1. Technical Field
The present disclosure relates to charging station information control systems and, particularly, to a charging station information control system and a method for an electric vehicle.
2. Description of Related Art
Electric vehicles are more and more found on the road. However, a driver of an electric car often faces the challenge to find a nearby charging station to charge the vehicle. Therefore, people who wish to drive their electric vehicle for a long trip risk running out of power and not being able to find a nearby charging station along the route when in need.
Therefore, what is needed is a charging station information control system and a method for an electric vehicle to overcome the described limitations.
Referring to
In a first embodiment, the information acquiring module 51 is incorporated into the electric vehicle 1 and the matching module 52 is incorporated into the control center 2. In other embodiments, the information acquiring module 51 and the matching module 52 can both be incorporated into the electric vehicle 1 or into the control center 2.
The information acquiring module 51 which can be invoked/implemented by the at least one processor 50 to further acquire a current route of the electric vehicle 1. The matching module 52 which can be invoked/implemented by the at least one processor 50 to further select at least one charging station 3 whose positional information is along the route of the electric vehicle 1 from the one or more suitable charging stations 3, and acquires the positional information of the selected charging station 3.
Furthermore, the information acquiring module 51 which can be invoked/implemented by the at least one processor 50 to acquire a current state of electrical charge available (charge value) of the electric vehicle 1. A plurality of modules to be executed by the at least one processor 50 further includes a charge value detecting module 59, a prompting module 60, and a booking module 56. The charge value detecting module 59 which can be invoked/implemented by the at least one processor 50 to detect whether the current charge value of the electric vehicle 1 is sufficient for the whole journey. The prompting module 60 which can be invoked/implemented by the at least one processor 50 to determine that the current charge value of the electric vehicle 1 is not sufficient and may book a charging station 3 for the electric vehicle 1 when the current charge value of the electric vehicle 1 is not sufficient. The booking module 56 which can be invoked/implemented by the at least one processor 50 to attempt to book a charging station 3 for the electric vehicle 1 when the user of the electric vehicle 1 selects one of the charging stations 3.
Furthermore, the information concerning the charging station 3 includes information as to batteries or other energy storage devices which can be accommodated by each of the charging stations 3 (battery model information). When the booking module 56 which can be invoked/implemented by the at least one processor 50 to book the charging station 3 for the electric vehicle 1, the information acquiring module 51 which can be invoked/implemented by the at least one processor 50 to further acquire information as to the nature or type of battery or other energy storage device fitted in the electric vehicle 1 (battery model information). A plurality of modules to be executed by the at least one processor 50 further includes a battery model detecting module 61 and a battery transferring module 62. The battery model detecting module 61 which can be invoked/implemented by the at least one processor 50 to seek to detect compatibility between the battery model information regarding the booked charging station 3 and the battery model information regarding the electric vehicle 1. The battery transferring module 62 which can be invoked/implemented by the at least one processor 50 to generate an instruction to the user to transfer batteries or other energy devices whose battery model information is compatible with battery model information regarding the electric vehicle 1 from other charging stations 3 when the battery model information regarding the booked charging station 3 is not compatible with the battery model information regarding the electric vehicle 1.
A plurality of modules to be executed by the at least one processor 50 further includes a validating module 57. The charging station information control system further includes a storage unit 30. The storage unit 30 stores a number of items of predetermined validation information of the user of the electric vehicles 1. When booking the charging station 3 for the electric vehicle 1, the information acquiring module 51 which can be invoked/implemented by the at least one processor 50 to further acquire setting information and validation information of the electric vehicle 1. The setting information of the electric vehicle 1 is a license number of the electric vehicle 1. The validating module 57 which can be invoked/implemented by the at least one processor 50 to validate whether the acquired validation information of the electric vehicle 1 matches one of the items of the predetermined validation information of the electric vehicles 1 in the storage unit 30. The booking module 56 which can be invoked/implemented by the at least one processor 50 to book the charging station 3 for the electric vehicle 1 when the validation information of the electric vehicle 1 matches one of the items of the predetermined validation information of the electric vehicles 1 in the storage unit 30. In one embodiment, an item of predetermined validation information may incorporate the fingerprint of a user, for example, another item may include an image of the user's eye, another item may be the sound of a user's voice, and another item may incorporate a combination of the foregoing, or other identifying characteristic(s).
Furthermore, a plurality of modules to be executed by the at least one processor 50 further includes a detecting module 58 and a charge control module 54. When the electric vehicle 1 arrives at the charging station 3, the detecting module 58 which can be invoked/implemented by the at least one processor 50 to detect whether the setting information of the arrived electric vehicle 1 is consistent with the setting information of the electric vehicle 1 acquired by the information acquiring module 51 when the charging station 3 was booked. If yes, the charge control module 54 which can be invoked/implemented by the at least one processor 50 to control the charging station 3 to allow energy charging to the arrived electric vehicle 1, otherwise, the charge control module 54 which can be invoked/implemented by the at least one processor 50 to control the charging station 3 to withhold energy charging to the arrived electric vehicle 1.
Furthermore, the storage unit 30 further stores a number of payment accounts. The charging station information control system 10 further includes a display unit 40. When the charge station 3 is booked by the electric vehicle 1, the information acquiring module 51 which can be invoked/implemented by the at least one processor 50 to acquire the payment account which is associated with the electric vehicle 1, determine the amount of money available in the acquired payment account, and display the amount available on the display unit 40, thereby helping the user to understand whether there is enough money in the payment account for the user to pay for an energy charge for the electric vehicle 1.
Furthermore, the charge control module 54 which can be invoked/implemented by the at least one processor 50 to deduct a payment charge from the payment account after the electric vehicle 1 has been completely charged. Therein, each charging station 3 is registered as a credit supplier.
In step S601, the information acquiring module 51 which can be invoked/implemented by the at least one processor 50 to acquire current positional information relating to the electric vehicle 1.
In step S602, the matching module 52 which can be invoked/implemented by the at least one processor 50 to determine one or more suitable charging stations 3 according to the current positional information of the electric vehicle 1 and the positional information of the charging stations 3, and acquire the positional information of the one or more suitable charging stations 3.
The method further includes the following steps: the information acquiring module 51 which can be invoked/implemented by the at least one processor 50 to acquire a current route of the electric vehicle 1; the matching module 52 which can be invoked/implemented by the at least one processor 50 to select at least one charging station 3 whose positional information is along the route of the electric vehicle 1 from the one or more suitable charging stations 3, and acquire the positional information of the particular charging station 3 which is selected.
The method further includes the following steps: the information acquiring module 51 which can be invoked/implemented by the at least one processor 50 to acquire a charge value of the electric vehicle 1, the charge value detecting module 59 which can be invoked/implemented by the at least one processor 50 to detect whether the charging value of the electric vehicle 1 is sufficient for the whole journey, the prompting module 60 which can be invoked/implemented by the at least one processor 50 to issue a warning if the charge value of the electric vehicle 1 is not sufficient for the whole journey and invites confirmation that a charging station 3 for the electric vehicle 1 should be booked by allowing the user of the electric vehicle 1 to select a charging station 3 to be booked. After the charging station 3 has been booked by the electric vehicle 1, the information acquiring module 51 which can be invoked/implemented by the at least one processor 50 to further acquire the battery model information of the battery in the electric vehicle 1, and the battery model detecting module 61 which can be invoked/implemented by the at least one processor 50 to detect whether the battery model information of the booked charging station 3 is compatible with the battery model information regarding the electric vehicle 1. The battery transferring module 62 which can be invoked/implemented by the at least one processor 50 to generate an instruction to the user to transfer batteries or other energy devices whose battery model information is compatible with battery model information regarding the electric vehicle 1 from other charging stations 3 when the battery model information regarding the booked charging station 3 is not compatible with the battery model information regarding the electric vehicle 1. After the electric vehicle 1 arrives at the charging station 3, the detecting module 58 which can be invoked/implemented by the at least one processor 50 to detect whether the setting information of the arrived electric vehicle 1 is consistent with the setting information of the electric vehicle 1 acquired by the information acquiring module 51 when the charging station 3 was booked, if yes, the charge control module 54 controls the charging station 3 to allow an energy charge the arrived electric vehicle 1, otherwise, the charge control module 54 which can be invoked/implemented by the at least one processor 50 to control the charging station 3 to withhold an energy charge from the arrived electric vehicle 1. After the electric vehicle 1 has been completely charged, the charge control module 54 which can be invoked/implemented by the at least one processor 50 to deduct a payment charge from the payment account.
The method for booking the charging station 3 further includes the following steps: the information acquiring module 51 which can be invoked/implemented by the at least one processor 50 to further acquire setting information and validation information of the electric vehicle 1, the validating module 57 which can be invoked/implemented by the at least one processor 50 to validate whether the acquired validation information of the electric vehicle 1 matches one of the items of the predetermined validation information of the electric vehicles 1 in the storage unit 30, the booking module 56 which can be invoked/implemented by the at least one processor 50 to book the charging station 3 for the electric vehicle 1 when the validation information of the electric vehicle 1 matches one of the items of the predetermined validation information of the electric vehicles 1 in the storage unit 30.
After the charge station 3 has been booked, the further steps of the method are: the information acquiring module 51 which can be invoked/implemented by the at least one processor 50 to acquire the payment account associated with the user or with the electric vehicle 1, determine the amount of money available in the acquired payment account, and display the amount of available money on the display unit 40.
Although the present disclosure has been specifically described on the basis of the embodiments thereof, the disclosure is not to be construed as being limited thereto. Various changes or modifications may be made to the embodiments without departing from the scope and spirit of the disclosure.
Number | Date | Country | Kind |
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100142143 | Nov 2011 | TW | national |