IP Library › Granted Patent US 11,052,775
Granted Patent B2
US 11,052,775 · App. 16/227,630 · Granted Jul 6, 2021

Power management system and power management method

Inventors: Tomohito Matsuoka (Nagoya, JP); Seiichi Tsunoda (Nisshin, JP); Jiro Goto (Seto, JP); Masayuki Yamada (Chofu, JP); Yasutaka Eto (Okazaki, JP); Keima Fukunaga (Toyota, JP)
Assignee: TOYOTA JIDOSHA KABUSHIKI KAISHA
B60L53/12B60L1/00B60L58/13G05D1/0291G08G1/22H04W84/00B60L2240/10B60L2240/622G05D2201/0213H02J7/0047H02J7/0048H02J7/025H02J50/00
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Quick Facts
Patent No.
US 11,052,775
App. No.
16/227,630
Granted
Jul 6, 2021
Kind
B2
Abstract

A second communication unit of a power receiving vehicle sends a charging start request signal to a power supplying vehicle located on a planned travel route of the power receiving vehicle. At least one of a first travel control unit of the power supplying vehicle and a second travel control unit of the power receiving vehicle brings the power supplying vehicle and the power receiving vehicle close to each other up to a position that satisfies a charging start condition when the first travel control unit receives the charging start request signal from the power receiving vehicle through a first communication unit of the power supplying vehicle. The remaining charge of a battery of the power receiving vehicle is managed by performing charging between the power supplying vehicle and the power receiving vehicle.

Claims (28)

1. A power management system, which performs charging between a power supplying vehicle and a power receiving vehicle to manage remaining charge of a battery of the power receiving vehicle, wherein:

the power supplying vehicle includes:

a first travel control unit, which is configured to control travel of the power supplying vehicle, and

a first communication unit, which is configured to receive a charging start request signal from the power receiving vehicle,

the power receiving vehicle includes:

a second travel control unit, which is configured to control travel of the power receiving vehicle,

a second communication unit, which is configured to send the charging start request signal to the power supplying vehicle,

a battery remaining charge monitoring unit, which is configured to monitor a remaining charge of the battery of the power receiving vehicle, and

a battery consumption prediction unit, which predicts a remaining charge of the battery when the power receiving vehicle travels on a planned travel route,

the second communication unit is configured to send the charging start request signal to the power supplying vehicle that is located on the planned travel route of the power receiving vehicle when a difference between the remaining charge of the battery of the power receiving vehicle obtained by the battery remaining charge monitoring unit and the remaining charge of the battery of the power receiving vehicle predicted by the battery consumption prediction unit becomes equal to or larger than a predetermined threshold, and

at least one of the first travel control unit and the second travel control unit is configured to bring the power supplying vehicle and the power receiving vehicle close to each other up to a position that satisfies a charging start condition when the first travel control unit receives the charging start request signal from the power receiving vehicle through the first communication unit.

2. The power management system according to claim 1 , wherein the first travel control unit is configured to:

receive the planned travel route of the power receiving vehicle through the first communication unit upon receiving the charging start request signal from the power receiving vehicle, and

change a planned travel route of the power supplying vehicle such that the power supplying vehicle is made to merge with the thus received planned travel route of the power receiving vehicle.

3. The power management system according to claim 1 , wherein:

the second communication unit is configured to send the charging start request signal to the power supplying vehicle when the remaining charge of the battery of the power receiving vehicle obtained by the battery remaining charge monitoring unit becomes less than a predetermined threshold.

4. The power management system according to claim 3 , wherein:

the power receiving vehicle further includes a travel distance obtaining unit, which obtains a travel distance of the power receiving vehicle, and

the second communication unit is configured to send the charging start request signal to the power supplying vehicle when the travel distance of the power receiving vehicle obtained by the travel distance obtaining unit becomes equal to or larger than a predetermined threshold.

5. The power management system according to claim 1 , wherein the power supplying vehicle further includes a generator.

6. A non-transitory computer readable medium that stores a program for causing a processor to execute a power management process of a power receiving vehicle, the power management process comprising:

managing remaining charge of a battery of the power receiving vehicle by performing charging between a power supplying vehicle and the power receiving vehicle,

sending a charging start request signal to the power supplying vehicle located on a planned travel route of the power receiving vehicle through a second communication unit of the power receiving vehicle when a difference between a remaining charge of the battery of the power receiving vehicle obtained by a battery remaining charge monitoring unit and a remaining charge of the battery of the power receiving vehicle predicted by a battery consumption prediction unit becomes equal to or larger than a predetermined threshold, and

when the power supplying vehicle receives the charging start request signal from the power receiving vehicle through a first communication unit of the power supplying vehicle, controlling traveling of at least one of the power supplying vehicle and the power receiving vehicle such that the power supplying vehicle and the power receiving vehicle are brought close to each other up to a position that satisfies a charging start condition.

7. A power management method comprising:

managing remaining charge of a battery of a power receiving vehicle by performing charging between a power supplying vehicle and the power receiving vehicle;

sending a charging start request signal to the power supplying vehicle located on a planned travel route of the power receiving vehicle through a second communication unit of the power receiving vehicle when a difference between a remaining charge of the battery of the power receiving vehicle obtained by a battery remaining charge monitoring unit and a remaining charge of the battery of the power receiving vehicle predicted by a battery consumption prediction unit becomes equal to or larger than a predetermined threshold; and

when the power supplying vehicle receives the charging start request signal from the power receiving vehicle through a first communication unit of the power supplying vehicle, controlling traveling of at least one of the power supplying vehicle and the power receiving vehicle such that the power supplying vehicle and the power receiving vehicle are brought close to each other up to a position that satisfies a charging start condition.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 2, 2019
From: MATSUOKA, TOMOHITO; TSUNODA, SEIICHI; GOTO, JIRO; YAMADA, MASAYUKI; ETO, YASUTAKA; FUKUNAGA, KEIMA
To: TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 047881/0298 →
Priority Claims (1)
JP JP2017-250207 · Dec 26, 2017 · national
Continuity (1)
Related Publication 20190193582A1 · Jun 27, 2019
Cited By (1)
US 12,691,778