EP2450221A2

Apparatus and method for charging an electric vehicle

Abstract

An energy management system (ESMS) (11) includes energy storage devices (32, 34, 36) coupled to a vehicle drivetrain (18, 26, 14, 24) and configured to store DC energy, a power electronic conversion system (42) having energy ports (102), the power electronic conversion system (42) comprising a DC electrical converters (104, 106, 108), each DC electrical converter (104, 106, 108) configured to step up and to step down a DC voltage, wherein each of the energy ports (102) is coupleable to each of the energy storage devices (32, 34, 36) and each of the energy ports (102) is coupleable to an electrical charging system (44). The ESMS (11) includes a controller (46) configured to determine a voltage of each energy port (102) having either an energy storage device (32, 34, 36) or a DC electrical charging system (44) coupled thereto, and electrically connect a first energy port to a second energy port such that at least one of the DC electrical converters (104, 106, 108) either steps up or steps down an input DC voltage based on the determined voltage of each energy port (102).

EP2450221A2, drawing sheet 1
Sheet 1 of 14

Term

5.1 yearsto projected expiry

Projected expiry 1 November 2031, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

15 claims: 13 independent, 2 dependent

  1. 1
    An energy storage and management system (ESMS) (11) comprising:one or more energy storage devices (32, 34, 36) coupled to a vehicle drivetrain (18, 26, 14, 24) and configured to store DC energy;a power electronic conversion system (42) having a plurality of energy ports (102), the power electronic conversion system comprising a plurality of DC electrical converters (104, 106, 108), each DC electrical converter (104, 106, 108) configured to step up and to step down a DC voltage, wherein: each of the plurality of energy ports (102) is coupleable to each of the one or more energy storage devices (32, 34, 36);and each of the plurality of energy ports (102) is coupleable to an electrical charging system (44);and a controller (46) configured to: determine a voltage of each energy port (102) having either an energy storage device (32, 34, 36) or a DC electrical charging system (44) coupled thereto;and electrically connect a first energy port to a second energy port of at least two of the plurality of energy ports (102) such that at least one of the DC electrical converters (104, 106, 108) either steps up or steps down an input DC voltage based on the determined voltage of each energy port (102).
  2. 4
    The ESMS (11) of any preceding claim comprising a first energy source (264) coupled to a first port (114) of the plurality of energy ports (102), and a second energy source (266) coupled to a second port (122) of the plurality of energy ports (102) such that electrical energy is provided to each of the one or more energy storage devices (32, 34, 36) simultaneously from the first energy source (264) and the second energy source (266).
  3. 5
    The ESMS (11) of any preceding claim wherein the first energy source (264) is a rectified AC source.
  4. 6
    The ESMS (11) of any preceding claim wherein the second energy source (266) is one of a rectified AC source, a rectified DC source, and a DC source.
  5. 7
    The ESMS (11) of any preceding claim wherein the controller (46) is configured to pass electrical energy from the first energy port (476) to the second energy port (472) through a first DC electrical converter (478) of the at least one of the DC electrical converters (104, 106, 108), the first DC electrical converter (478) configured to step down the input DC voltage.
  6. 8
    The ESMS (11) of any preceding claim wherein the controller (46) is configured to pass the electrical energy simultaneously from the first energy port (476), through the first DC electrical converter (478), and to a second DC electrical converter (472) that is configured to step up an input voltage, and to a third energy port.
  7. 9
    The ESMS (11) of any preceding claim wherein at least one of the plurality of DC electrical converters (102) is a buck-boost converter.
  8. 10
    The ESMS (11) of any preceding claim wherein one of the energy storage devices (32, 34, 36) comprises one of an energy battery, a power battery, and an ultracapacitor.
  9. 11
    The ESMS (11) of any preceding claim comprising an electrical output from an internal combustion engine (502) coupled to an energy port of the ESMS (114).
  10. 12
    The ESMS (11) of any preceding claim comprising an internal combustion engine (ICE) (12) coupled to a transmission (14), wherein the transmission (14) is coupled to one or more drive wheels (24) of the vehicle drivetrain.
  11. 13
    The ESMS (11) of any preceding claim wherein the controller (46) is configured to:determine which of the plurality of energy ports (102) has one of the one or more energy storage devices (32, 34, 36) coupled thereto;and determine which of the plurality of energy ports (102) has an electrical charging system coupled thereto.
  12. 14
    The ESMS (11) of any preceding claim wherein the controller (46) is configured to simultaneously charge two of the one or more energy storage devices (32, 34, 36) by directing energy to go simultaneously to a first energy port and a second energy port of the plurality of energy ports (102).
  13. 15
    The ESMS (11) of any preceding claim wherein the controller (46) is configured to pass energy through two of the plurality of DC electrical converters such that one of the two DC electrical converters operates to step up a voltage applied thereto, and the other of the two DC electrical converters operates to step down a voltage applied thereto.