EP2596486B1 - Method for improving the reliability of speed limit information for on-board systems - Google Patents
Method for improving the reliability of speed limit information for on-board systems Download PDFInfo
- Publication number
- EP2596486B1 EP2596486B1 EP11752256.5A EP11752256A EP2596486B1 EP 2596486 B1 EP2596486 B1 EP 2596486B1 EP 11752256 A EP11752256 A EP 11752256A EP 2596486 B1 EP2596486 B1 EP 2596486B1
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- speed
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- speed limit
- response
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- 238000000034 method Methods 0.000 title claims description 21
- 238000004891 communication Methods 0.000 claims description 9
- 230000000007 visual effect Effects 0.000 claims description 2
- 238000003860 storage Methods 0.000 claims 2
- 238000012790 confirmation Methods 0.000 claims 1
- 238000011065 in-situ storage Methods 0.000 claims 1
- 238000010586 diagram Methods 0.000 description 3
- 238000012937 correction Methods 0.000 description 2
- 230000035755 proliferation Effects 0.000 description 2
- 238000013459 approach Methods 0.000 description 1
- 239000003086 colorant Substances 0.000 description 1
- 238000013507 mapping Methods 0.000 description 1
- 238000012545 processing Methods 0.000 description 1
- 230000005236 sound signal Effects 0.000 description 1
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Classifications
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- 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
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- 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
- G08G1/052—Detecting movement of traffic to be counted or controlled with provision for determining speed or overspeed
-
- 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
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- 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
- G08G1/096741—Systems involving transmission of highway information, e.g. weather, speed limits where a selection of the information might take place where the source of the transmitted information selects which information to transmit to each vehicle
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- 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
- G08G1/096775—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 central station
Definitions
- the present invention relates to a method and a device for improving the reliability of speed limit indications that are communicated to motorists, including the indications that are provided by the various systems on board vehicles.
- the motorist is assisted by various driving assistance devices that currently equip many vehicles and that indicate to him permanently and in real time the value of the maximum authorized speed of the section of road on which he is driving. circulates.
- Such devices in a known manner, combine, for the most part, means of locating the vehicle, in particular by a satellite geolocation system, or GPS, with the limiting speeds associated with this location which are contained in data banks, and then inform the driver by an appropriate display.
- Some of these systems are able, at the request of the driver, to signal to the latter any exceeding of the speed limit by a signal, including a sound signal.
- the present invention proposes to remedy this drawback by proposing a method making it possible to keep up to date, almost in real time, the databases containing these limit speeds of a road network with an excellent reliability, and this without it being necessary. necessary to use service vehicles for field surveys.
- Said threshold may consist of a given percentage of the value of the recorded speed limit.
- the system according to the invention essentially uses a remote server 1 and motor vehicles which are equipped with an onboard interface 3 comprising geolocation means, in particular of GPS type, and means able to communicate these with the remote server, in particular by a network of GPRS or 3G type.
- an onboard interface 3 comprising geolocation means, in particular of GPS type, and means able to communicate these with the remote server, in particular by a network of GPRS or 3G type.
- the different axes of the road network are divided into sections which each represent an interval in which the value of the limit speed is the same.
- Each of these sections is listed by a unique number. They are themselves divided into a series of segments.
- a road section tr which begins at a point A where the speed goes from a value of 90 Km / h to a value of 70 Km / h and which ends in a point B where the speed goes from 70 km / h to 90 Km / h in the case of a vehicle traveling from A to B.
- This section tr on which the speed is limited to 70 Km / h is broken down into ten segments S 1 , S 2 ..., S 10 . These segments integrate the geometry of the section, so that the position points that are given by the geolocation system, in particular of the GPS type, can be positioned precisely on the nearest segment S n .
- the remote server 1 comprises several databases, namely in particular a "cartographic base” 4 which contains the road network map and which, in combination with the positioning coordinates provided by the geolocation means, makes it possible to locate on a map the vehicles equipped with the system, a "base of limit speeds "5 which contains section by section the set of speed limits V LE of the road network, a" speed base “6 intended to receive the values of the speeds V recorded during the process, and a" base of controls "7 .
- a “cartographic base” 4 which contains the road network map and which, in combination with the positioning coordinates provided by the geolocation means, makes it possible to locate on a map the vehicles equipped with the system, a "base of limit speeds "5 which contains section by section the set of speed limits V LE of the road network, a" speed base “6 intended to receive the values of the speeds V recorded during the process, and a" base of controls “7 .
- these databases are managed in a known manner by a processor 9 to which are also connected remote communication means 11 for the communication of the server 1 with vehicles equipped with a specific interface 3.
- the latter comprises remote communication means 13 with the server, in particular of the GSM type, as well as geolocation means 15, in particular of the GPS type. It comprises means for displaying visual messages by means of a screen 17 or sound messages by a loudspeaker 19. It also comprises means for sending messages to the server 1, in particular consisting of a simplified keyboard 21, the assembly being controlled by a microprocessor 23.
- the geolocation system 15 which is on board the vehicle periodically sends to the remote server 1, via its communication means 13, its speed and its position coordinates, and the calculation means of the server 1 are suitable, by comparison with the data stored in the "mapping database" 4, to determine on which segment S n of which section tr the vehicle is the closest. These coordinates of the section as well as the value of the speed V of the vehicle are stored in the "speed base" 6.
- the server 1, from the "speed limit base” 5 is able to establish what is the speed limit recorded V LE for the tr section on which the vehicle is located and can thus retransmit to it, by its remote communication means 11, the speed limit registered V LE that must observe the vehicle.
- the method for controlling a database is in fact carried out in three main steps, namely a first step of acquiring the speed information during which the server 1 receives the speed information from the vehicles and classifies them in the "speed base" 6, a second step during which the server 1 detects, section by section, the possibility of errors in the speed limits recorded V LE in the "speed limit base” 5 and a third step during from which it manages a real speed control on the sections where it detected a possibility of error.
- the on-board system of each vehicle in circulation periodically sends the server 1 a frame of speed information, namely the date and the time as well as the positioning in latitude and longitude and the speed V of the vehicle.
- the server 1 Upon receipt by the server 1, as shown on the flow chart of the figure 4 if the speed V of the vehicle is greater than a given minimum value, for example 40 Km / h, it takes into account the elements of this information frame and the geolocation parameters thereof provide it, by the consultation of the "map table" 4, the reference of the track on which the vehicle is located (for example A6), the section thereof (for example: tr section), the segment (for example: segment S 5 ). Then the management system of the server 1 stores this information as well as the speed of the vehicle (for example: 128 Km / h), the speed limit on this section (for example: 130 Km / h), and the date (day and time). ) in the "speed base" 6.
- a given minimum value for example 40 Km / h
- the server management system will implement operations that are intended to detect the possibility of errors relating to the value of the stored limit velocities V LE .
- the system operates on each of the tr sections of the "speed base" 6 which for a given period, for example a day, has been concerned.
- the system aims to evaluate the average maximum velocity V MM per section from the vehicle speeds V stored in the "base velocities" 6.
- the system first makes a first selection based on the recorded speed limits V LE of each section and invalidates the speeds V lower by more than 30% to the recorded speed limit V LE for this section. Then, it calculates the average maximum speed V MM by calculating the mode, or the maximum speed most commonly observed, for each section and for the given period.
- the system checks whether, on the tr section concerned, it has enough measures to make them statistically valid. In other words, it checks whether, on this section, enough vehicles have circulated during said given period of time T and have had their parameters recorded in the "speed base" 6.
- the system calculates the difference ⁇ V existing between the value of the recorded speed limit V LE for this section in the "speed limit base" 5 and the average maximum speed V MM of the vehicles having circulated during the period given time T on this section tr , and this after having eliminated from the calculation speeds too low, that is to say, being below a minimum value determined for this section. For example, for a stretch whose speed limit recorded V LE is 130 Km / h will eliminate speeds below 100 km / h.
- the system If the speed difference ⁇ V is greater than or equal to a determined threshold, the system generates a request called "real control request" for this section, and this request is stored in the "control database” 7 where it will remain until the actual control, which is the third step of the process, is performed.
- the server management system 1 will verify, for the sections for which a real control request has been recorded in the "control database" 7, whether proposals for new limit speed values V LP correspond to the values indicated V L0 by the signs.
- the server management system 1 is able to know if a vehicle is approaching a determined tr section.
- the server sends to this vehicle, via its remote communication means 11 and those 13 whose vehicle is equipped, an interrogation message.
- This message may be an audio type message and / or a message appearing on the screen 17 of the interface 3 of the vehicle.
- this screen 17 can group on a concentrated surface a certain amount of information which experience has shown to be fundamental to the safety of the driver. In order to make them even more explicit, some of them can be formulated in different colors, in particular based on green for information that does not require the driver to pay particular attention or, on the contrary, based on red for information. that the driver must imperatively and immediately take into account.
- FIG. 6 a communication interface 3 embedded in a vehicle which groups together in the same subset the screen 17 and the keyboard 21 having three buttons 21a, 21b, 21c, and which is available to the driver to receive messages from the server 1 and to emit others in the direction of it, whether or not these last messages are sent in response to server queries.
- the system indicates in zone z1 of the screen the recorded speed limit V LE to be observed on the road section tr where the vehicle is located, and in zone z2 located under zone z1 the reference of the road to which this section belongs. To the right of this information, in zone z3, we find the actual instantaneous speed V of the vehicle.
- the button 21a allows the user to signal to the remote server the presence of a disturbance in the direction opposite to its own direction of movement
- the button 21c allows the user to signal the presence of a disturbance in its own direction of movement
- the button 21b allows the user to signal the presence of a particular disturbance.
- the function of these buttons is indicated in a zone z4 of the screen located above the buttons.
- the server 1 when the server 1 has determined that a vehicle is approaching a section tr for which a real control request has been entered in the "base of the controls" 7, it checks, preferably at first, the reliability of the driver of the vehicle concerned insofar as he has in his data bank such information and, if it turns out that the driver is reliable, he then sends the vehicle an interrogation message, for example as well as represented on the figure 7 "Speed limit correct? By displaying in a zone z5 of its screen. Moreover, the management system of the interface modifies the function assigned to the buttons 21a, 21b, 21c and their new function is displayed in the zone z4.
- a pressure on the button 21c on the right indicates that the speed limit observed V LO by the driver on the traffic signs is equal to the speed limit recorded V LE and displayed in the zone z1 of his screen, and a pressure on the left button 21a indicates that the observed speed limit V LO is different.
- the management software of the onboard interface modifies the zone z5 of its screen, as represented on the figure 8 , to display a message asking the driver to select a speed limit. It also modifies for this purpose the function assigned to the buttons 21a, 21b, 21c and the display of the zone z4 so as to enable the user to reply to the message displayed in zone z5.
- the meaning attributed to each of the three buttons is thus for the button 21a the value "-", for the button 21b the value "OK” and for the button 21c the value "+”.
- the value of the proposed limit speed V PP which is displayed in zone z1 is modified by respectively decremented and incremented values, for example by 10 Km / h.
- the user presses the button 21b "OK" to validate his choice.
- the server on receipt of the response, the server counts in a file the responses sent by the different vehicles traveling on the same section tr and checks whether a rate of agreement has been established.
- the agreement rate may be for example a minimum number of identical answers or a percentage of the answers provided by the users.
- the system updates the "speed limit database" 5 and cancels the request that was previously sent to the vehicles traveling on this section on the actual control of the value of the speed limit. . Finally, the system removes from the "control base" 7 the actual control request for the section concerned.
- the interface 3 which is on board the vehicle may be, according to the invention, consisting of a device integrated therein, in particular on its dashboard, consisting of a removable device, or consisting of a specific application made available on a "smartphone" equipped with GPS tracking means.
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- General Physics & Mathematics (AREA)
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Description
La présente invention concerne un procédé et un dispositif destinés à améliorer la fiabilité des indications de limites de vitesse qui sont communiquées aux automobilistes, notamment les indications qui sont fournies par les différents systèmes embarqués à bord des véhicules.The present invention relates to a method and a device for improving the reliability of speed limit indications that are communicated to motorists, including the indications that are provided by the various systems on board vehicles.
On sait que, globalement, la sécurité routière est en adéquation avec le respect par les automobilistes des limites de vitesses qui sont spécifiées sur les voies routières. Une difficulté cependant tient au fait que ces limitations sont parfois distribuées de façon surprenante sans que, apparemment du moins pour l'automobiliste, les limitations les plus drastiques soient associées au caractère de dangerosité de la voie empruntée.We know that, overall, road safety is in line with the respect by motorists of the speed limits that are specified on roadways. One difficulty, however, is that these limitations are sometimes distributed in a surprising way without, apparently at least for the motorist, the most drastic limitations being associated with the dangerousness of the route taken.
Par ailleurs on assiste également depuis plusieurs années à une prolifération de zones routières dans lesquelles les limitations de vitesse se succèdent et se modifient plusieurs fois sur de très courtes distances, parfois sur quelques kilomètres seulement, si bien que l'utilisateur doit, en permanence, se concentrer sur cet aspect de la conduite au détriment quelquefois de la sécurité.In addition, there has also been a proliferation of road zones for several years in which speed limits follow one another and change several times over very short distances, sometimes only a few kilometers, so that the user must, at all times, to focus on this aspect of driving, sometimes to the detriment of safety.
Par ailleurs, la prolifération des dispositifs de contrôle de vitesse tant sur les autoroutes que sur les routes secondaires, impose à l'automobiliste qu'il dispose à tout moment d'une information fiable sur la vitesse limite du tronçon de route sur laquelle il circule.Moreover, the proliferation of speed control devices on both motorways and secondary roads requires drivers to have reliable information on the speed limit of the section of road on which they drive at all times. .
L'automobiliste est aidé en cela par différents dispositifs d'aide à la conduite qui équipent à l'heure actuelle de nombreux véhicules et qui lui indiquent en permanence et en temps réel la valeur de la vitesse maximale autorisée du tronçon de route sur laquelle il circule. De tels dispositifs, de façon connue, combinent pour le plupart des moyens de localisation du véhicule, notamment par un système de géolocalisation par satellite, ou GPS, avec les vitesses limite associées à cette localisation qui sont contenues dans des banques de données, puis en informent le conducteur par un affichage approprié. Certains de ces systèmes sont en mesure, sur demande du conducteur, de signaler à celui-ci tout dépassement de la vitesse limite par un signal, notamment un signal sonore.The motorist is assisted by various driving assistance devices that currently equip many vehicles and that indicate to him permanently and in real time the value of the maximum authorized speed of the section of road on which he is driving. circulates. Such devices, in a known manner, combine, for the most part, means of locating the vehicle, in particular by a satellite geolocation system, or GPS, with the limiting speeds associated with this location which are contained in data banks, and then inform the driver by an appropriate display. Some of these systems are able, at the request of the driver, to signal to the latter any exceeding of the speed limit by a signal, including a sound signal.
L'une des difficultés majeure de ces dispositifs tient en leur faible niveau de fiabilité. En effet on sait que les bases de données dans lesquelles sont consignées les valeurs de vitesses limite des tronçons routiers sont particulièrement difficiles à maintenir à jour et l'on sait que si les grands axes routiers sont régulièrement observés, les axes secondaires quant à eux sont observés et mis à jour de manière bien moins fréquente, si bien qu'il peut s'écouler plusieurs mois entre la variation d'une vitesse limite sur le terrain et sa mise à jour dans la cartographie de la banque de données.One of the major difficulties of these devices is their low level of reliability. Indeed, it is known that the databases in which the speed limit values of the road sections are recorded are particularly difficult to keep up to date and it is known that while the main highways are regularly observed, the minor axes are observed and updated much less frequently, so that it can take several months between the variation of a speed limit in the field and its update in the map of the database.
Le document
La présente invention se propose de remédier à cet inconvénient en proposant un procédé permettant de maintenir à jour, quasiment en temps réel, les bases de données contenant ces vitesses limite d'un réseau routier avec une excellente fiabilité, et ceci sans qu'il soit nécessaire de faire appel à des véhicules de service destinés à effectuer des relevés sur le terrain.The present invention proposes to remedy this drawback by proposing a method making it possible to keep up to date, almost in real time, the databases containing these limit speeds of a road network with an excellent reliability, and this without it being necessary. necessary to use service vehicles for field surveys.
La présente invention a ainsi pour objet un procédé d'évaluation de la qualité des informations contenues dans une base de données d'un serveur distant stockant les valeurs de vitesses limite des divers tronçons constituant un réseau routier dite "base de vitesses limite", dans lequel on enregistre dans une base de donnée, dite "base des vitesses", les vitesses sur ces tronçons de véhicules équipés de moyens de géolocalisation et de communication avec ledit serveur distant, caractérisé en ce que les moyens de gestion du serveur:
- prennent en compte ladite "base des vitesses" afin de sélectionner les véhicules qui, pendant une période de temps déterminée, ont parcouru au moins un tronçon déterminé,
- déterminent la vitesse maximale moyenne de circulation de ces véhicules sur ce tronçon pendant ladite période de temps,
- comparent cette vitesse maximale moyenne à la valeur limite enregistrée dans ladite "base des vitesses limite",
- évaluent la valeur de la différence entre ces deux valeurs et, si cette différence dépasse un seuil donné, engagent une procédure de contrôle sur le tronçon concerné.
- take into account said "velocity base" in order to select the vehicles which, during a determined period of time, have traveled at least a determined section,
- determine the average maximum speed of movement of such vehicles on that section during the said period of time,
- compare this average maximum speed with the limit value recorded in said "speed limit database",
- evaluate the value of the difference between these two values and, if this difference exceeds a given threshold, initiate a control procedure on the section concerned.
Ledit seuil pourra être constitué d'un pourcentage donné de la valeur de la vitesse limite enregistrée.Said threshold may consist of a given percentage of the value of the recorded speed limit.
On décrira ci-après, à titre d'exemple non limitatif, une forme d'exécution de la présente invention, en référence au dessin annexé sur lequel :
- la
figure 1 est une vue schématique d'un dispositif suivant l'invention comprenant un serveur distant et une interface embarquée, - la
figure 2 est une vue schématique d'un tronçon d'une voie routière et des segments qui composent ce dernier, - la
figure 3 est un logigramme montrant les moyens d'acquisition des vitesses à partir des véhicules, - la
figure 4 est un logigramme montrant le traitement par le serveur des informations de vitesse reçues des véhicules, - la
figure 5 est un logigramme illustrant le procédé permettant de détecter une possibilité d'erreur de la vitesse limite enregistrée sur un tronçon d'une voie routière, - les
figures 6 à 8 montrent un exemple d'interface embarquée à bord d'un véhicule dans trois séquences de fonctionnement du procédé suivant l'invention, - la
figure 9 est un logigramme illustrant le procédé conduisant à la correction de la base de donnée des vitesses limite.
- the
figure 1 is a schematic view of a device according to the invention comprising a remote server and an onboard interface, - the
figure 2 is a schematic view of a section of a highway and the segments that make up the highway, - the
figure 3 is a logic diagram showing the means of acquiring speeds from vehicles, - the
figure 4 is a flowchart showing the processing by the server of the speed information received from the vehicles, - the
figure 5 is a logic diagram illustrating the method for detecting a possibility of error of the speed limit recorded on a section of a roadway, - the
Figures 6 to 8 show an example of an on-board interface on a vehicle in three operating sequences of the method according to the invention, - the
figure 9 is a logic diagram illustrating the process leading to the correction of the database of limit speeds.
Ainsi que représenté sur la
Plus précisément et pour ce faire, les différents axes du réseau routier sont divisés en tronçons qui représentent chacun un intervalle dans lequel la valeur de la vitesse limite est la même. Chacun de ces tronçons est répertorié par un numéro unique. Ils sont par ailleurs eux-mêmes divisés en une série de segments.More precisely and for this purpose, the different axes of the road network are divided into sections which each represent an interval in which the value of the limit speed is the same. Each of these sections is listed by a unique number. They are themselves divided into a series of segments.
A titre d'exemple on a représenté sur la
Le serveur distant 1 comporte plusieurs bases de données, à savoir notamment une « base cartographie » 4 qui contient la cartographie du réseau routier et qui permet, en combinaison avec les coordonnées de positionnement fournies par les moyens de géolocalisation, de situer sur une carte les véhicules équipés du système, une « base des vitesses limite» 5 qui contient tronçon par tronçon l'ensemble des vitesses limite VLE du réseau routier, une « base des vitesses » 6 destinée à recevoir les valeurs des vitesses V relevées au cours du processus, et une « base des contrôles » 7.The
Ainsi que représenté sur la
Cette dernière comprend des moyens de communication à distance 13 avec le serveur, notamment de type GSM, ainsi que des moyens de géolocalisation 15 notamment de type GPS. Elle comprend des moyens d'affichage de messages visuels au moyen d'un écran 17 ou de messages sonores par un haut-parleur 19. Elle comprend également des moyens permettant d'envoyer des messages au serveur 1, notamment constitués d'un clavier simplifié 21, l'ensemble étant piloté par un microprocesseur 23.The latter comprises remote communication means 13 with the server, in particular of the GSM type, as well as geolocation means 15, in particular of the GPS type. It comprises means for displaying visual messages by means of a
Dans ces conditions le système de géolocalisation 15 qui se trouve à bord du véhicule envoie périodiquement au serveur distant 1, via ses moyens de communication 13, sa vitesse et ses coordonnées de position, et les moyens de calcul du serveur 1 sont aptes, par comparaison avec les données stockées dans la « base cartographie» 4, à déterminer sur quel segment Sn de quel tronçon tr le véhicule est le plus proche. Ces coordonnées du tronçon ainsi que la valeur de la vitesse V du véhicule sont stockées dans la « base des vitesses » 6.Under these conditions, the
Le serveur 1, à partir de la « base des vitesses limite» 5 est en mesure d'établir quelle est la vitesse limite enregistrée VLE pour le tronçon tr sur lequel se trouve le véhicule et peut ainsi retransmettre à celui-ci, par ses moyens de communication à distance 11, la vitesse limite enregistrée VLE que doit observer le véhicule.The
Le procédé permettant de contrôler une base de données se déroule en fait en trois étapes principales, à savoir une première étape d'acquisition des informations de vitesses au cours de laquelle le serveur 1 reçoit les informations de vitesse en provenance des véhicules et les classe dans la « base des vitesses » 6, une deuxième étape au cours de laquelle le serveur 1 détecte, tronçon par tronçon, des possibilités d'erreurs des vitesses limite enregistrées VLE dans la « base des vitesses limite » 5 et une troisième étape au cours de laquelle il gère un contrôle en réel des vitesses sur les tronçons où il a détecté une possibilité d'erreur.The method for controlling a database is in fact carried out in three main steps, namely a first step of acquiring the speed information during which the
Lors de la première étape d'acquisition des informations de vitesse, ainsi que représenté sur l'ordinogramme de la
A réception par le serveur 1, ainsi que représenté sur l'ordinogramme de la
Lors de la seconde étape, le système de gestion du serveur va mettre en oeuvre des opérations qui ont pour but de détecter les possibilités d'erreurs portant sur la valeur des vitesses limite enregistrées VLE. Ainsi que représenté sur l'ordinogramme de la
Le système a comme objectif d'évaluer la vitesse maximale moyenne VMM par tronçon à partir des vitesses V des véhicules stockées dans la « base des vitesses » 6. Le système fait d'abord une première sélection en fonction des vitesses limite enregistrées VLE de chaque tronçon et invalide les vitesses V inférieures de plus de 30% à la vitesse limite enregistrée VLE pour ce tronçon. Ensuite, il calcule la vitesse maximale moyenne VMM en calculant le mode, ou la vitesse maximale la plus couramment observée, pour chaque tronçon et pour la période donnée.The system aims to evaluate the average maximum velocity V MM per section from the vehicle speeds V stored in the "base velocities" 6. The system first makes a first selection based on the recorded speed limits V LE of each section and invalidates the speeds V lower by more than 30% to the recorded speed limit V LE for this section. Then, it calculates the average maximum speed V MM by calculating the mode, or the maximum speed most commonly observed, for each section and for the given period.
Le système vérifie ensuite si, sur le tronçon tr concerné, il dispose de suffisamment de mesures pour que celles-ci soient valables statistiquement. Autrement dit il vérifie si, sur ce tronçon, suffisamment de véhicules ont circulé pendant ladite période de temps donnée T et ont eu leurs paramètres enregistrés dans la « base des vitesses » 6.The system then checks whether, on the tr section concerned, it has enough measures to make them statistically valid. In other words, it checks whether, on this section, enough vehicles have circulated during said given period of time T and have had their parameters recorded in the "speed base" 6.
Si tel est le cas, le système calcule l'écart δV existant entre la valeur de la vitesse limite enregistrée VLE pour ce tronçon dans la « base des vitesses limite » 5 et la vitesse maximale moyenne VMM des véhicules ayant circulé pendant la période de temps donné T sur ce tronçon tr, et ceci après avoir éliminé du calcul les vitesses trop faibles, c'est-à-dire se situant sous une valeur minimale déterminée pour ce tronçon. Par exemple, pour un tronçon dont la vitesse limite enregistrée VLE est 130 Km/h on éliminera les vitesses inférieures à 100 Km/h.If this is the case, the system calculates the difference δV existing between the value of the recorded speed limit V LE for this section in the "speed limit base" 5 and the average maximum speed V MM of the vehicles having circulated during the period given time T on this section tr , and this after having eliminated from the calculation speeds too low, that is to say, being below a minimum value determined for this section. For example, for a stretch whose speed limit recorded V LE is 130 Km / h will eliminate speeds below 100 km / h.
Si l'écart de vitesse δV est supérieur ou égal à un seuil déterminé, le système génère une requête dite "requête de contrôle en réel" pour ce tronçon, et cette demande est stockée dans la « base des contrôles » 7 où elle va rester jusqu'à ce que le contrôle en réel, qui constitue la troisième étape du procédé soit effectué. Suivant l'invention, le seuil de vitesse pourra notamment être constitué soit par une valeur fixe déterminée, soit par un pourcentage X de la valeur de vitesse limite déjà enregistrée VLE, ce pourcentage pourra par exemple être compris entre 10 % et 20% On vérifiera ainsi la condition :
Au cours de la troisième étape, le système de gestion du serveur 1 va vérifier, pour les tronçons pour lesquels une requête en contrôle en réel a été enregistrée dans la « base des contrôles » 7, si des propositions de nouvelles valeurs de vitesse limite VLP correspondent bien aux valeurs indiquées VL0 par les panneaux de signalisation.During the third step, the
Ainsi qu'exposé précédemment, on sait que le système de gestion du serveur 1 est en mesure de savoir si un véhicule se trouve en approche d'un tronçon tr déterminé. Ainsi, suivant l'invention, dès qu'un véhicule se rapproche d'un tronçon pour lequel une requête de contrôle en réel a été enregistrée, le serveur envoie à ce véhicule, via ses moyens de communication à distance 11 et ceux 13 dont le véhicule est équipé, un message d'interrogation.As explained above, it is known that the
Ce message peut être un message de type audio et/ou un message venant s'afficher sur l'écran 17 de l'interface 3 du véhicule.This message may be an audio type message and / or a message appearing on the
De façon intéressante, cet écran 17 pourra regrouper sur une surface concentrée un certains nombre d'informations dont on a pu constater par l'expérience qu'elles étaient fondamentales pour la sécurité du conducteur. De façon à les rendre plus explicites encore, certaines de celle-ci peuvent être formulées en différentes couleurs, notamment à base de vert pour les informations qui ne requièrent pas du conducteur une attention particulière ou, au contraire, à base de rouge pour les informations que le conducteur doit impérativement et immédiatement prendre en compte.Interestingly, this
On a représenté à titre d'exemple sur la
Ainsi, en cours de fonctionnement normal, le système indique dans la zone z1 de l'écran la vitesse limite enregistrée VLE à observer sur le tronçon routier tr où se trouve le véhicule, et dans la zone z2 située sous la zone z1 la référence de la voie routière à laquelle appartient ce tronçon. A droite de cette information, dans la zone z3, on trouve la vitesse réelle instantanée V du véhicule. Dans cette configuration normale de navigation, le bouton 21a permet à l'utilisateur de signaler au serveur distant la présence d'une perturbation dans le sens opposé à son propre sens de circulation, le bouton 21c permet à l'utilisateur de signaler la présence d'une perturbation dans son propre sens de circulation, et le bouton 21b permet à l'utilisateur de signaler la présence d'une perturbation particulière. La fonction de ces boutons est indiquée dans une zone z4 de l'écran située au-dessus des boutons.Thus, during normal operation, the system indicates in zone z1 of the screen the recorded speed limit V LE to be observed on the road section tr where the vehicle is located, and in zone z2 located under zone z1 the reference of the road to which this section belongs. To the right of this information, in zone z3, we find the actual instantaneous speed V of the vehicle. In this normal navigation configuration, the
Suivant l'invention, lorsque le serveur 1 a déterminé qu'un véhicule approchait d'un tronçon tr pour lequel une requête de contrôle en réel a été inscrite dans la "base des contrôle " 7, il vérifie, préférentiellement dans un premier temps, la fiabilité du conducteur du véhicule concerné dans la mesure où il dispose dans sa banque de données d'une telle information et, s'il s'avère que le conducteur est fiable, il adresse alors au véhicule un message d'interrogation, par exemple ainsi que représenté sur la
Ainsi, une pression sur le bouton 21c de droite indique que la vitesse limite observée VLO par le conducteur sur les panneaux de signalisation est bien égale à la vitesse limite enregistrée VLE et affichée dans la zone z1 de son écran, et une pression sur le bouton 21a de gauche indique que la vitesse limite observée VLO est différente.Thus, a pressure on the
Dans le cas où l'utilisateur agit sur le bouton de droite et confirme le fait que la vitesse limite affichée VLE est bien correcte le système embarqué envoie au serveur distant cette réponse qui la prend en compte ainsi qu'expliqué ci-après.In the case where the user acts on the right button and confirms that the speed limit displayed V LE is correct the embedded system sends the remote server this response that takes into account as explained below.
Dans le cas contraire, le logiciel de gestion de l'interface embarquée modifie alors la zone z5 de son écran, ainsi que représenté sur la
Ainsi que représenté sur l'ordinogramme de la
Le taux d'accord peut être par exemple un nombre minimal de réponses identiques ou un pourcentage des réponses fournies par les utilisateurs. Dès que le taux d'accord est atteint, le système met à jour la « base des vitesses limite » 5 et annule la demande qui avait été précédemment envoyée aux véhicules circulant sur ce tronçon sur le contrôle en réel de la valeur de la vitesse limite. Enfin le système enlève de la « base des contrôles » 7 la requête de contrôle en réel pour le tronçon concerné.The agreement rate may be for example a minimum number of identical answers or a percentage of the answers provided by the users. As soon as the agreement rate is reached, the system updates the "speed limit database" 5 and cancels the request that was previously sent to the vehicles traveling on this section on the actual control of the value of the speed limit. . Finally, the system removes from the "control base" 7 the actual control request for the section concerned.
L'interface 3 qui est à bord du véhicule peut être, suivant l'invention, constituée d'un dispositif intégré à celui-ci, notamment sur son tableau de bord, être constitué d'un dispositif amovible, ou être constitué d'une application spécifique mise à disposition sur un "smartphone" équipé de moyens de localisation GPS.The interface 3 which is on board the vehicle may be, according to the invention, consisting of a device integrated therein, in particular on its dashboard, consisting of a removable device, or consisting of a specific application made available on a "smartphone" equipped with GPS tracking means.
Claims (8)
- Method for assessing the quality of the information contained in a database (5) of a remote server (1) storing the speed limit values (VLE) for the various sections (tr) that make up a road network, called "speed limit base" (5) in which is stored in a database, called "speed base" (6), the speeds (V) on these sections (tr) of vehicles equipped with geolocation means (15) and means for communicating (13) with said remote server (1), characterized in that the management means of the server:- take account of said "speed base" (6) in order to select the vehicles which, for a determined time period (T), have travelled at least one determined section (tr)- determine the average maximum speed (VMM) of travel of these vehicles on this section (tr) during said time period (T),- compare this average maximum speed (VMM) to the limit value (VLE) stored in said "speed limit base" (5),- assess the value of the difference (δV) between these two values of average maximum speed (VMM) and of limit value (VLE) and, if this difference exceeds a given threshold, engage a control procedure on the section (tr) concerned.
- Assessment method according to Claim 1, characterized in that said threshold consists of a given percentage of the stored speed limit value (VLE).
- Assessment method according to Claim 1 or 2, characterized in that:- the management means of the remote server (1) enter into contact with the vehicles which are located approaching a section (tr) to be controlled in order to send them a visual and/or audible message,- this message indicates the value of a proposed speed limit (VLP) for said section (tr), and asks the user of the vehicle to confirm or deny this value according to the value of the real speed limit observed (VL0) in situ by the latter on the section (tr),- once the response is given by the user using manual (21) or sound response capture means of the communication means (13) of the vehicle, the latter send to the remote server (1) this response of confirmation, of denial or of non-response,the remote server (1) records the latter information and stores it in storage means, notably temporary.
- Control method according to Claim 3, characterized in that the management means of the remote server (1) store said response in temporary storage means and implement a checking phase.
- Control method according to Claim 4, characterized in that the checking phase consists in waiting for said response to be confirmed by a number or a given percentage of identical responses.
- Control method according to one of Claims 4 or 5, characterized in that the remote server (1) comprises a database containing the references of the vehicle users and reliability indices thereof, the checking phase consisting in taking into account the reliability indices assigned to only these users to confirm said response.
- Control method according to Claim 6, characterized in that the reliability indices attached to the users are contained in a database and are a function of the responses supplied by the users in the past.
- Control method according to one of Claims 5 to 7, characterized in that the checking phase is followed by the entry of said response in the "speed limit base" (5).
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
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FR1003050A FR2963149B1 (en) | 2010-07-20 | 2010-07-20 | METHOD FOR IMPROVING THE RELIABILITY OF SPEED LIMIT INDICATIONS FOR ONBOARD SYSTEMS |
PCT/FR2011/000428 WO2012017140A1 (en) | 2010-07-20 | 2011-07-20 | Method for improving the reliability of speed limit information for on-board systems |
Publications (2)
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EP2596486A1 EP2596486A1 (en) | 2013-05-29 |
EP2596486B1 true EP2596486B1 (en) | 2016-03-23 |
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EP11752256.5A Active EP2596486B1 (en) | 2010-07-20 | 2011-07-20 | Method for improving the reliability of speed limit information for on-board systems |
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US (1) | US20130317730A1 (en) |
EP (1) | EP2596486B1 (en) |
KR (1) | KR101918099B1 (en) |
CN (1) | CN103430224A (en) |
ES (1) | ES2574310T3 (en) |
FR (1) | FR2963149B1 (en) |
PL (1) | PL2596486T3 (en) |
WO (1) | WO2012017140A1 (en) |
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US8751133B2 (en) * | 2011-02-17 | 2014-06-10 | 7980302 Canada Inc. | Speed limiter system and method for a vehicle |
FR3009640B1 (en) | 2013-08-07 | 2022-11-18 | Coyote Sys | DEVICE AND METHOD FOR AUTOMATIC UPDATING OF A DATABASE OF TRAFFIC SPEED LIMIT |
CN104050817B (en) * | 2014-05-23 | 2017-05-10 | 北京中交兴路信息科技有限公司 | Speed limiting information base generation and speed limiting information detection method and system |
US9479903B2 (en) * | 2015-05-23 | 2016-10-25 | Suliman ALBASHEIR | Methods and systems for monitoring moving UE/vehicle speed in wireless networks |
US10332392B2 (en) * | 2015-07-16 | 2019-06-25 | Streamax Technology Co., Ltd. | Method and system for segmentally limiting speed of vehicle |
DE102015220821A1 (en) * | 2015-10-26 | 2017-04-27 | Robert Bosch Gmbh | Controlling a motor vehicle |
DE102015226728B4 (en) * | 2015-12-23 | 2019-07-18 | Continental Automotive Gmbh | A method for assisting a driver of a motor vehicle when driving the motor vehicle |
WO2017219228A1 (en) * | 2016-06-21 | 2017-12-28 | 马玉琴 | Vehicle speed control method and device |
CN108346299B (en) * | 2018-01-09 | 2020-07-10 | 北京荣之联科技股份有限公司 | Vehicle speed evaluation method and device |
EP3712870B1 (en) * | 2019-03-21 | 2022-11-02 | Zenuity AB | Method and arrangement for validating speed limit information for a road vehicle |
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US6487558B1 (en) * | 1997-06-27 | 2002-11-26 | Sun Microsystems, Inc. | Method for generating database server configuration documentation |
JP3362648B2 (en) | 1997-11-21 | 2003-01-07 | トヨタ自動車株式会社 | Road data update system and on-vehicle road regulation detection device suitable for the system |
JP2003162217A (en) * | 2001-11-26 | 2003-06-06 | Nec Corp | Map information display system, portable radio terminal and server |
US6693555B1 (en) * | 2001-12-11 | 2004-02-17 | Koninklijke Philips Electronics N.V. | Automatic setting of variable speed limit |
WO2005109368A1 (en) * | 2004-04-06 | 2005-11-17 | Fernandez Jorge L | Speed monitoring device for motor vehicles |
CN2754289Y (en) * | 2004-10-08 | 2006-01-25 | 哈尔滨工程大学 | Vehicle monitoring device based on GPRS technique |
US7739036B2 (en) * | 2005-08-26 | 2010-06-15 | Gm Global Technology Operations, Inc. | Speed limit advisor |
FR2896462B1 (en) * | 2006-01-23 | 2009-08-07 | Coyote System Sarl | SYSTEM AND METHOD FOR DRIVING A VEHICLE |
US7859392B2 (en) * | 2006-05-22 | 2010-12-28 | Iwi, Inc. | System and method for monitoring and updating speed-by-street data |
SE0701143L (en) * | 2007-05-11 | 2008-11-12 | Oracle Corp | traffic control |
RU2501087C2 (en) * | 2007-10-26 | 2013-12-10 | Томтом Интернэшнл Б.В. | Method of processing positioning data |
JP5056446B2 (en) | 2008-02-05 | 2012-10-24 | 株式会社デンソー | Vehicle travel information recording device and program used for vehicle travel information recording device |
DE102009045771A1 (en) * | 2008-10-21 | 2010-04-22 | Continental Teves Ag & Co. Ohg | Fixed speed limits in digital maps |
GB2472969B (en) * | 2009-05-20 | 2011-06-29 | Modulprodukter As | Driving assistance device and vehicle system |
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ES2574310T3 (en) | 2016-06-16 |
EP2596486A1 (en) | 2013-05-29 |
FR2963149B1 (en) | 2014-03-07 |
KR20130043200A (en) | 2013-04-29 |
FR2963149A1 (en) | 2012-01-27 |
CN103430224A (en) | 2013-12-04 |
KR101918099B1 (en) | 2018-11-13 |
WO2012017140A1 (en) | 2012-02-09 |
US20130317730A1 (en) | 2013-11-28 |
PL2596486T3 (en) | 2016-09-30 |
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