智康(香港)有限公司 | 交通緩解系統及方法 |
| DE102014226886A1 (de) * | 2014-12-22 | 2016-06-23 | Continental Automotive Gmbh | Verfahren und Vorrichtung zur Steuerung des Verkehrsflusses |
| DE102015202451B4 (de) | 2015-02-11 | 2024-10-24 | Volkswagen Aktiengesellschaft | Vorrichtung und Verfahren zur Beschleunigung eines Fahrzeugs beim Start an einer Lichtzeichenanlage |
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2008
- 2008-08-01 DE DE102008035992A patent/DE102008035992A1/de active Pending
- 2008-08-27 DE DE102008039831A patent/DE102008039831A1/de not_active Withdrawn
- 2008-08-27 EP EP08787510A patent/EP2186078B1/de active Active
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- 2008-08-27 AT AT08787510T patent/ATE508448T1/de active
- 2008-08-27 DE DE502008003444T patent/DE502008003444D1/de active Active
- 2008-08-27 WO PCT/EP2008/061214 patent/WO2009027427A1/de not_active Ceased
- 2008-08-27 ES ES08787510T patent/ES2365292T3/es active Active
Non-Patent Citations (1)
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|---|
| See references of WO2009027427A1 * |
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| ES2365292T3 (es) | 2011-09-28 |
| DE502008003444D1 (de) | 2011-06-16 |
| EP2186078B1 (de) | 2011-05-04 |
| DE102008039831A1 (de) | 2009-03-05 |
| ATE508448T1 (de) | 2011-05-15 |
| US20100284382A1 (en) | 2010-11-11 |
| DE102008035992A1 (de) | 2009-03-05 |
| US8331338B2 (en) | 2012-12-11 |
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