Patent · US11193467B2 · B2 · US
Power control apparatus
- (11) Publication number
- US11193467B2
- (21) Application number
- 16/336,852
- (22) Filing date
- 2017-09-27
- (30) Priority date
- 2016-09-30
- (43) Publication date
- 2021-12-07
- (45) Date of grant
- 2021-12-07
- (52) CPC
- F02N Starting of combustion engines; starting AIDS for such engines, not otherwise provided for: 11/087, 11/0859, 11/0862, 2011/0874, 2011/0881
- B60K Arrangement or mounting of propulsion units or of transmissions in vehicles; arrangement or mounting of plural diverse prime-movers in vehicles; auxiliary drives for vehicles; instrumentation or dashboards for vehicles; arrangements in connection with cooling, air intake, gas exhaust or fuel supply of propulsion units in vehicles: 6/26, 6/28, 6/46
- 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: 3/00, 50/16, 58/13
- B60R Vehicles, vehicle fittings, or vehicle parts, not otherwise provided for: 16/02, 16/033
- B60W Conjoint control of vehicle sub-units of different type or different function; control systems specially adapted for hybrid vehicles; road vehicle drive control systems for purposes not related to the control of a particular sub-unit: 10/08, 20/00, 20/13, 20/50
- H02H Emergency protective circuit arrangements: 1/0007, 3/08, 7/0833
- H02J Electric power networks; circuit arrangements or systems for supplying or distributing electric power; systems for storing electric energy: 7/00
- H02M Apparatus for conversion between AC and AC, between AC and DC, or between DC and DC, and for use with mains or similar power supply systems; conversion of DC or AC input power into surge output power; control or regulation thereof: 7/48
- H02P Control or regulation of electric motors, electric generators or dynamo-electric converters; controlling transformers, reactors or choke coils: 29/027, 29/028, 29/032
- Y02T Climate change mitigation technologies related to transportation: 10/70
- (73) Assignee
- DENSO CORP
- (54) Title
- Power control apparatus
- (57) Abstract
A power system with an electric rotating machine providing an operation of power generation and power running, a switching circuit providing electricity for each phase, by switching a plurality switching elements ON/OFF by the electric rotating machine, a battery section connected to the switching circuit, and switches on electrical pathway, between the switching circuit and the battery section. A power shutoff section to shutoff an electrical pathway when an overcurrent flows in, at least one of the electric rotating machine and the switching circuit. Power control devices are provided with an overcurrent determination which determines that an overcurrent has occurred, based on results of, a first determination that determines a current flow has increased to a predetermined over current threshold, and a second determination that determines that current flow has decreased thereafter, and a switch control that switches the switches open based on a determined result of the overcurrent determination.
- Full text
- View on Google Patents
Claims (15)
- A power control apparatus comprising an electric rotating machine that selectively performs an operation of power generation and an operation of power running; a switching circuit that provides electricity for each phase of a plurality of phases of the electric rotating machine, by operably switching a plurality of switching elements between an ON state and an OFF state; a battery section electrically connected to the switching circuit; switches mounted on an electrical pathway between the switching circuit and the battery section; a first electrical load that is connected to the electrical pathway between the battery section and the switching circuit; and a control system including at least one processor programmed to execute instructions that cause the processor to: shutoff the electrical pathway when an overcurrent occurs in at least one of the electric rotating machine and the switching circuit, determine that the overcurrent has occurred, based on a result of a first determination which determines that, in the switching circuit, a current flow has increased to an overcurrent threshold, and a second determination determining that the current flow has decreased, after the increase to the overcurrent threshold, and open the switches based on the result of the first determination and the second determination, wherein the instructions further cause the at least one processor to: determine that the current flow has decreased to a second threshold that is smaller than the overcurrent threshold, after determining that the current flow has increased to the overcurrent threshold, open the switches after a predetermined time period has passed, the predetermined time period being from a time point at which the current flow has decreased to the second threshold until the predetermined time period has passed, when the at least one processor has determined that the overcurrent has occurred, and perform a pre-process of a power shutoff, of the first electrical load, from the time point at which the current flow has decreased to the second threshold, until the predetermined time period has passed.
- The power control apparatus according to claim 1, wherein a first battery and a second battery form the battery section; the power control apparatus further comprises: a second electrical load that is connected to a second electrical pathway allowing a power supply from the battery section; bypass pathways provided on the second electrical pathway, the bypass pathways electrically connected to the first battery and the second electrical load, providing a bypass over the switches, and having bypass switches; and the instructions further cause the at least one processor to close the bypass from the time point at which the current flow has decreased to the second threshold until the predetermined time period has passed.
- The power control apparatus according to claim 1, wherein the instructions further cause the at least one processor to: determine that the current flow has re-increased after the decrease, when the occurrence of the overcurrent is determined and open the switches when the overcurrent has occurred and the re-increase of the current flow is determined.
- The power control apparatus according to claim 1, wherein the at least one processor includes a first processor and a second processor, the power control apparatus further comprising an inverter as a first control device including the first processor, the first control device controlling the operation of the power generation and the operation of the power running of the electric rotating machine; and a second control device including the second processor, the second processor receiving signals from the first control device, and the second processor executing instructions to cause charging of the battery section by opening and closing the switches, wherein the first control device is operable to transmit, to the second control device, a determination signal that indicates a determination result of the overcurrent, and the second processor executes instructions to open the switches based on the determination signal that is transmitted from the first control device.
- The power control apparatus according to claim 4, wherein the at least one processor further includes a third processor, the power control apparatus further comprising a third control device including the third processor, the third control device being connected to the first control device and the second control device, so that communication is operable between the first control device, the second control device and the third control device, and which is provided as a host device of the first control device and the second control device, wherein the first control device transmits the determination signal to the second control device and the third control device, the third control device transmits a signal, to the second control device, instructing forcible opening of the switches of the second control device, based on the determination signal that is received from the first control device, and the second processor executes instructions to cause forcible opening of the switches based on the determination signal received from the first control device and the signal instructing the forcible opening of the switches received from the third control device.
- The power control apparatus according to claim 1, further comprising: a lead section having a narrow portion that is narrower than other portions of the lead section, the lead section connected with a mounting position of the switching elements.
- The power control apparatus according to claim 3, wherein a first battery and a second battery form the battery section; the power control apparatus further comprises: a second electrical load that is connected to a second electrical pathway allowing a power supply from the battery section; bypass pathways provided on the second electrical pathway, the bypass pathways electrically connected to the first battery and the second electrical load, providing a bypass over the switches, and having bypass switches; and the instructions further cause the at least one processor to close the bypass from the time point at which the current flow has decreased to the second threshold until the predetermined time period has passed.
- The power control apparatus according to claim 2, wherein the at least one processor includes a first processor and a second processor, the power control apparatus further comprising an inverter as a first control device including the first processor, the first control device controlling the operation of the power generation and the operation of the power running of the electric rotating machine; and a second control device including the second processor, the second processor receiving signals from the first control device, and the second processor executing instructions to cause charging of the battery section by opening and closing the switches, wherein the first control device is operable to transmit, to the second control device, a determination signal that indicates a determination result of the overcurrent, and the second processor executes instructions to open the switches based on the determination signal that is transmitted from the first control device.
- The power control apparatus according to claim 3, further comprising an inverter as a first control device including a first processor, the first control device controlling the operation of the power generation and the operation of the power running of the electric rotating machine; and a second control device including a second processor, the second processor receiving signals from the first control device, and the second processor executing instructions to cause charging of the battery section by opening and closing the switches, wherein the first control device is operable to transmit, to the second control device, a determination signal that indicates a determination result of the overcurrent, and the second processor executes instructions to open the switches based on the determination signal that is transmitted from the first control device.
- The power control apparatus according to claim 6, wherein the at least one processor includes a first processor and a second processor, the power control apparatus further comprising an inverter as a first control device including the first processor, the first control device controlling the operation of the power generation and the operation of the power running of the electric rotating machine; and a second control device including the second processor, the second processor receiving signals from the first control device, and the second processor executing instructions to cause charging of the battery section by opening and closing the switches, wherein the first control device is operable to transmit, to the second control device, a determination signal that indicates a determination result of the overcurrent, and the second processor executes instructions to open the switches based on the determination signal that is transmitted from the first control device.
- The power control apparatus according to claim 7, wherein the at least one processor includes a first processor and a second processor, the power control apparatus further comprising an inverter as a first control device including the first processor, the first control device controlling the operation of the power generation and the operation of the power running of the electric rotating machine; and a second control device including the second processor, the second processor receiving signals from the first control device, and the second processor executing instructions to cause charging of the battery section by opening and closing the switches, wherein the first control device is operable to transmit, to the second control device, a determination signal that indicates a determination result of the overcurrent, and the second processor executes instructions to open the switches based on the determination signal that is transmitted from the first control device.
- The power control apparatus according to claim 2, further comprising: a lead section having a narrow portion that is narrower than other portions of the lead section, the lead section connected with a mounting position of the switching elements.
- The power control apparatus according to claim 4, further comprising: a lead section having a narrow portion that is narrower than other portions of the lead section, the lead section connected with a mounting position of the switching elements.
- The power control apparatus according to claim 5, further comprising: a lead section having a narrow portion that is narrower than other portions of the lead section, the lead section connected with a mounting position of the switching elements.
- A power control apparatus comprising: a control system including at least one processor programmed to execute instructions that cause the processor to: shutoff an electrical pathway when an overcurrent occurs in at least one of an electric rotating machine and a switching circuit, determine that the overcurrent has occurred, based on a first determination that, in the switching circuit, a current flow has increased to an overcurrent threshold, and a second determination determining that the current flow has decreased after the increase to the overcurrent threshold; and open switches provided on the electrical pathway based on results of the first determination and the second determination, wherein the instructions further cause the at least one processor to: determine that the current flow has decreased to a second threshold that is smaller than the overcurrent threshold, after determining that the current flow has increased to the overcurrent threshold, open the switches after a predetermined time period has passed from a time point at which the current flow has decreased to the second threshold after determining that the overcurrent has occurred, and perform a pre-process of a power shutoff, of a first electrical load connected to the electrical pathway, from the time point at which the current flow has decreased to the second threshold, until the predetermined time period has passed.
Citations (42)
- JP2010130768A
- JP2015149849A
- US10411558B2
- US10800394B2
- US10921374B2
- US2005286181A1
- US2010127663A1
- US2010289439A1
- US2011025251A1
- US2011128662A1
- US2011148426A1
- US2011298276A1
- US2012032660A1
- US2013088803A1
- US2013181515A1
- US2013257062A1
- US2013257319A1
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- US2014240872A1
- US2014265558A1
- US2015239411A1
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- US2017125995A1
- US2017338755A1
- US2018238968A1
- US2019190512A1
- US2019389449A1
- US2019390641A1
- US2020309079A1
- US2021184456A1
- US4789817A
- US8159176B2
- US8502409B2
- US8598837B2
- US8614872B2
- US8829710B2
- US8994317B2
- US9188101B2
- US9242611B2
- US9487089B2
- US9647604B2
- US9855905B2
Record as JSON
{
"publication_number": "US11193467B2",
"country": "US",
"kind": "B2",
"title": "Power control apparatus",
"abstract": "A power system with an electric rotating machine providing an operation of power generation and power running, a switching circuit providing electricity for each phase, by switching a plurality switching elements ON/OFF by the electric rotating machine, a battery section connected to the switching circuit, and switches on electrical pathway, between the switching circuit and the battery section. A power shutoff section to shutoff an electrical pathway when an overcurrent flows in, at least one of the electric rotating machine and the switching circuit. Power control devices are provided with an overcurrent determination which determines that an overcurrent has occurred, based on results of, a first determination that determines a current flow has increased to a predetermined over current threshold, and a second determination that determines that current flow has decreased thereafter, and a switch control that switches the switches open based on a determined result of the overcurrent determination.",
"claims": [
"1. A power control apparatus comprising an electric rotating machine that selectively performs an operation of power generation and an operation of power running; a switching circuit that provides electricity for each phase of a plurality of phases of the electric rotating machine, by operably switching a plurality of switching elements between an ON state and an OFF state; a battery section electrically connected to the switching circuit; switches mounted on an electrical pathway between the switching circuit and the battery section; a first electrical load that is connected to the electrical pathway between the battery section and the switching circuit; and a control system including at least one processor programmed to execute instructions that cause the processor to: shutoff the electrical pathway when an overcurrent occurs in at least one of the electric rotating machine and the switching circuit, determine that the overcurrent has occurred, based on a result of a first determination which determines that, in the switching circuit, a current flow has increased to an overcurrent threshold, and a second determination determining that the current flow has decreased, after the increase to the overcurrent threshold, and open the switches based on the result of the first determination and the second determination, wherein the instructions further cause the at least one processor to: determine that the current flow has decreased to a second threshold that is smaller than the overcurrent threshold, after determining that the current flow has increased to the overcurrent threshold, open the switches after a predetermined time period has passed, the predetermined time period being from a time point at which the current flow has decreased to the second threshold until the predetermined time period has passed, when the at least one processor has determined that the overcurrent has occurred, and perform a pre-process of a power shutoff, of the first electrical load, from the time point at which the current flow has decreased to the second threshold, until the predetermined time period has passed.",
"2. The power control apparatus according to claim 1, wherein a first battery and a second battery form the battery section; the power control apparatus further comprises: a second electrical load that is connected to a second electrical pathway allowing a power supply from the battery section; bypass pathways provided on the second electrical pathway, the bypass pathways electrically connected to the first battery and the second electrical load, providing a bypass over the switches, and having bypass switches; and the instructions further cause the at least one processor to close the bypass from the time point at which the current flow has decreased to the second threshold until the predetermined time period has passed.",
"3. The power control apparatus according to claim 1, wherein the instructions further cause the at least one processor to: determine that the current flow has re-increased after the decrease, when the occurrence of the overcurrent is determined and open the switches when the overcurrent has occurred and the re-increase of the current flow is determined.",
"4. The power control apparatus according to claim 1, wherein the at least one processor includes a first processor and a second processor, the power control apparatus further comprising an inverter as a first control device including the first processor, the first control device controlling the operation of the power generation and the operation of the power running of the electric rotating machine; and a second control device including the second processor, the second processor receiving signals from the first control device, and the second processor executing instructions to cause charging of the battery section by opening and closing the switches, wherein the first control device is operable to transmit, to the second control device, a determination signal that indicates a determination result of the overcurrent, and the second processor executes instructions to open the switches based on the determination signal that is transmitted from the first control device.",
"5. The power control apparatus according to claim 4, wherein the at least one processor further includes a third processor, the power control apparatus further comprising a third control device including the third processor, the third control device being connected to the first control device and the second control device, so that communication is operable between the first control device, the second control device and the third control device, and which is provided as a host device of the first control device and the second control device, wherein the first control device transmits the determination signal to the second control device and the third control device, the third control device transmits a signal, to the second control device, instructing forcible opening of the switches of the second control device, based on the determination signal that is received from the first control device, and the second processor executes instructions to cause forcible opening of the switches based on the determination signal received from the first control device and the signal instructing the forcible opening of the switches received from the third control device.",
"6. The power control apparatus according to claim 1, further comprising: a lead section having a narrow portion that is narrower than other portions of the lead section, the lead section connected with a mounting position of the switching elements.",
"7. The power control apparatus according to claim 3, wherein a first battery and a second battery form the battery section; the power control apparatus further comprises: a second electrical load that is connected to a second electrical pathway allowing a power supply from the battery section; bypass pathways provided on the second electrical pathway, the bypass pathways electrically connected to the first battery and the second electrical load, providing a bypass over the switches, and having bypass switches; and the instructions further cause the at least one processor to close the bypass from the time point at which the current flow has decreased to the second threshold until the predetermined time period has passed.",
"8. The power control apparatus according to claim 2, wherein the at least one processor includes a first processor and a second processor, the power control apparatus further comprising an inverter as a first control device including the first processor, the first control device controlling the operation of the power generation and the operation of the power running of the electric rotating machine; and a second control device including the second processor, the second processor receiving signals from the first control device, and the second processor executing instructions to cause charging of the battery section by opening and closing the switches, wherein the first control device is operable to transmit, to the second control device, a determination signal that indicates a determination result of the overcurrent, and the second processor executes instructions to open the switches based on the determination signal that is transmitted from the first control device.",
"9. The power control apparatus according to claim 3, further comprising an inverter as a first control device including a first processor, the first control device controlling the operation of the power generation and the operation of the power running of the electric rotating machine; and a second control device including a second processor, the second processor receiving signals from the first control device, and the second processor executing instructions to cause charging of the battery section by opening and closing the switches, wherein the first control device is operable to transmit, to the second control device, a determination signal that indicates a determination result of the overcurrent, and the second processor executes instructions to open the switches based on the determination signal that is transmitted from the first control device.",
"10. The power control apparatus according to claim 6, wherein the at least one processor includes a first processor and a second processor, the power control apparatus further comprising an inverter as a first control device including the first processor, the first control device controlling the operation of the power generation and the operation of the power running of the electric rotating machine; and a second control device including the second processor, the second processor receiving signals from the first control device, and the second processor executing instructions to cause charging of the battery section by opening and closing the switches, wherein the first control device is operable to transmit, to the second control device, a determination signal that indicates a determination result of the overcurrent, and the second processor executes instructions to open the switches based on the determination signal that is transmitted from the first control device.",
"11. The power control apparatus according to claim 7, wherein the at least one processor includes a first processor and a second processor, the power control apparatus further comprising an inverter as a first control device including the first processor, the first control device controlling the operation of the power generation and the operation of the power running of the electric rotating machine; and a second control device including the second processor, the second processor receiving signals from the first control device, and the second processor executing instructions to cause charging of the battery section by opening and closing the switches, wherein the first control device is operable to transmit, to the second control device, a determination signal that indicates a determination result of the overcurrent, and the second processor executes instructions to open the switches based on the determination signal that is transmitted from the first control device.",
"12. The power control apparatus according to claim 2, further comprising: a lead section having a narrow portion that is narrower than other portions of the lead section, the lead section connected with a mounting position of the switching elements.",
"13. The power control apparatus according to claim 4, further comprising: a lead section having a narrow portion that is narrower than other portions of the lead section, the lead section connected with a mounting position of the switching elements.",
"14. The power control apparatus according to claim 5, further comprising: a lead section having a narrow portion that is narrower than other portions of the lead section, the lead section connected with a mounting position of the switching elements.",
"15. A power control apparatus comprising: a control system including at least one processor programmed to execute instructions that cause the processor to: shutoff an electrical pathway when an overcurrent occurs in at least one of an electric rotating machine and a switching circuit, determine that the overcurrent has occurred, based on a first determination that, in the switching circuit, a current flow has increased to an overcurrent threshold, and a second determination determining that the current flow has decreased after the increase to the overcurrent threshold; and open switches provided on the electrical pathway based on results of the first determination and the second determination, wherein the instructions further cause the at least one processor to: determine that the current flow has decreased to a second threshold that is smaller than the overcurrent threshold, after determining that the current flow has increased to the overcurrent threshold, open the switches after a predetermined time period has passed from a time point at which the current flow has decreased to the second threshold after determining that the overcurrent has occurred, and perform a pre-process of a power shutoff, of a first electrical load connected to the electrical pathway, from the time point at which the current flow has decreased to the second threshold, until the predetermined time period has passed."
],
"cpc": [
"F02N 11/087",
"B60K 6/26",
"B60K 6/28",
"B60K 6/46",
"B60L 3/00",
"B60L 50/16",
"B60L 58/13",
"B60R 16/02",
"B60R 16/033",
"B60W 10/08",
"B60W 20/00",
"B60W 20/13",
"B60W 20/50",
"F02N 11/0859",
"F02N 11/0862",
"F02N 2011/0874",
"F02N 2011/0881",
"H02H 1/0007",
"H02H 3/08",
"H02H 7/0833",
"H02J 7/00",
"H02M 7/48",
"H02P 29/027",
"H02P 29/028",
"H02P 29/032",
"Y02T 10/70"
],
"assignees": [
"DENSO CORP"
],
"filing_date": "2017-09-27",
"publication_date": "2021-12-07",
"grant_date": "2021-12-07",
"priority_date": "2016-09-30",
"application_number": "US-201716336852-A",
"family_id": "61763435",
"citations": [
"JP2010130768A",
"JP2015149849A",
"US10411558B2",
"US10800394B2",
"US10921374B2",
"US2005286181A1",
"US2010127663A1",
"US2010289439A1",
"US2011025251A1",
"US2011128662A1",
"US2011148426A1",
"US2011298276A1",
"US2012032660A1",
"US2013088803A1",
"US2013181515A1",
"US2013257062A1",
"US2013257319A1",
"US2013300193A1",
"US2014240872A1",
"US2014265558A1",
"US2015239411A1",
"US2016049896A1",
"US2017125995A1",
"US2017338755A1",
"US2018238968A1",
"US2019190512A1",
"US2019389449A1",
"US2019390641A1",
"US2020309079A1",
"US2021184456A1",
"US4789817A",
"US8159176B2",
"US8502409B2",
"US8598837B2",
"US8614872B2",
"US8829710B2",
"US8994317B2",
"US9188101B2",
"US9242611B2",
"US9487089B2",
"US9647604B2",
"US9855905B2"
]
}
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