CA2829248C

Energy storage system for hybrid electric vehicle

Abstract

An energy storage system comprising at least one energy storage module adapted to supply electrical energy to a hybrid vehicle. The energy storage module comprises an enclosure, at least one battery array located within the enclosure, and an energy storage controller module located within the enclosure and electrically connected to the battery array. The energy storage controller module is further connected to a hybrid control module of the hybrid vehicle by a low voltage connecter. A high voltage junction box is attached to a first end of the enclosure and having a plurality of high voltage connection terminals. At least one of the high voltage connection terminals is configured to receive a high voltage conductor connected between the energy storage module and an inverter of the hybrid vehicle. When multiple energy storage modules are used in conjunction, one module functions as a master module and one module functions as a slave module.

CA2829248C, drawing sheet 1
Sheet 1 of 48

Term

5.2 yearsleft in the term

Expires 7 December 2031.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

45 claims: 27 independent, 18 dependent

  1. 1
    81771275 CLAIMS:1. An energy storage system, comprising: at least one energy storage module adapted to supply electrical energy to a hybrid vehicle, the energy storage module comprising: a primary enclosure having a first end and a second end;at least one battery array located within the primary enclosure, the at least one battery array having a plurality of battery cells;a fan mounted to an exterior surface of the first end of the primary enclosure;a heat sink disposed on the exterior surface of the primary enclosure, the heat sink comprising: a plurality of fins, wherein the fan is operable to direct air across the fins and toward the second end of the primary enclosure;wherein the fins are disposed angularly outward in the direction of air flow with respect to a longitudinal axis of the primary enclosure, wherein the fins are arranged in a substantially symmetrical pattern with respect to the longitudinal axis of the primary enclosure, and wherein a height and a length of the fins generally increases from the first end toward the second end of the primary enclosure.
  2. 4
    The energy storage system as claimed in any one of claims 1 to 3, further comprising:an enclosing plate mounted exterior to the heat sink and defining an airflow cavity between the primary enclosure and the enclosing plate;wherein the enclosing plate directs air from the fan across the heat sink.
  3. 5
    The energy storage system as claimed in any one of claims 1 to 4, further comprising:a thermal pad disposed between the at least one battery array and an interior surface of the primary enclosure, the thermal pad being constructed of a thermally conductive and electrically insulating material.
  4. 6
    The energy storage system as claimed in any one of claims 1 to 5, wherein the primary enclosure is configured to be submersible.
  5. 7
    The energy storage system of any one of claims 1 to 6, comprising:a plurality of external terminals, the external terminals adapted to receive a corresponding plurality of external conductors;and a plug-in bussed electrical center;wherein the plug-in bussed electrical center is operable to electrically connect at least one of the plurality of external terminals to the battery array.
  6. 10
    The energy storage system as claimed in any one of claims 7 to 9, wherein the plug-in bussed electrical center further comprises a fuse.
  7. 11
    The energy storage system as claimed in any one of claims 7 to 10, wherein the plug-in bussed electrical center further comprises a high voltage sense connector.
  8. 12
    The energy storage system as claimed in any one of claims 7 to 11, wherein the plug-in bussed electrical center further comprises a low voltage connector.
  9. 13
    The energy storage system as claimed in any one of claims 7 to 12, wherein the plug-in bussed electrical center further comprises at least one high voltage contactor.
  10. 14
    The energy storage system of any one of claims 7 to 13, wherein the plug-in bussed electrical center comprises:a modular removable connector formed of electrically insulative material having a plurality of internal connecting terminals;wherein the plurality of internal connecting terminals are electrically connected to the at least one battery array by pluggable connectors;and wherein the modular removable connector electrically connects the plurality of external terminals to the plurality of internal connecting terminals.
  11. 17
    The energy storage system of any one of claims 1 to 16, further comprising:CA 2829248 2017-10-12 81771275 a thermistor assembly, comprising: a thermistor having a thermistor tip;a compliant material, the compliant material at least partially encasing the thermistor tip;and a clip, operably connected to the thermistor body: wherein the clip and the compliant material are operable to retain the thermistor tip against a battery cell of the at least one battery array to achieve thermal transfer from a battery cell to the thermistor.
  12. 20
    The energy storage system as claimed in any one of claims 17 to 19, wherein the thermistor is secured to the clip using an adhesive.
  13. 21
    The energy storage system as claimed in any one of claims 17 to 20, wherein the clip is formed to flex perpendicularly with respect to an outer surface of the battery cell, the outer surface in contact with the compliant material.
  14. 22
    The energy storage system of any one of claims 1 to 21, wherein the at least one battery array comprises:a voltage sense board;and a plurality of bus bars disposed within the voltage sense board, the bus bars connecting a positive terminal of a first battery cell in the array to a negative terminal of an adjacent second battery cell in the array;CA 2829248 2017-10-12 81771275 wherein the voltage sense board has missing final bus bars in designated locations.
  15. 26
    The energy storage system as claimed in any one of claims 22 to 25, wherein the electrical connection made by the missing final bus bar electrically connects two adjacent subgroups of battery cells.
  16. 27
    The energy storage system as claimed in any one of claims 22 to 26, wherein the adjacent subgroups are connected in series when the final bus bar is installed.
  17. 28
    The energy storage system of any one of claims 1 to 27, further comprising:a pressure relief panel disposed within the primary enclosure, the pressure relief panel operable to limit internal pressure of the primary enclosure,
  18. 32
    The energy storage system as claimed in any one of claims 28 to 31, wherein the pressure relief panel and compliant seal are held against the vent opening by a bracket in conjunction with the at least one spring, the bracket being coupled to the primary enclosure with the spring being disposed between the bracket and the pressure relief panel.
  19. 35
    The energy storage system of any one of claims 1 to 34, further comprising:a plurality of parallel side rails, the side rails having upper and lower rail mounting holes at each end of the side rails;a plurality of battery cells of the at least one battery array positioned along the side rails;a plurality of end plates positioned substantially perpendicular to the side rails, each plate having a plurality of plate mounting flanges;and a plurality of mounting pins;CA 2829248 2017-10-12 81771275 wherein the end plates are secured to the battery array by the plurality of mounting pins positioned adjacent to the plate mounting flanges, and the plurality of mounting pins are inserted through the upper and lower rail mounting holes.
  20. 38
    The energy storage system as claimed in any one of claims 35 to 37, wherein the battery array has two side rails.
  21. 39
    The energy storage system as claimed in any one of claims 35 to 38, wherein the plurality of side rails comprise trusses.
  22. 40
    The energy storage system as claimed in any one of claims 35 to 39, wherein a mounting pin is also inserted through a compression limiter.
  23. 41
    The energy storage system as claimed in any one of claims 35 to 40, wherein the battery array further comprises:at least one battery retainer formed of an insulating material and disposed between two adjacent battery cells, the at least one battery retainer having a sufficient thickness to limit thermal transfer between the adjacent battery cells to a level which prevents a first one of the adjacent battery cells from venting when a second one of the adjacent battery cells vents.
  24. 42
    The energy storage system as claimed in any one of claims 35 to 41, wherein the end plates are secured between the mounting pins and the plurality of battery cells.
  25. 43
    The energy storage system as claimed in any one of claims 35 to 42, wherein at least one of the plurality of side rails comprises a channel for securing the battery cells between opposing side rails. CA 2829248 2017-10-12 81771275
  26. 44
    The energy storage system as claimed in any one of claims 35 to 43, further comprising:side rails having an upper side rail flange and a lower side rail flange;wherein the battery cells are secured between the upper and lower side rail 5 flanges, and the rail mounting holes pass through the upper and lower side rail flanges.
  27. 45
    The energy storage system as claimed in any one of claims 35 to 44, wherein an insulating liner is positioned between one or more of the plurality of parallel side rails and at least one of the battery cells. CA 2829248 2017-10-12
Independent claims27