IP Library › Granted Patent US 11,505,079
Granted Patent B2
US 11,505,079 · App. 16/717,163 · Granted Nov 22, 2022

Hybrid vehicle and method for controlling hybrid vehicle

Inventors: Tamaki Ozawa (Toyota, JP); Masaaki Kiyohara (Anjo, JP); Toshiyuki Nagase (Nisshin, JP); Hajime Kushima (Toyota, JP); Yuki Shimizu (Toyota, JP); Akio Uotani (Nagoya, JP)
Assignee: TOYOTA JIDOSHA KABUSHIKI KAISHA
B60L53/63B60L53/51B60W20/10G06Q30/0645G08G1/205B60L53/665B60W2510/244
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Quick Facts
Patent No.
US 11,505,079
App. No.
16/717,163
Filed
Dec 17, 2019
Granted
Nov 22, 2022
Kind
B2
Art Unit
3747
USPC
180/65.28
Abstract

An ECU performs a process including: when a vehicle establishes a Ready-On state, selecting a CD mode; when discharging power is uncompleted and a scheduled time to return the vehicle is a time within a discharging period, setting a second target SOC as a mode switching value; and when the vehicle's power storage device has an SOC reaching the mode switching value and a surcharge imposed on a rental fee is unaccepted, switching the current control mode from the CD mode to a CS mode.

Claims (14)

1. A hybrid vehicle used for a rental service, comprising:

an electric motor that generates a driving force;

a power storage device that stores power to be supplied to the electric motor;

an engine that is used to generate power;

a connector connected to a power grid external to the hybrid vehicle to allow the power grid external to the hybrid vehicle and the power storage device to transmit and receive power therebetween while the hybrid vehicle is parked; and

a control device that controls the hybrid vehicle in accordance with any one control mode of a first mode and a second mode while the hybrid vehicle is driven, the first mode allowing the hybrid vehicle to travel using the electric motor with the engine stopped, the second mode allowing the hybrid vehicle to travel with the engine operated, wherein

the control device switches the first mode to the second mode in response to the power storage device having an SOC decreased to a first target SOC during the first mode, and

when a scheduled time to return the hybrid vehicle is within a predetermined time zone for which power is supplied from the power storage device to the power grid, the control device switches the first mode to the second mode in response to the power storage device having an SOC decreased to a second target SOC larger than the first target SOC during the first mode.

2. The hybrid vehicle according to claim 1 , wherein when the scheduled time to return the hybrid vehicle is within the predetermined time zone, and when an operation performed by a user to indicate that the user accepts a surcharge imposed on a rental fee by continuing the first mode is received, the control device switches the first mode to the second mode in response to the power storage device having an SOC decreased to an SOC lower than the second target SOC during the first mode.

3. The hybrid vehicle according to claim 1 , wherein when the scheduled time to return the hybrid vehicle is within the predetermined time zone, and when information indicating that another vehicle owned by a business conductor of the rental service can supply the power grid with power is received, then, the control device switches the first mode to the second mode in response to the power storage device having an SOC decreased to an SOC lower than the second target SOC during the first mode.

4. A method for controlling a hybrid vehicle used in a rental service, the hybrid vehicle including an electric motor that generates a driving force, a power storage device that stores power to be supplied to the electric motor, an engine that is used to generate power, and a connector connected to a power grid external to the hybrid vehicle to allow the power grid external to the hybrid vehicle and the power storage device to transmit and receive power therebetween while the hybrid vehicle is parked, the method comprising:

controlling the hybrid vehicle in accordance with any one control mode of a first mode and a second mode while the hybrid vehicle is driven, the first mode allowing the hybrid vehicle to travel using the electric motor with the engine stopped, the second mode allowing the hybrid vehicle to travel with the engine operated;

switching the first mode to the second mode in response to the power storage device having an SOC decreased to a first target SOC during the first mode; and

when a scheduled time to return the hybrid vehicle is within a predetermined time zone for which power is supplied from the power storage device to the power grid, switching the first mode to the second mode in response to the power storage device having an SOC decreased to a second target SOC larger than the first target SOC during the first mode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2019
From: OZAWA, TAMAKI; KIYOHARA, MASAAKI; NAGASE, TOSHIYUKI; KUSHIMA, HAJIME; SHIMIZU, YUKI; UOTANI, AKIO
To: TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 051335/0605 →
Priority Claims (1)
JP JP2018-242845 · Dec 26, 2018 · national
Continuity (1)
Related Publication 20200207235A1 · Jul 2, 2020
Cited By (1)
US 12,583,353