Dynamic allocation of power modules for charging electric vehicles

US12221010B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12221010-B2
Application numberUS-202318508117-A
CountryUS
Kind codeB2
Filing dateNov 13, 2023
Priority dateMay 25, 2016
Publication dateFeb 11, 2025
Grant dateFeb 11, 2025

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

Dynamic allocation of power modules for charging electric vehicles is described herein. The charging system includes multiple dispensers that each include one or more power modules that can supply power to any one of the dispensers at a time. A dispenser includes a first power bus that is switchably connected to one or more local power modules and switchably connected to one or more power modules located remotely in another dispenser. The one or more local power modules are switchably connected to a second power bus in the other dispenser. The dispenser includes a control unit that is to cause the local power modules and the remote power modules to switchably connect and disconnect from the first power bus to dynamically allocate the power modules between the dispenser and the other dispenser.

First claim

Opening claim text (preview).

What is claimed is: 1. A method in a first dispenser, comprising: requesting, from a plurality of power modules located in part in the first dispenser and in part in a set of one or more other dispensers, power for charging an electric vehicle, wherein each individual power module can be allocated to a single one of the first dispenser and the set of one or more other dispensers at a time; receiving an allocation of one or more of the power modules to the first dispenser; and responsive to determining that an amount of allocated power modules exceeds an amount of power requested or determined for charging the electric vehicle, causing an excess amount of the amount of allocated power modules to be released so that the excess amount of allocated power modules are available to be allocated to those of the set of one or more other dispensers. 2. The method of claim 1 , further comprising, responsive to determining to dynamically allocate the plurality of power modules between the first dispenser and the set of one or more other dispensers, participating in a dynamic allocation of the plurality of power modules to the first dispenser and the set of one or more other dispensers wherein at least one of the plurality of power modules that is presently allocated to the first dispenser is deallocated and reallocated to one of the set of one or more other dispensers. 3. The method of claim 2 , wherein the dynamic allocation of the plurality of power modules between the first dispenser and the set of one or more other dispensers is based on a set of one or more factors including one or more properties of active charging sessions on the first dispenser and the set of one or more other dispensers. 4. The method of claim 3 , wherein the one or more properties of active charging sessions include for each charging session, one or more of: a duration that each electric vehicle connected to the first dispenser and the set of one or more other dispensers has been charging, a duration that each electric vehicle connected to the first dispenser and the set of one or more other dispensers has been parked in proximity to the first dispenser and the set of one or more other dispensers, a time remaining on each charging session, a type of account associated with each charging session, an amount of current drawn by each electric vehicle connected to the first dispenser and the set of one or more other dispensers, a percentage of charge complete of each electric vehicle connected to the first dispenser and the set of one or more other dispensers, a percentage of charge remaining of each electric vehicle connected to the first dispenser and the set of one or more other dispensers, a battery temperature of each electric vehicle connected to the first dispenser and the set of one or more other dispensers, a type of each electric vehicle connected to the first dispenser and the set of one or more other dispensers, and a reservation status of each electric vehicle connected to the first dispenser and the set of one or more other dispensers. 5. The method of claim 3 , wherein the set of one or more factors further includes one or more of: a maximum rate of power that can be dispensed by each of the first dispenser and the set of one or more other dispensers, and load supply condition. 6. The method of claim 1 , further comprising: selecting which one or more of the excess amount of the amount of allocated power modules to be released based on an operating time of each of the allocated power modules. 7. The method of claim 1 , further comprising: responsive to charging service for charging the electric vehicle ending, causing the allocated power modules to be deallocated from the first dispenser. 8. The method of claim 1 , wherein requesting power for charging the electric vehicle is performed responsive to the electric vehicle being connected to the first dispenser. 9. The method of claim 1 , wherein requesting power for charging the electric vehicle is performed upon a reservation time of the first dispenser being within a predefined time of the reservation time. 10. A first dispenser for charging an electric vehicle, comprising: a first set of one or more power modules, wherein each of the first set of one or more power modules is capable of supplying an amount of power for charging the electric vehicle; a processor; and a non-transitory machine-readable storage medium that stores instructions that, when executed by the processor, cause the first dispenser to perform operations including: requesting, from a plurality of power modules located in part in the first dispenser and in part in a set of one or more other dispensers, power for charging an electric vehicle, wherein each individual power module can be allocated to a single one of the first dispenser and the set of one or more other dispensers at a time; receiving an allocation of one or more of the power modules to the first dispenser; and responsive to determining that an amount of allocated power modules exceeds an amount of power requested or determined for charging the electric vehicle, causing an excess amount of the amount of allocated power modules to be released so that the excess amount of allocated power modules are available to be allocated to those of the set of one or more other dispensers. 11. The first dispenser of claim 10 , wherein the operations further include: responsive to determining to dynamically allocate the plurality of power modules between the first dispenser and the set of one or more other dispensers, participating in a dynamic allocation of the plurality of power modules to the first dispenser and the set of one or more other dispensers wherein at least one of the plurality of power modules that is presently allocated to the first dispenser is deallocated and reallocated to one of the set of one or more other dispensers. 12. The first dispenser of claim 11 , wherein the dynamic allocation of the plurality of power modules between the first dispenser and the set of one or more other dispensers is based on a set of one or more factors including one or more properties of active charging sessions on the first dispenser and the set of one or more other dispensers. 13. The first dispenser of claim 12 , wherein the one or more properties of active charging sessions include for each charging session, one or more of: a duration that each electric vehicle connected to the first dispenser and the set of one or more other dispensers has been charging, a duration that each electric vehicle connected to the first dispenser and the set of one or more other dispensers has been parked in proximity to the first dispenser and the set of one or more other dispensers, a time remaining on each charging session, a type of account associated with each charging session, an amount of current drawn by each electric vehicle connected to the first dispenser and the set of one or more other dispensers, a percentage of charge complete of each electric vehicle connected to the first dispenser and the set of one or more other dispensers, a percentage of charge remaining of each electric vehicle connected to the first dispenser and the set of one or more other dispensers, a battery temperature of each electric vehicle connected to the first dispenser and the set of one or more other dispensers, a type of each electric vehicle connected to the first dispenser and the set of one or more other dispensers, and a reservation status of each electric vehicle connected to the first dispenser and the set of one or more other dispensers. 14. The first dispenser of claim 12 , wherein the set of one or more factors further i

Assignees

Inventors

Classifications

  • acting upon multiple batteries simultaneously or sequentially · CPC title

  • Wind energy · CPC title

  • Systems integrating technologies related to power network operation and communication or information technologies for supporting the interoperability of electric or hybrid vehicles, i.e. smartgrids as interface for battery charging of electric vehicles [EV] or hybrid vehicles [HEV] · CPC title

  • Information or communication technologies improving the operation of electric vehicles · CPC title

  • Electric charging stations · CPC title

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What does patent US12221010B2 cover?
Dynamic allocation of power modules for charging electric vehicles is described herein. The charging system includes multiple dispensers that each include one or more power modules that can supply power to any one of the dispensers at a time. A dispenser includes a first power bus that is switchably connected to one or more local power modules and switchably connected to one or more power modul…
Who is the assignee on this patent?
Chargepoint Inc
What technology area does this patent fall under?
Primary CPC classification B60L58/12. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Feb 11 2025 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).