POWER SUPPLY APPARATUS AND METHOD FOR CONTROLLING POWER SUPPLY APPARATUS
A power supply apparatus includes: an inlet to which first AC power is input; a bidirectional charger capable of performing power conversion between both AC power and DC power; a battery that stores DC power; a V2L outlet capable of outputting second AC power; a current sensor that detects an amount of a current flowing toward the V2L outlet when the second AC power is output from the V2L outlet when the first AC power is branched and supplied to the bidirectional charger and the V2L outlet; a memory; and a hardware processor coupled to the memory. The hardware processor controls an amount of a current flowing toward the bidirectional charger in such a manner that a total current amount of an amount of a current flowing toward the V2L outlet and an amount of a current flowing toward the bidirectional charger falls within a predetermined allowable current value.
1 . A power supply apparatus comprising:
an inlet to which first AC power is input;
a bidirectional charger capable of performing power conversion between both AC power and DC power;
a battery that stores DC power;
a V2L outlet capable of outputting second AC power;
a current sensor that detects an amount of a current flowing toward the V2L outlet when the second AC power is output from the V2L outlet when the first AC power is branched and supplied to the bidirectional charger and the V2L outlet;
a memory; and
a hardware processor coupled to the memory, the hardware processor controlling an amount of a current flowing toward the bidirectional charger in such a manner that a total current amount of an amount of a current flowing toward the V2L outlet and an amount of a current flowing toward the bidirectional charger falls within a predetermined allowable current value.
2 . The power supply apparatus according to claim 1 , wherein
the first AC power is three-phase AC power,
any one of phases of the three-phase AC power is able to be branched and supplied to the V2L outlet and the bidirectional charger, and
other two phases are able to be supplied to the bidirectional charger.
3 . The power supply apparatus according to claim 2 , wherein
the hardware processor increases currents of the other two phases when the currents of the other two phases are less than a predetermined allowable current value, and reduces, by an increased amount of the currents, the current supplied to the bidirectional charger in the one phase.
4 . The power supply apparatus according to claim 2 , wherein
when a required power amount of the bidirectional charger is able to be covered by the other two phases, the hardware processor sets a current supplied to the bidirectional charger in the one phase to 0.
5 . The power supply apparatus according to claim 2 , wherein
the hardware processor sets a sum of amounts of currents branched and supplied to the V2L outlet and the bidirectional charger in the one phase and each of amounts of currents of the other two phases to be equal to each other.
6 . The power supply apparatus according to claim 2 , wherein
when the current starts flowing toward the V2L outlet in the one phase, the hardware processor once sets the current flowing toward the bidirectional charger to 0 and then gradually increases the current to an original value.
7 . A method for controlling a power supply apparatus including an inlet to which first AC power is input, a bidirectional charger capable of performing power conversion between both AC power and DC power, a battery that stores DC power, a V2L outlet capable of outputting second AC power, a current sensor, a memory, and a hardware processor coupled to the memory, the method comprising:
detecting, by the current sensor, an amount of a current flowing toward the V2L outlet when the second AC power is output from the V2L outlet when the first AC power is branched and supplied to the bidirectional charger and the V2L outlet; and
controlling, by the hardware processor, an amount of a current flowing toward the bidirectional charger in such a manner that a total current amount of an amount of a current flowing toward the V2L outlet and an amount of a current flowing toward the bidirectional charger falls within a predetermined allowable current value.