Battery rack and energy storage system
A battery rack includes a plurality of battery modules arranged in a vertical direction, a rack case including a receiving part having an internal space that is open to a side to receive each of the plurality of battery modules, and a movement part configured to discharge the battery module having a rise in internal temperature above a predetermined temperature, and a tray configured to receive the discharged battery module.
1 . A battery rack comprising:
a plurality of battery modules arranged in a vertical direction;
a rack case including an internal space having an open side to receive each of the plurality of battery modules;
a movement part configured to discharge a first battery module of the plurality of battery modules having a rise in internal temperature above a predetermined temperature; and
a tray configured to receive the first battery module when the first battery module is discharged to outside the rack case, wherein the tray comprises:
a base plate;
a side wall extending upwardly from the base plate; and
a cover member having a guide wall extending upward from the side wall of the tray when the tray is taken out of the rack case and configured to guide a fall of the first battery module when the first battery module is discharged to outside the rack case,
wherein the cover member is configured to rotate from a retracted position to an extended position when the tray is discharged to outside the rack case.
2 . The battery rack according to claim 1 , wherein the tray includes a cooling material configured to cool the first battery module received in the tray when the first battery module is discharged to outside the rack case.
3 . The battery rack according to claim 1 , wherein each battery module of the plurality of battery modules includes a temperature sensor to measure a temperature of the battery module, and a module BMS configured to transmit temperature information of the temperature sensor via wireless communication,
wherein the rack case includes a rack BMS configured to wirelessly communicate with each module BMS, and
wherein the rack BMS is configured to control the movement part to discharge the first battery module when receiving the temperature information from the module BMS of the first battery module above the predetermined temperature.
4 . The battery rack according to claim 1 , wherein the movement part includes:
a wheel configured to rotate to move the first battery module to the open side of the internal space; and
an electric motor connected to a rotation axis of the wheel to rotate the wheel.
5 . The battery rack according to claim 1 , wherein the movement part includes:
a conveyor belt configured to move the first battery module to the open side of a receiving part;
a driving roller to drive the conveyor belt; and
an electric motor connected to the driving roller.
6 . The battery rack according to claim 1 , wherein the rack case is configured to: receive the tray in a lower part of the internal space of the rack case, and
further comprises a transfer means to transfer the tray to outside the rack case to receive the first battery module when the first battery module is discharged to the outside.
7 . The battery rack according to claim 1 , wherein each battery module of the plurality of battery modules includes a cell assembly including a plurality of secondary batteries, and an external input/output terminal electrically connected to the cell assembly,
wherein the battery rack further includes a plurality of module busbars configured to electrically connect the external input/output terminals to each other and elastically deform by contact of the external input/output terminals, and
wherein each external input/output terminal is respectively interposed between the plurality of module busbars.
8 . The battery rack according to claim 7 , further comprising:
a support configured to fix the plurality of module busbars to an inner surface of the support.
9 . An energy storage system comprising at least one battery rack according to claim 1 .
10 . The battery rack according to claim 1 , wherein the cover member comprises:
a support rod capable of rotating between a retracted position and an extended position; and
wherein the guide wall extends between the support rod and the tray.
11 . The battery rack according to claim 10 , wherein the support rod is connected to the tray to allow a rotational movement.