PARKING METER AND A DEVICE THEREFOR
20180082489 ยท 2018-03-22
Inventors
Cpc classification
G06Q20/18
PHYSICS
G07F17/0014
PHYSICS
G06Q20/127
PHYSICS
G07B15/02
PHYSICS
International classification
G07B15/02
PHYSICS
G06Q20/18
PHYSICS
Abstract
A single bay parking meter device is provided which accepts payment by means of a credit or debit card, an electronic purse, or coins. The device has a power supply unit, a solar power charging arrangement and power management, such that it does not need power supply cables to be installed for each meter. The parking meter device also transmits financial data to a financial institution in a wireless manner, also to avoid the need for cabling. The parking meter device is receivable in the base of a conventional single bay parking meter, such that the new parking meter device may be retrofitted to existing coin operated installed single bay parking meters, using a new cover that is also engageable with the conventional housing base.
Claims
1. (canceled)
2. A removable single space parking meter mechanism comprising: an internal structure to be at least partially and removably received within a lower housing of a single space parking meter; a display; and an antenna for a contactless payment reader arranged at the display for reading payment information from a contactless payment card or device used for payments, the antenna for the contactless payment reader arranged such that a user placing the contactless payment card or device in the vicinity of the display will reliably read the payment information from the contactless payment card or device.
3. The removable single space parking meter mechanism of claim 2, wherein the antenna for the contactless payment reader is arranged behind the display.
4. The removable single space parking meter mechanism of claim 2, wherein the antenna for the contactless payment reader is arranged adjacent to the display.
5. The removable single space parking meter mechanism of claim 2, further comprising a front housing, to be exposed to an external environment, coupled to the internal structure.
6. The removable single space parking meter mechanism of claim 5, wherein the front housing comprises a display opening through which the display is visible.
7. The removable single space parking meter mechanism of claim 6, wherein the antenna for the contactless payment reader is arranged behind the display.
8. The removable single space parking meter mechanism of claim 6, wherein the antenna for the, contactless payment reader is arranged within the display opening.
9. The removable single space parking meter mechanism of claim 6, further comprising a transparent covering within the display opening, wherein the antenna for the contactless payment reader is arranged on the transparent covering.
10. The removable single space parking meter mechanism of claim 5, further comprising additional payment components comprising: a card slot in the front housing for receiving a payment card and a coin slot for receiving coins; wherein the antenna for the contactless payment reader is adjacent to one or more of the card slot and the coin slot.
11. The removable single space parking meter mechanism of claim 5, further comprising input controls located on the front housing; wherein the antenna for the contactless payment reader is adjacent to the input controls.
12. The removable single space parking meter mechanism of claim 2, further comprising a solar panel coupled to the internal structure; wherein the antenna for the contactless payment reader is adjacent to the solar panel.
13. The removable single space parking meter mechanism of claim 2, wherein the antenna for a contactless payment reader is coupled to a contactless payment reader comprising at least one of: a Near-Field Communications (NEC) reader; a Radio Frequency Identification (RFID) reader; and an International Organization for Standardization (ISO) 14443 reader.
14. The removable single space parking meter mechanism of claim 2, wherein the display presents payment information when parking time is being purchased; and wherein the payment information comprises payment instructions for payment using the contactless payment reader antenna.
15. The removable single space parking meter mechanism of claim 4, wherein the antenna is arranged around one or more of: a one or more input controls and a solar panel.
16. A single space parking meter comprising: a lower housing; a removable single space parking meter mechanism comprising: an internal structure to be at least partially and removably received within the lower housing; and a display; an antenna for a contactless payment reader arranged at the display for reading payment information from a contactless payment card or device used for payments, the antenna for the contactless payment reader arranged such that a user placing the contactless payment card or device in the vicinity of the display will reliably read the payment information from the contactless payment card or device; and a meter housing secured to the lower housing and securing the removable single space parking meter mechanism at least partially within the lower housing.
17. The single space parking meter of claim 16, wherein the antenna for the contactless payment reader is arranged behind the display.
18. The single space parking meter of claim 16, wherein the antenna for the contactless payment reader is arranged adjacent to the display.
19. The single space parking meter of claim 16, wherein the display presents payment information when parking time is purchased; and wherein the payment information comprises payment instructions for payment using the contactless payment reader antenna.
20. The single space parking meter of claim 16, wherein the meter housing comprises a display opening through which the display is visible.
21. The single space parking meter of claim 20, wherein the antenna for the contactless payment reader is arranged within the display opening.
22. The single space parking meter of claim 20, further comprising a transparent covering within the display opening, wherein the antenna for the contactless payment reader is arranged on the transparent covering.
23. The single space parking meter of claim 16, further comprising additional payment components comprising: a card slot in the meter housing for receiving a payment card and a coin slot for receiving coins; and wherein the antenna for the contactless payment reader is adjacent to one or more of the card slot and the coin slot.
24. The single space parking meter of claim 16, further comprising a solar panel coupled to the removable single space parking meter mechanism; wherein the antenna for the contactless payment reader is adjacent to the solar panel.
25. The single space parking meter of claim 16, further comprising input controls located at the meter housing; wherein the antenna for the contactless payment reader is adjacent to the input controls.
26. The single space parking meter of claim 16, wherein the antenna for a contactless payment reader is coupled to a contactless payment reader comprising at least one of: a Near-Field Communications (NFC) reader; a Radio Frequency Identification (RFID) reader; and an International Organization for Standardization (ISO) 14443 reader.
27. The single space parking meter of claim 16, wherein the removable single space parking meter mechanism further comprises a front housing, to be exposed to an external environment, rigidly attached to the internal structure of the removable parking meter mechanism, and wherein the meter housing is pivotally attached to the lower housing.
28. The single space parking meter of claim 16, wherein the antenna is arranged around one or more of: a one or more input controls and a solar panel.
29. A method for accepting payment at a single space parking meter comprising: presenting parking information on a display of the single space parking meter; reading payment information from a user's contactless payment card or device placed in close proximity to a contactless payment reader antenna located at the display used for displaying the parking information, the antenna for the contactless payment reader arranged such that the user placing the contactless payment card or device in the vicinity of the display will reliably read the payment information from the contactless payment card or device; and processing the payment information to effect payment.
30. The method of claim 29, wherein the parking information presented on the display comprises instructions for using the contactless payment reader antenna located at the display.
31. The method of claim 29, further comprising receiving, through one or more input controls of the single space parking meter, information from a user comprising one or both of an amount of parking time purchased and an authorization of a transaction.
Description
[0036] The invention is now described, by way of a non-limiting example, with reference to the accompanying drawings, in which:
[0037]
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[0039]
[0040]
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[0044]
[0045] Referring to the drawings, in particular
[0046] The lower portion 12 of the parking meter device 10 has a coin accepting and validating assembly 16 with a coin slot 18.
[0047] In the upper portion 14 of the parking meter device there is a card reading device 20 with an access opening 22, on a front side of the parking meter device 10, into which a credit or debit card may be inserted to be read by the reading device 20. Also in the upper portion 14, on its front side, are a keypad sensor 24 and a display 26. An infrared receiver and transmitter 27 are provided whereby management data and operational software may be transferred to and from a portable communication device (not shown).
[0048] On the rear side of the upper portion 14 of the parking meter device 10 (
[0049] Referring now to
[0050] The cover 36 has, on its front side, a window 38 through which the display 26 is visible and control touch keys 40 which interact with the keypad sensor 24. On its rear side the cover 36 as a further window 40 for the solar panel 28. An opening 42 is provided between the housing 34 and cover 36 for the flip dot 30. A key hole 44 is located in the housing 34 by means of which the cover 36 may be unlocked and opened, as shown in
[0051] The various electrical and other components of the parking meter device 10 are indicated in
[0052] The controller 52 controls operation of the meter. An integrated device is used, providing RAM, ROM, and some I/O capabilities. Power down features are of high importance when selecting the microcontroller, as the meter is typically in the idle or sleep mode. A serial port is provided for debug as well as connection to an external management system.
[0053] To minimize power consumption, special power management circuitry is provided to allow application of power to only the necessary peripherals at only the necessary times. The power management facility also provides battery status to the microcontroller to allow changes in operation based on available power, as well as health reporting to the management system.
[0054] An AMP card reader will be used as the external electrical/mechanical credit/smart card solution. One of two interfaces to the AMP device is the card head interface. A Magtek Triple Track ASIC will be used to convert the analog head signals to serial bit streams, readable by the microcontroller. The second interface to the external AMP card connector is the smart card interface. This block will provide necessary level shifting and synchronization to allow the microcontroller to bit-bang the smart card interface.
[0055] The coin validator interface 58 is an analog/digital block that connects to 3 coils in the coin validator 16. The coils are energized, and the change in inductance is measured as the coin passes through each of the coils. This profile can then be correlated by the microcontroller to a database of known coins to determine the type of coin present.
[0056] The parking meter device 10 contains a number of switches such as touch keys for user input, presence detection in the card reader, and door switches. The I/O hardware 64 allows the microcontroller to sense the state of the switches.
[0057] An expansion interface may be provided that will allow a daughter card assembly to be connected to the controller board. The communication protocol over the interface will support a minimum throughput of 20 KB/s. The expansion interface is intended to allow the addition of a communication device to the meter. Possible device types are: cellular, WiFi, Zigbee, and IrDA. Both communication signals and power will be provided through the expansion connector.
[0058] The following will be displayed on the display 26: which of the 4 user buttons are pressed; information from a credit card; information from a smart card; which coins are passed through the coin validator.
[0059] As described in the introduction, a motorist will approach the meter and insert either a coin or card into the meter. Either method will wake up the electronic componentry and it will then either validate that it is a coin, credit card, debit/ATM card or a Smart Card. By inserting either the required number of valid coins or by inserting a card and manipulating the controls on the touch pad the motorist can determine the amount of parking time he wishes to purchase. The amount of time purchased is then displayed on the electronic display. The parking meter device will communicate with the credit card company wirelessly and authorize the payment using that card.
[0060] Payment via an electronic tag or electronic toll road pass will be as follows. The device will either sense or be advised by an electronic sensor that a motor vehicle has parked in the parking space. It will then identify the electronic tag in the vehicle and after the vehicle has been in that parking space for a predetermined time will then deduct time from the vehicles electronic tag for a predetermined length of time and display that time on the electronic device's LCD Display. After that time has been used up and the vehicle is still parked in that same parking space the device will again deduct the required amount of money from the vehicles electronic tag and display that amount of time on the device's LCD display. This process will repeat itself until the vehicle has stayed in the parking space for the maximum amount of time allowed for that parking zone or area.
[0061] At a time determined by the owner or the controller of the parking area, the device will communicate with a management system. This can be done wirelessly or through a hand held device.