Charging and discharging device to increase battery temperature by controlling ripple current

US9520733B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9520733-B2
Application numberUS-201113978426-A
CountryUS
Kind codeB2
Filing dateJan 7, 2011
Priority dateJan 7, 2011
Publication dateDec 13, 2016
Grant dateDec 13, 2016

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A charging and discharging device includes a switching circuit, an input of which is connected to a power supply, the switching circuit adjusting an output current IB to a power storing unit connected to an output of the switching circuit, and a control unit configured to generate an ON/OFF signal DGC to the switching circuit. The control unit includes a temperature-rise control unit configured to separately generate, based on a signal BTMP equivalent to the temperature of the power storing unit, a control signal FC for adjusting a ripple component of the output current IB and a control signal OFS for adjusting a non-ripple component of the output current IB and generates the ON/OFF signal DGC based on the control signal FC and the control signal OFS and outputs the ON/OFF signal DGC to the switching circuit.

First claim

Opening claim text (preview).

The invention claimed is: 1. A charging and discharging device mounted on an electric vehicle, the charging and discharging device comprising: a switching circuit, an input of which is connected to a power supply, the switching circuit adjusting an output current to a power storing unit connected to an output of the switching circuit; and a control unit configured to generate an ON/OFF signal to the switching circuit, wherein the control unit includes a temperature-rise control unit configured to generate, based on a signal equivalent to a temperature of the power storing unit and a signal equivalent to speed of the electric vehicle, a control signal for adjusting a ripple component of the output current or a control signal for adjusting a time varying component of the output current, the control unit generating the ON/OFF signal based on the control signal and outputting the ON/OFF signal to the switching circuit, wherein the temperature-rise control unit comprises at least one of: a current-limiting-signal generating unit configured to generate a current limiting signal for adjusting magnitude of a non-ripple component of the output current, based on a maximum value and a minimum value of the output current including a ripple component of a detection signal of the output current; and a voltage limiting signal for adjusting magnitude of the non-ripple component of the output current, based on a maximum value and a minimum value of an output voltage including a ripple component of a detection signal of the output voltage. 2. A charging and discharging device comprising: a switching circuit, an input of which is connected to a power supply, the switching circuit adjusting an output current to a power storing unit connected to an output of the switching circuit; and a control unit configured to generate an ON/OFF signal to the switching circuit, the control unit including a temperature-rise control unit configured to output, based on a signal equivalent to a temperature of the power storing unit, a control signal for adjusting a ripple component of the output current or a control signal for adjusting a time varying component of the output current, and the control unit generating the ON/OFF signal based on the control signal and outputting the ON/OFF signal to the switching circuit, wherein the power storing unit includes a plurality of banks formed by combining an arbitrary plurality of power storage elements, a plurality of opening and closing units respectively connected to the plurality of banks and capable of connecting and disconnecting the switching circuit to selectively connect two or more of the plurality of banks and the switching circuit, and the control unit includes a temperature-rise selecting unit configured to output, to the opening and closing units, a selection control signal for connecting a predetermined two of the banks to the switching circuit and enabling temperature-rise control; and the temperature-rise control unit comprises at least one of: a current-limiting-signal generating unit configured to generate a current limiting signal for adjusting magnitude of a non-ripple component of the output current, based on a maximum value and a minimum value of the output current including a ripple component of a detection signal of the output current, and a voltage limiting signal for adjusting magnitude of the non-ripple component of the output current, based on a maximum value and a minimum value of an output voltage including a ripple component of a detection signal of the output voltage. 3. A charging and discharging device comprising: a switching circuit, an input of which is connected to a power supply, the switching circuit adjusting an output current to a power storing unit connected to an output of the switching circuit; and a control unit configured to generate an ON/OFF signal to the switching circuit, wherein the control unit includes: a temperature-rise control unit configured to separately generate, based on at least a signal equivalent to a temperature of the power storing unit, a first control signal for varying a magnitude of a ripple component of the output current to raise the temperature of the power storing unit and a second control signal for varying a magnitude of a non-ripple component of the output current, wherein the temperature-rise control unit includes a current-limiting-signal generating unit configured to generate a current limiting signal for adjusting magnitude of the non-ripple component of the output current, based on a maximum value and a minimum value of the output current including a ripple component of a detection signal of the output current; and a PWM-pulse generating unit configured to generate the ON/OFF signal based on the first control signal and the second control signal and outputting the ON/OFF signal to the switching circuit. 4. The charging and discharging device according to claim 3 , wherein the temperature-rise control unit includes a carrier-frequency setting unit configured to generate the first control signal based on at least the signal equivalent to the temperature of the power storing unit. 5. The charging and discharging device according to claim 3 , wherein the temperature-rise control unit includes an offset-signal generating unit configured to generate an offset signal for offsetting a non-ripple component of the output current to a side for discharging the power storing unit, based on a signal indicating a charging amount of the power storing unit is larger than a predetermined value. 6. The charging and discharging device according to claim 3 , wherein the temperature-rise control unit includes an offset-signal generating unit configured to generate an offset signal for offsetting a non-ripple component of the output current to a side for charging the power storing unit, based on a signal indicating a charging amount of the power storing unit is smaller than a predetermined value. 7. The charging and discharging device according to claim 3 , wherein the temperature-rise control unit includes a voltage-limiting-signal generating unit configured to generate a voltage limiting signal for adjusting magnitude of the non-ripple component of the output current, based on a maximum value and a minimum value of an output voltage including a ripple component of a detection signal of the output voltage. 8. The charging and discharging device according to claim 3 , wherein the temperature-rise control unit generates the first control signal for maintaining polarity of the output current including the ripple component on a side for discharging the power storing unit, when the signal equivalent to the temperature of the power storing unit is smaller than a predetermined value. 9. The charging and discharging device according to claim 3 , wherein the temperature-rise control unit generates the first control signal and the second control signal to reduce the magnitude of the output current including the ripple component to be equal to or smaller than a predetermined value. 10. The charging and discharging device according to claim 3 , wherein the temperature-rise control unit adjusts magnitude of the ripple component based on a command value of the output current. 11. The charging and discharging device according to claim 3 , wherein the temperature-rise control unit forcibly outputs the first control signal or the second control signal based on a switching signal received from an external source. 12. A charging and discharging device comprising: a switching circuit, an input of which is connected to a power supply, the switching circuit adjusting an output current to a power storing unit connected t

Assignees

Inventors

Classifications

  • responding to battery ageing, e.g. to the number of charging cycles or the state of health [SoH] · CPC title

  • Battery or charger load switching, e.g. concurrent charging and load supply (H02J7/50 takes precedence) · CPC title

  • Batteries in motive systems, e.g. vehicle, ship, plane · CPC title

  • Li-accumulators · CPC title

  • by controlling the electric load · CPC title

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What does patent US9520733B2 cover?
A charging and discharging device includes a switching circuit, an input of which is connected to a power supply, the switching circuit adjusting an output current IB to a power storing unit connected to an output of the switching circuit, and a control unit configured to generate an ON/OFF signal DGC to the switching circuit. The control unit includes a temperature-rise control unit configured…
Who is the assignee on this patent?
Kitanaka Hidetoshi, Yoshioka Shoji, Hatanaka Keita, and 1 more
What technology area does this patent fall under?
Primary CPC classification H02J7/0068. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Dec 13 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).