Patent · US2015171642A1 · A1 · US
Battery control device
- (11) Publication number
- US2015171642A1
- (21) Application number
- 14/402,892
- (22) Filing date
- 2012-05-24
- (30) Priority date
- 2012-05-24
- (43) Publication date
- 2015-06-18
- (52) CPC
- H01M Processes or means, e.g. batteries, for the direct conversion of chemical energy into electrical energy: 10/425, 10/482, 2010/4271, 2010/4278
- H02J Electric power networks; circuit arrangements or systems for supplying or distributing electric power; systems for storing electric energy: 7/0021, 7/007, 7/54, 7/82
- H04Q Selecting: 2209/10, 2209/30, 2209/883, 9/00
- Y02E Reduction of greenhouse gas [ghg] emissions, related to energy generation, transmission or distribution: 60/10
- Y02T Climate change mitigation technologies related to transportation: 10/70
- (73) Assignee
- KATO SHINYA; MACHIDA AKIHIRO; YAMAUCHI TATSUMI; HITACHI AUTOMOTIVE SYSTEMS LTD
- (54) Title
- Battery control device
- (57) Abstract
A battery control device having a plurality of cell controllers which are provided corresponding to respective cell groups, are mutually connected in accordance with a predetermined communication order, and detect a state of each unit battery cell of a corresponding cell group, a control circuit which starts or stops a plurality of cell controllers, transmits a communication signal to the highest-order cell controller in a communication order among the plurality of cell controllers, and receives the communication signal from the lowest-order cell controller in the communication order among the plurality of cell controllers, and a first insulating element provided between the control circuit and the highest-order cell controller.
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Claims (1)
- A battery control device that controls a battery module in which a plurality of cell groups including a plurality of connected unit battery cells are connected, comprising: a plurality of cell controllers which are provided corresponding to the respective cell groups, are mutually connected in accordance with a predetermined communication order, and detect a state of each unit battery cell of a corresponding cell group; a control circuit which starts or stops the plurality of cell controllers, transmits a communication signal to the highest-order cell controller in the communication order among the plurality of cell controllers, and receives the communication signal from the lowest-order cell controller in the communication order among the plurality of cell controllers; and a first insulating element provided between the control circuit and the highest-order cell controller, wherein the control circuit stops the plurality of cell controllers and then outputs the communication signal to the first insulating element, when at least one of the plurality of cell controllers operates, the first insulating element passes the communication signal and outputs the communication signal to the highest-order cell controller, and when all the plurality of cell controllers stop, the first insulating element interrupts the communication signal, when the communication signal is transmitted from the control circuit or the cell controller higher by one order in the communication order to each of the plurality of cell controllers, each of the plurality of cell controllers starts when it is during stopping and maintains the operation state when it is during operation, each of the plurality of cell controllers transfers the communication signal to the cell controller lower by one order in the communication order or the control circuit, and the control circuit diagnoses abnormal operation of the plurality of cell controllers based on whether or not the control circuit receives the communication signal from the lowest-order cell controller. 2. The battery control device according to claim 1, wherein when at least one of the plurality of cell controllers operates, the highest-order cell controller outputs an insulating element operation signal for operating the first insulating element, and the first insulating element is operated by receiving the insulating element operation signal from the highest-order cell controller, passes the communication signal from the control circuit, and outputs the communication signal to the highest-order cell controller. 3. The battery control device according to claim 2, wherein each of the plurality of cell controllers except for the highest-order cell controller outputs a start signal for operating a cell controller higher by one order in the communication order during operation, and the highest-order cell controller is operated by receiving the start signal from a cell controller lower by one order in the communication order and outputs the insulating element operation signal. 4. The battery control device according to claim 3, wherein the control circuit stops outputting the start signal to the lowest-order cell controller and stops the plurality of cell controllers. 5. The battery control device according to claim 1, further comprising a second insulating element provided between the control circuit and the lowest-order cell controller, wherein the lowest-order cell controller outputs an insulating element operation signal for operating the second insulating element during operation, and the second insulating element is operated by receiving the insulating element operation signal from the lowest-order cell controller, thereby passes the communication signal from the lowest-order cell controller, and outputs the communication signal to the control circuit. 6. The battery control device according to claim 1, wherein the plurality of cell controllers are divided into a plurality of blocks, the battery control device further comprising a common insulating element provided between two blocks adjacent to each other in the communication order, wherein the lowest-order cell controller in a block on the upper order side in the communication order in the adjacent two blocks and the highest-order cell controller in a block on the lower order side in the communication order in the adjacent two blocks each output an insulating element operation signal for operating the common insulating element during operation, and the common insulating element is operated by receiving the insulating element signal from the lowest-order cell controller in the block on the upper order side and the insulating element signal from the highest-order cell controller in the block on the lower order side, passes the communication signal from the lowest-order cell controller in the block on the upper order side, and outputs the communication signal to the highest-order cell controller in the block on the lower order side.
Citations (3)
- US2005242775A1
- US2011300415A1
- US5504415A
Record as JSON
{
"publication_number": "US2015171642A1",
"country": "US",
"kind": "A1",
"title": "Battery control device",
"abstract": "A battery control device having a plurality of cell controllers which are provided corresponding to respective cell groups, are mutually connected in accordance with a predetermined communication order, and detect a state of each unit battery cell of a corresponding cell group, a control circuit which starts or stops a plurality of cell controllers, transmits a communication signal to the highest-order cell controller in a communication order among the plurality of cell controllers, and receives the communication signal from the lowest-order cell controller in the communication order among the plurality of cell controllers, and a first insulating element provided between the control circuit and the highest-order cell controller.",
"claims": [
"1. A battery control device that controls a battery module in which a plurality of cell groups including a plurality of connected unit battery cells are connected, comprising: a plurality of cell controllers which are provided corresponding to the respective cell groups, are mutually connected in accordance with a predetermined communication order, and detect a state of each unit battery cell of a corresponding cell group; a control circuit which starts or stops the plurality of cell controllers, transmits a communication signal to the highest-order cell controller in the communication order among the plurality of cell controllers, and receives the communication signal from the lowest-order cell controller in the communication order among the plurality of cell controllers; and a first insulating element provided between the control circuit and the highest-order cell controller, wherein the control circuit stops the plurality of cell controllers and then outputs the communication signal to the first insulating element, when at least one of the plurality of cell controllers operates, the first insulating element passes the communication signal and outputs the communication signal to the highest-order cell controller, and when all the plurality of cell controllers stop, the first insulating element interrupts the communication signal, when the communication signal is transmitted from the control circuit or the cell controller higher by one order in the communication order to each of the plurality of cell controllers, each of the plurality of cell controllers starts when it is during stopping and maintains the operation state when it is during operation, each of the plurality of cell controllers transfers the communication signal to the cell controller lower by one order in the communication order or the control circuit, and the control circuit diagnoses abnormal operation of the plurality of cell controllers based on whether or not the control circuit receives the communication signal from the lowest-order cell controller. 2. The battery control device according to claim 1, wherein when at least one of the plurality of cell controllers operates, the highest-order cell controller outputs an insulating element operation signal for operating the first insulating element, and the first insulating element is operated by receiving the insulating element operation signal from the highest-order cell controller, passes the communication signal from the control circuit, and outputs the communication signal to the highest-order cell controller. 3. The battery control device according to claim 2, wherein each of the plurality of cell controllers except for the highest-order cell controller outputs a start signal for operating a cell controller higher by one order in the communication order during operation, and the highest-order cell controller is operated by receiving the start signal from a cell controller lower by one order in the communication order and outputs the insulating element operation signal. 4. The battery control device according to claim 3, wherein the control circuit stops outputting the start signal to the lowest-order cell controller and stops the plurality of cell controllers. 5. The battery control device according to claim 1, further comprising a second insulating element provided between the control circuit and the lowest-order cell controller, wherein the lowest-order cell controller outputs an insulating element operation signal for operating the second insulating element during operation, and the second insulating element is operated by receiving the insulating element operation signal from the lowest-order cell controller, thereby passes the communication signal from the lowest-order cell controller, and outputs the communication signal to the control circuit. 6. The battery control device according to claim 1, wherein the plurality of cell controllers are divided into a plurality of blocks, the battery control device further comprising a common insulating element provided between two blocks adjacent to each other in the communication order, wherein the lowest-order cell controller in a block on the upper order side in the communication order in the adjacent two blocks and the highest-order cell controller in a block on the lower order side in the communication order in the adjacent two blocks each output an insulating element operation signal for operating the common insulating element during operation, and the common insulating element is operated by receiving the insulating element signal from the lowest-order cell controller in the block on the upper order side and the insulating element signal from the highest-order cell controller in the block on the lower order side, passes the communication signal from the lowest-order cell controller in the block on the upper order side, and outputs the communication signal to the highest-order cell controller in the block on the lower order side."
],
"cpc": [
"H01M 10/425",
"H01M 10/482",
"H01M 2010/4271",
"H01M 2010/4278",
"H02J 7/0021",
"H02J 7/007",
"H02J 7/54",
"H02J 7/82",
"H04Q 2209/10",
"H04Q 2209/30",
"H04Q 2209/883",
"H04Q 9/00",
"Y02E 60/10",
"Y02T 10/70"
],
"assignees": [
"KATO SHINYA",
"MACHIDA AKIHIRO",
"YAMAUCHI TATSUMI",
"HITACHI AUTOMOTIVE SYSTEMS LTD"
],
"filing_date": "2012-05-24",
"publication_date": "2015-06-18",
"priority_date": "2012-05-24",
"application_number": "US-201214402892-A",
"family_id": "49623336",
"citations": [
"US2005242775A1",
"US2011300415A1",
"US5504415A"
]
}
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