Control system for secondary battery, control circuit, and vehicle using the same
A control system for a secondary battery which is less affected by the ambient temperature by performing temperature control of the secondary battery is provided. A control system for a secondary battery which is less affected by the ambient temperature and in which a plurality of kinds of secondary batteries are used for temperature control is achieved and mounted on a vehicle. Specifically, when the ambient temperature is low, some of second secondary batteries are heated by self-heating of a first secondary battery. After the second secondary batteries are sufficiently heated, the rest of the second secondary batteries are heated in stages by self-heating of the some of the second secondary batteries whose temperature has been increased. Whether the some or all of the second secondary batteries are sufficiently heated can be confirmed if the temperatures of a plurality of temperature sensors provided in the second secondary batteries are within the operating temperature range of the second secondary batteries. For example, with the use of a temperature sensing terminal (T terminal) for a temperature sensor, a switch is closed when the internal temperature of the secondary batteries is out of the operating temperature range.
1 . A vehicle comprising:
a first lithium-ion secondary battery having an operating temperature range that is a first temperature range;
a second lithium-ion secondary battery having an operating temperature range that is a second temperature range comprising an upper limit of the first temperature range;
a third lithium-ion secondary battery having an operating temperature range that is the second temperature range;
a first temperature sensor sensing a temperature of the second lithium-ion secondary battery;
a second temperature sensor sensing a temperature of the third lithium-ion secondary battery; and
a control circuit,
wherein the first lithium-ion secondary battery is not electrically connected to the second lithium-ion secondary battery and the third lithium-ion secondary battery,
wherein a lower limit of the first temperature range is lower than a lower limit of the second temperature range, and
wherein the control circuit is configured:
to stop charging and discharging of the second lithium-ion battery and to bring the temperature of the second lithium-ion secondary battery within the second temperature range by heating with self-heating of the first lithium-ion secondary battery when a temperature of the first temperature sensor is lower than the lower limit of the second temperature range; and
to stop charging and discharging of the third lithium-ion battery and to bring the temperature of the third lithium-ion secondary battery within the second temperature range by using the second lithium-ion secondary battery as a power source for heating of the third lithium-ion secondary battery when a temperature of the first temperature sensor is within the second temperature range and a temperature of the second temperature sensor is lower than the lower limit of the second temperature range.
2 . The vehicle according to claim 1 ,
wherein the lower limit of the first temperature range is at least lower than 25° C. and an upper limit of the second temperature range is at least higher than the first temperature range.
3 . A control system for a secondary battery, comprising:
a first lithium-ion secondary battery;
a second lithium-ion secondary battery having a first operating temperature range different from an operating temperature range of the first lithium-ion secondary battery;
a third lithium-ion secondary battery having the first operating temperature range;
a first heater heating the second lithium-ion secondary battery;
a second heater heating the third lithium-ion secondary battery;
a first monitor circuit monitoring a voltage and a temperature of the second lithium-ion secondary battery;
a second monitor circuit monitoring a voltage and a temperature of the third lithium-ion secondary battery;
a control circuit electrically connected to the monitor circuit;
a first switch between the first heater and the first lithium-ion secondary battery; and
a second switch between the second heater and the second lithium-ion secondary battery,
wherein each of the first switch and the second switch is controlled by the control circuit.
4 . The control system for a secondary battery, according to claim 3 ,
wherein the monitor circuit or the control circuit comprises a protective circuit.
5 . A vehicle comprising:
a first lithium-ion secondary battery having an operating temperature range that is a first temperature range;
a second lithium-ion secondary battery having an operating temperature range that is a second temperature range comprising an upper limit of the first temperature range;
a third lithium-ion secondary battery having an operating temperature range that is the second temperature range;
a first temperature sensor sensing a temperature of the second lithium-ion secondary battery;
a second temperature sensor sensing a temperature of the third lithium-ion secondary battery;
a first heater heating the second lithium-ion secondary battery;
a second heater heating the third lithium-ion secondary battery; and
a control circuit,
wherein the first lithium-ion secondary battery is not electrically connected to the second lithium-ion secondary battery and the third lithium-ion secondary battery,
wherein the first heater is electrically connected to the first lithium-ion secondary battery,
wherein the second heater is electrically connected to the second lithium-ion secondary battery,
wherein a lower limit of the first temperature range is lower than a lower limit of the second temperature range, and
wherein the control circuit is configured:
to bring the temperature of the second lithium-ion secondary battery within the second temperature range by heating with the first heater using the first lithium-ion secondary battery as a power source when a temperature of the first temperature sensor is lower than the lower limit of the second temperature range; and
to bring the temperature of the third lithium-ion secondary battery within the second temperature range by heating with the second heater using the second lithium-ion secondary battery as a power source when a temperature of the first temperature sensor is within the second temperature range and a temperature of the second temperature sensor is lower than the lower limit of the second temperature range.
6 . The vehicle according to claim 5 ,
wherein the lower limit of the first temperature range is at least lower than 25° C. and an upper limit of the second temperature range is at least higher than the first temperature range.
7 . The vehicle according to claim 1 ,
wherein a melting point of an electrolyte of the first lithium-ion secondary battery is lower than or equal to −40° C. and at least a main component of the electrolyte of the first lithium-ion secondary battery comprises a component with a melting point lower than or equal to −40° C.
8 . The vehicle according to claim 1 ,
wherein a viscosity of an electrolyte of the second lithium-ion secondary battery is lower than a viscosity of the electrolyte of the first lithium-ion secondary battery.
9 . A vehicle comprising the control system for a secondary battery according to claim 3 ,
wherein a melting point of an electrolyte of the first lithium-ion secondary battery is lower than or equal to −40° C. and at least a main component of the electrolyte of the first lithium-ion secondary battery comprises a component with a melting point lower than or equal to −40° C.
10 . A vehicle comprising the control system for a secondary battery according to claim 3 ,
wherein a viscosity of an electrolyte of the second lithium-ion secondary battery is lower than a viscosity of the electrolyte of the first lithium-ion secondary battery.
11 . The vehicle according to claim 5 ,
wherein a melting point of an electrolyte of the first lithium-ion secondary battery is lower than or equal to −40° C. and at least a main component of the electrolyte of the first lithium-ion secondary battery comprises a component with a melting point lower than or equal to −40° C.
12 . The vehicle according to claim 5 ,
wherein a viscosity of an electrolyte of the second lithium-ion secondary battery is lower than a viscosity of the electrolyte of the first lithium-ion secondary battery.