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Patent · US11136008B2 · B2 · US

Systems and methods for managing exchangeable energy storage device stations

(11) Publication number
US11136008B2
(21) Application number
16/236,205
(22) Filing date
2018-12-28
(30) Priority date
2017-12-29
(43) Publication date
2021-10-05
(45) Date of grant
2021-10-05
(51) IPC
B60L 53/30; B60L 53/68; B60L 53/80; B60S 5/06; G01R 31/382; G06Q 10/06; G06Q 30/02
(52) CPC
  • B60S Servicing, cleaning, repairing, supporting, lifting, or manoeuvring of vehicles, not otherwise provided for: 5/06
  • B60L Propulsion of electrically-propelled vehicles; supplying electric power for auxiliary equipment of electrically-propelled vehicles; electrodynamic brake systems for vehicles in general; magnetic suspension or levitation for vehicles; monitoring operating variables of electrically-propelled vehicles; electric safety devices for electrically-propelled vehicles: 53/305, 53/53, 53/68, 53/80, 58/12
  • B60Y Indexing scheme relating to aspects cross-cutting vehicle technology: 2200/91
  • G01R Measuring electric variables; measuring magnetic variables: 31/382
  • G06Q Information and communication technology [ICT] specially adapted for administrative, commercial, financial, managerial or supervisory purposes; systems or methods specially adapted for administrative, commercial, financial, managerial or supervisory purposes, not otherwise provided for: 10/06315, 30/0202, 50/00
  • H02J Electric power networks; circuit arrangements or systems for supplying or distributing electric power; systems for storing electric energy: 7/00
  • H04L Transmission of digital information, e.g. telegraphic communication: 67/10
  • Y02T Climate change mitigation technologies related to transportation: 10/70, 90/12
(73) Assignee
Gogoro Inc Hong Kong
(72) Inventors
Yun-Chun Lai; Sheng-Chin CHUANG; I-Fen Shih; Chien-Chung Chen
(54) Title
Systems and methods for managing exchangeable energy storage device stations
(57) Abstract

Methods and associated systems for managing a battery-exchange station are provided. The method includes (1) receiving, from a server, demand information for the battery-exchange station corresponding to a first time period; and (2) forming a charging plan for a plurality of batteries positioned in the battery-exchange station corresponding to the first time period based on a first instruction set stored in the battery-exchange station and the demand information corresponding to the first time period. The first instruction set includes one or more charging rules and information indicative of assigning the one or more charging rules to each of the batteries positioned in the battery-exchange station. The charging plan comprises one or more assigned charging rules for each of the batteries positioned in the battery-exchange station.

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Claims (26)

  1. A method for managing a battery-exchange station, the method comprising: receiving, from a server, demand information for the battery-exchange station corresponding to a first time period; and forming a charging plan for a plurality of the batteries positioned in the battery-exchange station corresponding to the first time period based on a first instruction set stored in the battery-exchange station and the demand information corresponding to the first time period; wherein the first instruction set comprises one or more charging rules and information indicative of assigning the one or more charging rules to each of the batteries positioned in the battery-exchange station based on a manufacturing batch of each of the batteries positioned in the battery-exchange station; and wherein the charging plan comprises one or more assigned charging rules for each of the batteries positioned in the battery-exchange station.
  2. The method of claim 1, further comprising: receiving, from the server, demand information for the battery-exchange station corresponding to a second time period later than the first time period; and updating the charging plan for the batteries positioned in the battery-exchange station corresponding to the second time period based on the first instruction set stored in the battery-exchange station and the demand information corresponding to the second time period.
  3. The method of claim 1, further comprising: periodically updating the charging plan for the battery-exchange station.
  4. The method of claim 1, further comprising: generating charging commands for each of the batteries positioned in the battery-exchange station based on the one or more assigned charging rules for each of the batteries and a status of each of the batteries during the first time period, the first time period comprising one or more time intervals.
  5. The method of claim 4, further comprising: receiving a second instruction set from the server, the second instruction set comprising one or more updated charging rules; updating the one or more assigned charging rules based on the one or more updated charging rules; updating the charging commands for each of the batteries based on the updated one or more assigned charging rules and the status of each of the batteries.
  6. The method of claim 4, wherein the status of each of the batteries comprises at least one of a temperature and an SoC.
  7. The method of claim 1, further comprising simulating the first instruction set to generate a simulation result.
  8. The method of claim 7, further comprising determining whether to update the first instruction set based on the simulation result.
  9. The method of claim 7, further comprising simulating a charging process for at least one of the batteries positioned in the battery-exchange station.
  10. The method of claim 1, further comprising: assigning the one or more charging rules to each of the batteries positioned in the battery-exchange station respectively based on battery usage information of each of the batteries positioned in the battery-exchange station.
  11. The method of claim 10, wherein the battery usage information includes an actual battery charging temperature.
  12. The method of claim 10, wherein the battery usage information includes an actual battery charging time.
  13. The method of claim 1, further comprising: updating the charging plan in response to a triggering event.
  14. The method of claim 13, wherein the triggering event comprises a disconnection between the server and the battery-exchange station.
  15. The method of claim 14, further comprising: in response to the triggering event, considering the demand information for the battery-exchange station corresponding to the first time period as demand information for the battery-exchange station corresponding to a second time period later than the first time period; and generating the charging plan for the batteries positioned in the battery-exchange station corresponding to the second time period based on the first instruction set stored in the battery-exchange station and the demand information for the battery-exchange station corresponding to the first time period.
  16. The method of claim 1, wherein the first time period comprises a first time interval and a second time interval following the first time interval, and wherein the demand information for the battery-exchange station corresponding to the first time period comprises a first demand prediction for the first time interval and a second demand prediction for the second time interval, and wherein the method further comprises: assigning a priority value to each of the batteries positioned in the battery-exchange station based on a status of each of the batteries.
  17. The method of claim 16, further comprising: forming the charging plan by: assigning a first set of batteries of the batteries positioned in the battery-exchange station to meet the first demand prediction based on the priority value of each of the batteries; and assigning a second set of batteries of the batteries positioned in the battery-exchange station to meet the second demand based on the priority value of each of the batteries.
  18. The method of claim 17, further comprising: forming the charging plan by: assigning at least one charging rule from the one or more charging rules to each of the first set of batteries based on the first demand prediction; and assigning at least one charging rule from the one or more charging rules to each of the second set of batteries based on the second demand prediction.
  19. The method of claim 1, further comprising managing the first instruction set based on an aging policy.
  20. The method of claim 19, further comprising verifying whether the first instruction set is expired based on the aging policy.
  21. The method of claim 20, further comprising replacing the first instruction set with a set of default rules when the first instruction set is expired.
  22. A battery-exchange station, comprising: a processor; a battery management component coupled to the processor and configured to - receive, from a server, demand information for the battery-exchange station corresponding to a first time period; and form a charging plan for the batteries positioned in the battery-exchange station corresponding to the first time period based on a first instruction set stored in the battery-exchange station and the demand information corresponding to the first time period; wherein the first instruction set comprises one or more charging rules and information indicative of assigning the one or more charging rules to each of the batteries positioned in the battery-exchange station based on a manufacturing batch of each of the batteries positioned in the battery-exchange station; and wherein the charging plan comprises one or more assigned charging rules for each of the batteries positioned in the battery-exchange station.
  23. The battery-exchange station of claim 22, further comprising: an instruction management component coupled to the processor and configured to manage the first instruction set based on based on an aging policy.
  24. The battery-exchange station of claim 22, wherein the one or more charging rules are assigned based on battery usage information of each of the batteries positioned in the battery-exchange station.
  25. The battery-exchange station of claim 24, wherein the battery usage information includes an actual battery charging temperature.
  26. The battery-exchange station of claim 24, wherein the battery usage information includes an actual battery charging time.

Description

The present technology is directed to systems and methods for managing exchangeable energy storage device (e.g., exchangeable and rechargeable batteries) stations. More particularly, the present technology is directed to systems and methods for managing a battery-exchange station based on a set of instructions stored therein.

Some electric vehicles are powered by exchangeable batteries. Users of such electric vehicles usually go to battery-exchange stations to exchange batteries. Having a supply of sufficiently-charged batteries available to users when they want to make a battery exchange is an important factor in providing a satisfying user experience. However, it is very difficult to predict when and where a user may want to exchange a battery. For a battery-exchange station that handles a large number of batteries, it is even more difficult for the station to predict the battery demands and respond accordingly. Charging batteries and maintaining the state of charge of these batteries require a significant amount of energy. Unnecessary charging or maintaining can result in cost-inefficiency and energy-inefficiency. Therefore, it is advantageous to have an improved system and method to address the foregoing issues.

Embodiments of the disclosed technology will be described and explained through the use of the accompanying drawings.

FIG. 1A is a schematic diagram illustrating a system in accordance with embodiments of the disclosed technology. The system is configured to determine a battery management plan for a battery-exchange station.

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Record as JSON
{
  "publication_number": "US11136008B2",
  "country": "US",
  "kind": "B2",
  "title": "Systems and methods for managing exchangeable energy storage device stations",
  "abstract": "Methods and associated systems for managing a battery-exchange station are provided. The method includes (1) receiving, from a server, demand information for the battery-exchange station corresponding to a first time period; and (2) forming a charging plan for a plurality of batteries positioned in the battery-exchange station corresponding to the first time period based on a first instruction set stored in the battery-exchange station and the demand information corresponding to the first time period. The first instruction set includes one or more charging rules and information indicative of assigning the one or more charging rules to each of the batteries positioned in the battery-exchange station. The charging plan comprises one or more assigned charging rules for each of the batteries positioned in the battery-exchange station.",
  "claims": [
    "1. A method for managing a battery-exchange station, the method comprising: receiving, from a server, demand information for the battery-exchange station corresponding to a first time period; and forming a charging plan for a plurality of the batteries positioned in the battery-exchange station corresponding to the first time period based on a first instruction set stored in the battery-exchange station and the demand information corresponding to the first time period; wherein the first instruction set comprises one or more charging rules and information indicative of assigning the one or more charging rules to each of the batteries positioned in the battery-exchange station based on a manufacturing batch of each of the batteries positioned in the battery-exchange station; and wherein the charging plan comprises one or more assigned charging rules for each of the batteries positioned in the battery-exchange station.",
    "2. The method of claim 1, further comprising: receiving, from the server, demand information for the battery-exchange station corresponding to a second time period later than the first time period; and updating the charging plan for the batteries positioned in the battery-exchange station corresponding to the second time period based on the first instruction set stored in the battery-exchange station and the demand information corresponding to the second time period.",
    "3. The method of claim 1, further comprising: periodically updating the charging plan for the battery-exchange station.",
    "4. The method of claim 1, further comprising: generating charging commands for each of the batteries positioned in the battery-exchange station based on the one or more assigned charging rules for each of the batteries and a status of each of the batteries during the first time period, the first time period comprising one or more time intervals.",
    "5. The method of claim 4, further comprising: receiving a second instruction set from the server, the second instruction set comprising one or more updated charging rules; updating the one or more assigned charging rules based on the one or more updated charging rules; updating the charging commands for each of the batteries based on the updated one or more assigned charging rules and the status of each of the batteries.",
    "6. The method of claim 4, wherein the status of each of the batteries comprises at least one of a temperature and an SoC.",
    "7. The method of claim 1, further comprising simulating the first instruction set to generate a simulation result.",
    "8. The method of claim 7, further comprising determining whether to update the first instruction set based on the simulation result.",
    "9. The method of claim 7, further comprising simulating a charging process for at least one of the batteries positioned in the battery-exchange station.",
    "10. The method of claim 1, further comprising: assigning the one or more charging rules to each of the batteries positioned in the battery-exchange station respectively based on battery usage information of each of the batteries positioned in the battery-exchange station.",
    "11. The method of claim 10, wherein the battery usage information includes an actual battery charging temperature.",
    "12. The method of claim 10, wherein the battery usage information includes an actual battery charging time.",
    "13. The method of claim 1, further comprising: updating the charging plan in response to a triggering event.",
    "14. The method of claim 13, wherein the triggering event comprises a disconnection between the server and the battery-exchange station.",
    "15. The method of claim 14, further comprising: in response to the triggering event, considering the demand information for the battery-exchange station corresponding to the first time period as demand information for the battery-exchange station corresponding to a second time period later than the first time period; and generating the charging plan for the batteries positioned in the battery-exchange station corresponding to the second time period based on the first instruction set stored in the battery-exchange station and the demand information for the battery-exchange station corresponding to the first time period.",
    "16. The method of claim 1, wherein the first time period comprises a first time interval and a second time interval following the first time interval, and wherein the demand information for the battery-exchange station corresponding to the first time period comprises a first demand prediction for the first time interval and a second demand prediction for the second time interval, and wherein the method further comprises: assigning a priority value to each of the batteries positioned in the battery-exchange station based on a status of each of the batteries.",
    "17. The method of claim 16, further comprising: forming the charging plan by: assigning a first set of batteries of the batteries positioned in the battery-exchange station to meet the first demand prediction based on the priority value of each of the batteries; and assigning a second set of batteries of the batteries positioned in the battery-exchange station to meet the second demand based on the priority value of each of the batteries.",
    "18. The method of claim 17, further comprising: forming the charging plan by: assigning at least one charging rule from the one or more charging rules to each of the first set of batteries based on the first demand prediction; and assigning at least one charging rule from the one or more charging rules to each of the second set of batteries based on the second demand prediction.",
    "19. The method of claim 1, further comprising managing the first instruction set based on an aging policy.",
    "20. The method of claim 19, further comprising verifying whether the first instruction set is expired based on the aging policy.",
    "21. The method of claim 20, further comprising replacing the first instruction set with a set of default rules when the first instruction set is expired.",
    "22. A battery-exchange station, comprising: a processor; a battery management component coupled to the processor and configured to - receive, from a server, demand information for the battery-exchange station corresponding to a first time period; and form a charging plan for the batteries positioned in the battery-exchange station corresponding to the first time period based on a first instruction set stored in the battery-exchange station and the demand information corresponding to the first time period; wherein the first instruction set comprises one or more charging rules and information indicative of assigning the one or more charging rules to each of the batteries positioned in the battery-exchange station based on a manufacturing batch of each of the batteries positioned in the battery-exchange station; and wherein the charging plan comprises one or more assigned charging rules for each of the batteries positioned in the battery-exchange station.",
    "23. The battery-exchange station of claim 22, further comprising: an instruction management component coupled to the processor and configured to manage the first instruction set based on based on an aging policy.",
    "24. The battery-exchange station of claim 22, wherein the one or more charging rules are assigned based on battery usage information of each of the batteries positioned in the battery-exchange station.",
    "25. The battery-exchange station of claim 24, wherein the battery usage information includes an actual battery charging temperature.",
    "26. The battery-exchange station of claim 24, wherein the battery usage information includes an actual battery charging time."
  ],
  "description_excerpt": "The present technology is directed to systems and methods for managing exchangeable energy storage device (e.g., exchangeable and rechargeable batteries) stations. More particularly, the present technology is directed to systems and methods for managing a battery-exchange station based on a set of instructions stored therein.\n\nSome electric vehicles are powered by exchangeable batteries. Users of such electric vehicles usually go to battery-exchange stations to exchange batteries. Having a supply of sufficiently-charged batteries available to users when they want to make a battery exchange is an important factor in providing a satisfying user experience. However, it is very difficult to predict when and where a user may want to exchange a battery. For a battery-exchange station that handles a large number of batteries, it is even more difficult for the station to predict the battery demands and respond accordingly. Charging batteries and maintaining the state of charge of these batteries require a significant amount of energy. Unnecessary charging or maintaining can result in cost-inefficiency and energy-inefficiency. Therefore, it is advantageous to have an improved system and method to address the foregoing issues.\n\nEmbodiments of the disclosed technology will be described and explained through the use of the accompanying drawings.\n\nFIG. 1A is a schematic diagram illustrating a system in accordance with embodiments of the disclosed technology. The system is configured to determine a battery management plan for a battery-exchange station.",
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  "assignees": [
    "Gogoro Inc Hong Kong"
  ],
  "inventors": [
    "Yun-Chun Lai",
    "Sheng-Chin CHUANG",
    "I-Fen Shih",
    "Chien-Chung Chen"
  ],
  "filing_date": "2018-12-28",
  "publication_date": "2021-10-05",
  "grant_date": "2021-10-05",
  "priority_date": "2017-12-29",
  "application_number": "US-201816236205-A",
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