The invention relates to automated carwashes and the ability to detect and monitor a vehicle that is traversing a carwash tunnel via laser sensors.
Automatic carwashes are configured to process as many vehicles as possible in a given period of time. One goal of these car washing systems is to maintain a constant flow of vehicles through the carwash. In order to achieve this goal, it is imperative to detect when a vehicle stops moving in a carwash tunnel of a carwash. It is best to detect vehicle stoppages using existing components of the carwash or to add as few new components as possible. Such existing components as controllers, cameras and sensors can be further programmed or used for detecting the vehicle stoppages.
It is accordingly an object of the invention to provide a method for monitoring a vehicle and a vehicle location monitoring system for an automated carwash that overcome the above-mentioned disadvantages of the prior art devices and methods of this general type, which is technically easy to implement, is effective, and uses inexpensive components.
With the foregoing and other objects in view there is provided, in accordance with the invention, an automated carwash. The automated carwash has a carwash tunnel, a conveyor for conveying vehicles in the carwash tunnel, and a plurality of laser sensors disposed throughout the carwash tunnel and defines a plurality of checkpoints. The laser sensors detect a presence of a vehicle disposed in the carwash tunnel. A processor is connected to the laser sensors and monitors a progression of a vehicle within the carwash tunnel. The processor shuts down the conveyor if it determines that a vehicle does not make it to a given checkpoint in an allotted time period.
In automated car wash tunnels, rollers or conveyor belts push a vehicle through the tunnel while different pieces of equipment wash the vehicle. At high volume locations, vehicles travel on the conveyors bumper-to-bumper with only a few feet spacing the vehicles apart. If a driver steps on the brake pedal while going through the car wash, it may cause the vehicle to jump a roller or stop moving on the conveyor belt; the vehicle becomes stationary before a second roller reaches the tire position to continue to push the vehicle or the vehicle cannot be further moved forward on the conveyor belt. If the trailing vehicle is only a few feet behind, this situation can potentially cause a collision inside the tunnel. The purpose of the invention is to use laser sensors throughout the car wash tunnel to identify the location of a vehicle while inside an automated car wash tunnel. Laser sensors detect and profile a height and a length of a vehicle upon entering the car wash tunnel. The vehicle location is monitored as it progresses through the tunnel utilizing these sensors, if the vehicle is not detected by a sensor at the time it is expected to reach a sensor check point, the conveyor and the equipment is signaled to stop. This system would avoid potential collisions, but yet maintain the high through put of these very busy car wash locations.
In accordance with an added feature of the invention, a display is connected to the processor.
In accordance with another feature of the invention, the laser sensors in conjunction with the processor model the carwash tunnel and display a size and position of all vehicles disposed within the carwash tunnel.
In accordance with a further feature of the invention, the processor outputs to the display data for displaying the model visually and therefore shows to a carwash operator the carwash tunnel and the position and size of all the vehicles in the carwash tunnel.
In accordance with an additional feature of the invention, an alarm is connected to the processor. In this manner a carwash operator is immediately alerted to the vehicle stoppage within the carwash.
In accordance with yet another added feature of the invention, the laser sensors in conjunction with the processor determine a vehicle stoppage in the carwash tunnel.
In accordance with a further added feature of the invention, upon detection of the vehicle stoppage, the controller outputs an alarm signal to the alarm causing an activation of the alarm.
With the foregoing and other objects in view there is provided, in accordance with the invention, a method for operating a carwash. The method includes conveying a vehicle into the carwash via a conveyor, capturing at least one of a position, a length or a height of the vehicle traversing the carwash, monitoring a progression of the vehicle going from one checkpoint to a further downstream check point, and stopping the conveyor if the vehicle does not make it to the further downstream checkpoint in an allotted time.
In accordance with an added mode of the invention, there is the step of monitoring the distance between any two vehicles within the carwash and shutting down the conveyor if a minimal distance between the vehicles is violated.
In accordance with an added mode of the invention, there is the step of providing laser sensors for capturing at least one of the position, the length or the height of the vehicle within the carwash resulting in captured data.
In accordance with another mode of the invention, there is the step of outputting the captured data to a controller which determines whether the vehicle is no longer being conveyed by the conveyor.
In accordance with a further mode of the invention, there is the step of using the captured data to model the carwash and the position of all vehicles disposed in the carwash. The model with the position of all the vehicles disposed in the carwash is ideally displayed on a display which is monitored by a carwash operator.
In accordance with an additional mode of the invention, there is the step of activating an alarm if it is determined that the vehicle is no longer being conveyed by the conveyor or if the vehicle does not make it to the further downstream checkpoint in the allotted time.
In accordance with another added mode of the invention, there is the step of displaying the position of an improperly stopped vehicle on a display to be monitored by an operator of the carwash. In addition, upon the detection of a stopped vehicle a necessary corrective action is also displayed. In this manner, the carwash operator can quickly set about to resolve a faulty situation.
Other features which are considered as characteristic for the invention are set forth in the appended claims.
Although the invention is illustrated and described herein as embodied in a method for monitoring a vehicle and a vehicle location monitoring system for an automated carwash, it is nevertheless not intended to be limited to the details shown, since various modifications and structural changes may be made therein without departing from the spirit of the invention and within the scope and range of equivalents of the claims.
The construction and method of operation of the invention, however, together with additional objects and advantages thereof will be best understood from the following description of specific embodiments when read in connection with the accompanying drawings.
Referring now to the figures of the drawings in detail and first, particularly to
The processor 8 receives all of the input data from all of the laser sensors 4 and models the tunnel 1 with the size and position of all of the vehicles 2 within the tunnel 1. The display 10 receives the output data from the processor and displays the modeled tunnel 1 to the operator 11 so that the operator has a visual on the continuous operation of the carwash.
This application claims the priority, under 35 U.S.C. § 119, of provisional application No. 62/743,224, filed Oct. 9, 2018; the prior application is herewith incorporated by reference in its entirety.
Number | Date | Country | |
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62743224 | Oct 2018 | US |