CENTRALIZED TOLL TRACKING, PAYMENT AND MONITORING SYSTEM USING GEO LOCATION ENABLED DEVICES
Field of invention
This invention describes the system of centralized toll identification, payment and monitoring, which uses geo-location enabled devices to do so. The invention used the series of readings distributed over the length of the toll road by Location Based Services (LBS) provided by geo- enabled devices such as phone, pager or wireless connected laptops and others along with reverse geo-location database to accurately identify if the vehicle is travelling on toll road. This approach of looking holistically at the travel on the toll road with multiple readings is very different from the current systems designs that are based on just taking readings at starting of the toll road and sometimes reading at exit toll for a long, turnpike toll road. Using the present invention new toll rate programs can also be designed where charge can dependent on duration of time vehicle spends on the toll road. Combination of series of reading of the vehicle is monitored and statistically calculated using the system when travelling on the toll road, which overcomes the inherent inaccuracy of system based on LBS reading from one location. Due to inherent inaccuracy in single geo-location reading, till now no large scale toll system has been designed entirely using LBS. Using the present system person can do the payment of toll when passing through toll road area directly from his geo-location enabled devices such as smart phone without any intervention of any attendant and simultaneously police or toll both person can also monitor the centralized toll payment done or not by the particular person using such kind of system.
There are significant advantages of this system ( 1) Vehicles don't have to slow down to pass through the toll booth thereby saving in gas, vehicle wear-tear and time (2) Reduces the cost of building expensive toll booths and their operating costs (3) Provides a mechanism to put a toll on part of road/bridge for new construction or renovation and dismantle it once the money to build the road/bridge is recovered.(4) Travellers don't have to fumble to find coins or receipt. (5) New rate plans based on time of day and duration can be developed which encourages use of toll roads more efficiently.
Background of invention
This invention tracks the vehicle traveling on the toll road by multiple reading and automatically charges customer without needing their intervention. That is very different than the current solution used where there are one - two checkpoints to identify vehicle going on a toll road. As the cost of building and operating of a toll booth is high, tendency is to do with one toll booth unless the toll is very long. This leads drivers to pay more tolls for the road they are not using. This invention relates to the problem of toll payment, when a user is passing tlirough toll road using vehicle and has to wait for collection of toll ticket manually and give the appropriate payment manually. In order to reduce the time and labor of a user and a toll collector, the present invention deals with the use of geo location enabled devices like smart phone, laptop, palmtop etc. to do the toll road payment electronically using said devices.
So far some of the inventions which try to resolve the same problem by using different means includes as per below:
JP2001243513 (A) describes the method and device for automatic payment of toll highway fare using cellular phone. The use of this device includes a cellular phone which is prepared in a vehicle and registers the information specifying a telephone set and the settlement method of toll highway fare corresponding to the telephone specification information at the toll highway fare management side, an entrance/exit controller which receives the specification information on the cellular phone and transmits this received information and the entering/leaving points of toll highways to the toll highway fare management side and a controller which is placed at the toll highway fare management side to calculate the toll highway fares of vehicles carrying cellular phones from the specification information and toll highway entering/leaving points information sent from the entrance/exit controller and to charge the toll highway fares to each settlement institution according to the registered settlement method: In such a constitution, the toll highway fare can be automatically paid by means a cellular phone and a base station antenna of the cellular phone and with no use of an IC card nor a private radio unit.
JP2007034645 (A) discloses a mobile station equipment of automated toll-payment system, wherein the mobile station equipment of an automated toll-payment system is provided with a wireless communication means for communicating with a base station installed on a road, an
automated toll-payment processing means which executes processing relating to the payment of a toll of a toll road through the wireless communication means, and at least a second application processing means as a means used in uses except the payment of a toll of a toll road. In this case, the mobile station equipment is provided with an application selection -means for determining whether the automated toll-payment processing means o the second application processing means is to be operated, and operates not to communicate with a base station ready for an application, to which prohibition is set when an operation-prohibition setting is made by the application selection means. - . : . ,
KR20040066398 (A) provides an invention of GPS mobile telephone system havirig function of settling toll road, in which a GPS (Global Positioning System) mobile telephone has a function of settling a toll road based on position information. A mobile telephone settling system receives the position information of the GPS mobile telephone. The mobile telephone settling system reads vehicle road information corresponding to the position information of the GPS mobile telephone from a vehicle road database. The mobile telephone settling system reads a corresponding vehicle number from a vehicle number database remembering a GPS mobile telephone number and a vehicle number for demanding payment to the mobile telephone number.
Though all above mentioned inventions describes the use of mobile phone or mobile station equipment like devices to do the payment of toll tax but either it requires some apparatus to be placed in the vehicle or required camera to get the license plate or entrance and/or exit controllers or similar system on the toll booth. All such type of inventions solves the problem of time consumption and labor done by the user and toll collector by using mobile based system. But all these prior art did not address the objective of reduction in cost of establishing toll booth collecting system. Also, these systems designed to take readings whe vehicle enters the toll booth compared to our solution which looks at complete holistic solution with multiple readings at different times while vehicle is travelling on the toll road - effectively taking readings at different locations. The difference in our solution versus the existing solution becomes obvious for the use case - Suppose vehicle by mistake enters into the toll road and it turns around in few
meters. In the existing solutions, the person at toll booth has to reverse the transaction manually and if the person at toll booth cannot do it - then vehicle driver has to pay the toll while with our solution, if vehicle driver would not be even charged based on the business defined that says that vehicles travelling less than x% on toll road would not be charged or say if the vehicle returned back within a small distance without crossing to other side.
The present invention deals with providing a system wherein when the user start the application from his geo-location enabled device like smart phone or laptop or such kind of devices, it will send the message to centralized server, which will take record of the time of car entree on the toll road and determine when it exit from the road and calculate the total charges of toll fees applicable depending on the rate of toll fee prevailing in that geo-location. Users can do the payment by mobile or net banking or by credit card, which can be recorded in real time by centralized server and acknowledgement of the paid receipt will be sent in real time. This invention requires no special instrument or device to be placed either on the toll road or in the car and hence will reduce the cost of instalment and maintenance of such devices and also reduce the expenditure on human resources required to monitor the toll road.
Objectives of the invention
The main objective the present invention is to provide a system for centralized payment of toll road using existing geo-location enabled devices e.g. smart phones in such a way that accurate calculation and payment of toll fees done when the car is entre on the toll road and exit thereafter.
Another objective is to provide an effective means to the police or toll collector to monitor and track the payment done by the user is appropriate or not.
Another objective is to replace the use of toll booth ticket vending machine and thereby reduce the cost required for new installation and maintenance of thousands of ticket vending machines.
Yet another objective is to provide easy transaction of the payment by the user and reduce the avoidance of collecting money (coins) from each of the toll gate point.
Further objective is to provide convenience to end user to pay for toll without searching for coins and also estimating what is the right amount of toll charge;. as different exit points on the toll road correspond to different distances and charges have to be calculated accordingly.
Yet another objective is to provide a database of the vehicles who have paid the toll which could be cross-checked against the video camera to identify the vehicles that have not paid the toll.
Further objective is to provide a system, which can be useful to pay. the toll tax even though the geo location enabled device like mobile is discharged or not working.
Summar of Invention
Thus according to one aspect of the present invention, there is provided a system for centralized payment of toll using geo-location enabled devices in such a way that accurate calculation and payment of toll fees done even when the car is entre on the toll road and exit thereafter.
According to another aspect of present invention, there is provided a method of online payment for toll road using centralized server based system.
According to further aspect of present invention, there is provided a system for police or toll booth manager to check whether payment done by user or not.
According to another aspect of present invention, there is provided a system which can able to take record of customer profile along with the details of his vehicle, which can be useful to trace the record of any suspected vehicle.
According to another aspect of present invention, there is provided a system which can use Optical Corrector Recognition (OCR) in backend to decrypt the photo of the vehicle number plate to recognize the vehicle.
According to further aspect of present invention, there is provided a system which can alternatively uses barcode to identify the vehicle, wherein customers who enrol in the program get a free barcode for each vehicle they have registered.
According to further aspect of present invention, there is provided a system through which location of the vehicle is verified by knowing the location of the toll booth Officer's phone.
Brief description of the Invention
The present invention provides a cloud based Toll tracking and payment system using geo- location enabled devices.
Working of the system:
With the above and other objects in view which will become apparent from . the following details, description some preferred forms of the invention are sho wn in the drawings in which
Fig. l represents the contextual diagram of the present invented system
Fig.2 represents the block diagram of the present invented system
Fig.3, 4, 5, 6 represent the flow diagrams of the invented system.
Also, the design can be enhanced to use Optical Corrector Recognition (OCR) in backend to decrypt the photo of the vehicle number plate. To avoid expense of image file of the number plate to be uploaded, barcode can be used where customers who enrol in the program get a free barcode for each vehicle they have registered. Also, the location of the vehicle is verified by knowing the location of the enforcement Officer's phone.
Detailed description of Operation
There are five major components as shown in Fig 1 - (a) A geo-location enabled device- 104 owned by the user driving the vehicle (b) A geo-location enabled device - 102 used by the Toll officer and (c) Cloud based Toll system - 109 to keep track of virtual Toll receipts, for issuing Toll violation tickets and for performing Toll payment transactions. (d) Cell network which includes Location Based Services (LBS) - 108. (e) License Plate Camera 105.
Fig 1 shows the contextual diagram of the operation where person - 104 drives the vehicle through a Toll road - 101 through 106 and uses their geo -location aware wireless mobile to inform the cloud Toll system - 109 about the location so it creates virtual Toll receipt. The location is provided by the GPS in the device or Wireless Towers using triangulations or Location based service available in the cloud provided by carrier network. There can be various Toll plans such as all.day/week/monfh pre-paid pass, or pay at end of every travelling or. Toll road. The different Toll plans are not limited to what is described but cahvsupport multiple plans and their combination as complex rules can be built in the rule engine.
Police or Toll enforcement-officer - 102 uses the other, application on the geo-location enabled device as shown in figure 1 to check the Vehicle License Plate# 103 to check the virtual Toll receipt in the centralize cloud. This whole design doesn't need complex system or sensors or other equipment or any other marking at the Toll locations for system to work thereby reducing the infrastructure implementation and maintenance costs.
The process is described in more detail by the flow charts in Fig 3, Fig 4, Fig 5 and Fig 6.
User downloads the App on their device and installs and configures it as one time registration process as shown in Fig 4 shown under registration chevron by providing Name, Address, vehicle Lic(s)#, Authentication information and method, payment type and other payment details. Registration is one time operation and done using user interface - 201 & 202 (Fig 3). Alternative can be provided where one time registration can be performed using web application and then mobile app is configured with the user authentication credentials. User can enter multiple vehicle Lic# at one time and also define the default vehicle. Or user can also register by calling on the phone using a live operator or using Interactive Voice Recognition (IVR) and computer telephone interactive (CTI) application or by sending SMS/GPRS message.
The profile of the User is kept on the central server with payment method, vehicle numbers and user address - 241. This prevents loss of information if phone is lost or stopped working or system installed on any other devices. The default vehicle can be specified for a particular geo- location device. This functionality enables a use-case where users can share the same Toll account in their family and each family member can have a different default license plate for
their vehicle. The basic user profile information is stored in Customer Profile - 241 while more financial sensitive information is stored in Customer Payment Profile - 261. Customer authentication information can be stored in on the device in encrypted form using security library
- 203;. -. ~ r .
As show in Fig 5 flowchart, when the user reaches on the highway and starts the centralized toll road payment application. The driver can override the defaults from the registration of the mobile application. User ca override the . default vehicle number and select toll road payment options based on the location or conditions specified by the toll booth collector company. This application takes multiple readings by adapting intelligently using the geo -location data. Adaptive Intelligent reading algorithm- is based on principle if vehicle is very near or on Toll road then take more geo-location readings. While if vehicle is very far from nearest Toll road then the system will take very few leading. When the vehicle is far from nearest the toll road, the application can get the location information using the wireless tower as it is less power consuming and accuracy is not so important The Toll process starts which user is driving the vehicle in the toll road and the application logs into cloud Toll system -106 to get the virtual Toll receipt by providing Geo-location, License Plate #. Identifying of going to Toll Road and issuing of the virtual Toll receipt is done automatically without any intervention of the drive. Driver is informed of the entry into the Toll area through notification. If geo-location enabled devices that don't have local GPS, they use network based location based services. Some smart phones augment the accuracy of the GPS by using network based location services. The process of paying toll is an automated process once the mobile application is started.
The application has sophisticated algoiithm to identify if there are other location-aware devices which are running the same app in the vehicle. To avoid multiple counting, cloud system will send notification to the mobile devices in the vehicle that multiple location-aware devices are running the same application and disable toll payment option for all the devices except one. Also, option can be enabled so that system can automatically identify the toll payment application that are to the ignored and should not be charged for the said segment of journey.
The central cloud system keeps track of the vehicle number, time and travel route on which the toll was charged. In case, phone runs out of battery then vehicle exits through the manual toll booth. The person at toll both can look where the vehicle entered from the information in cloud and can charge driver appropriately.
The payment will be calculated - 234 for the parking and credited using set of systems - 240, 253, 256,' 257 and 259 to the toll authority based on the financial agreement signed. The system calculates the amount of money to be paid. Shows to the user and charges it to his/her credit card or other payment method as specified in the profile and credits that amount to the party owning the toll road subtracting agreed upon service charge. The cloud parking system completes the parking transaction by debiting the user account by amount equal to the parking and credits the parking entity's account according the business agreement. There is the fraud prevention system 233 and 257 to reduce the frauds committed. The application will send notification to the user when the vehicle is confirmed to have entered the toll road and also when the vehicle exits the toll road along with the payment amount charged.
As shown in Fig 6 flowchart, Toll enforcement officer can check whether the vehicle toll is paid by the vehicle by running the enforcement mobile application on his/her phone using user interface 21 1 and 212. Also system will calculate based on proximity of the enforcement officer using Geo-Location 216 and 217, whether any mobile application is running on the device with any passenger or driver of the vehicle and how much toll has been charged if any. Data can be feed into this system from the toll booth computer system when drivers are paying manually and other mechanisms such as Ezpass. As a result, enforcement officer will have data even for vehicles that didn't pay through this system. Also, the design can be enhanced to use OCR in backend to decrypt the photo of the vehicle number plate. To avoid expense of image file of the number plate to be uploaded, QR/barcode can be used where customers who enrol in the program get a free barcode for each vehicle they have registered. Also, the location of the vehicle is verified by knowing the location of the Toll enforcement Officer's device - 216 & 217. The Toll application can show to the officer the vehicles passing by him/her for the vehicles in which customers have paid toll using geo-location based application. If the user has not paid the Toll
then officer can issue a Ticket using 214 module on the device. The data on the officer device is kept secure by encryption 213 and security 215 modules.
As shown in Fig 6 flowchart, at strategic locations cameras can be mounted to take the license plate number photos. These photos will.be OCRed into the License Plate number. This license plate number will be cross verified whether the Toll was paid and will be cross-linked with the photos from the toll booths where the manual payment using variety of means such a cash or credit card or transponder. Cross verifications will help to identify the vehicles which have not paid the toll.
One of the advantages of the system is that it can work with multiple toll booth collector authorities or companies as it can identify the toll road location due to location information provided by the smart phone or above mentioned geo-location enabled devices. Also, it can enforce different rules and toll tax rates based on the toll ro^d, time of day, duration on the toll road, or the distance user travel on the toll road. t
In brief, the present invention provide a most convenient way of payment and monitoring of toll road by using the system on smart phone or any other geo-location enabled devices like pager, laptop, palmtop or others. The design doesn't require any new infrastructure to be created or marked on the road. This will save, time and money both from user, side and regulatory agency side.
Although the preferred embodiment as well as the preparation and use have been specifically described, it should be understood that variations in the preferred embodiment could be achieved by a person skilled in the art without departing from the spirit of the invention. The invention has been described with reference to specific embodiments which are merely illustrative and not intended to limit the scope of the invention as defined in the claims.