IP Library Granted Patent US 11,130,410
Granted Patent B2
US 11,130,410 · App. 16/209,096 · Granted Sep 28, 2021

Controller for controlling an output power of an electric vehicle, electric vehicle comprising such controller and corresponding method

Inventor: Christian Goerick (Offenbach, DE)
Assignee: HONDA RESEARCH INSTITUTE EUROPE GMBH
B60L15/2045B60L15/209B60L15/2054B60L58/10B60L2200/12B60L2240/80B60L2260/167B60L2260/26
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Quick Facts
Patent No.
US 11,130,410
App. No.
16/209,096
Granted
Sep 28, 2021
Kind
B2
Abstract

The invention regards a controller for controlling an output power of an electric vehicle, such vehicle and a respective method. The controller is configured to operate in a drive mode controlling electrical energy to a motor generating torque for driving the vehicle based on a throttle input signal. The controller is further configured to receive, in addition to the throttle input signal, a further user controllable signal and to switch the controller in response to such user controllable signal to a maximum power mode for a time interval, wherein in the maximum power mode the maximum electrical energy that can be delivered to the motor is increased compared to the drive mode.

Claims (33)

1. A controller for controlling an output power of an electric vehicle powered by a battery, the controller being configured to:

receive information on at least one of a remaining driving distance, a state of charge of the battery, a temperature of the battery and a wear level of the battery,

determine, for a drive mode, based on the received information, an upper limit of output power produced by a motor when a user fully opens a throttle,

operate in the drive mode controlling electrical energy to the motor generating torque for driving the vehicle based on a throttle input signal and the upper limit,

receive, in addition to the throttle input signal, a further user controllable signal, and

switch in response to such user controllable signal to a maximum power mode for a time interval,

wherein in the maximum power mode, the upper limit is ignored so that the maximum electrical energy that can be delivered to the motor is increased compared to the drive mode regardless of the remaining driving distance, the state of charge of the battery, the temperature of the battery or the wear level of the battery.

2. The controller for an electric vehicle according to claim 1 , wherein the time interval corresponds to a duration of the user controllable signal received by the controller.

3. The controller for an electric vehicle according to claim 2 , wherein a predetermined maximum is set for the time interval.

4. The controller for an electric vehicle according to claim 1 , wherein the drive mode is one of a plurality of available drive modes which can be set by the user or that are set automatically based on measurable system parameters of the electric vehicle and the maximum energy that may be delivered to the motor is set in accordance with the currently used drive mode.

5. An electric vehicle powered by a battery, comprising:

the battery,

a motor for generating drive torque,

a throttle generating a throttle signal in response to a user's operation,

a controller for controlling an output power of the motor, and

a power switch producing a maximum power signal based on an operation of the user,

wherein the controller is configured to receive information on at least one of a remaining driving distance, a state of charge of the battery, a temperature of the battery and a wear level of the battery, to determine, for a drive mode, based on the received information, an upper limit of the output produced by the motor when the user fully opens the throttle, to operate in the drive mode controlling electrical energy to the motor for driving the electric vehicle based on a throttle input signal and the upper limit, to receive in addition to the throttle input signal, the maximum power signal, and to switch in response to the maximum power signal to a maximum power mode for a time interval,

wherein in the maximum power mode, the upper limit is ignored so that the maximum electrical energy that can be delivered to the motor is increased compared to the drive mode regardless of the remaining driving distance, the state of charge of the battery, the temperature of the battery or the wear level of the battery.

6. The electric vehicle according to claim 5 , wherein the electric vehicle is an off-road motorcycle.

7. The electric vehicle according to claim 5 , wherein the power switch comprises a pushbutton.

8. The electric vehicle according to claim 7 , wherein the pushbutton is positioned in a recess of the power switch housing.

9. The electric vehicle according to claim 6 , wherein the power switch is a clutch-like lever of the off-road motorcycle configured to be used directly as the power switch to produce the maximum power signal.

10. The electric vehicle according to claim 5 , wherein in response to an operation of the power switch an input pin of the controller is short circuited.

11. A method for controlling an output power of an electric vehicle powered by a battery, comprising the steps of:

receiving information on at least one of a remaining driving distance, a state of charge of the battery, a temperature of the battery and a wear level of the battery,

determining, for a drive mode, based on the received information, an upper limit of output power produced by a motor when a user fully opens the throttle,

operating the electrical vehicle in a drive mode by a processor controlling electrical energy to the motor generating torque for driving the vehicle based on a throttle input signal and the upper limit,

receiving, in addition to the throttle input signal, a further user controllable signal, and

switching in response to such user controllable signal to a maximum power mode for a time interval, wherein

in the maximum power mode, the upper limit is ignored so that the maximum electrical energy that can be delivered to the motor is increased compared to the drive mode regardless of the remaining driving distance, the state of charge of the battery, the temperature of the battery or the level of the battery.

12. The method according to claim 11 , wherein the time interval in which the controller operates in the maximum power mode corresponds to a duration of the user controllable signal received by the controller.

13. The method according to claim 12 , wherein the controller switches back to the drive mode when the duration of the further signal exceeds a predetermined maximum.

14. The method according to claim 11 , wherein the drive mode is one of a plurality of available drive modes which can be set by the user or that are set automatically based on measurable system parameters of the electric vehicle and the maximum energy that may be delivered to the motor is set in accordance with the currently used drive mode.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 25, 2025
From: HONDA RESEARCH INSTITUTE EUROPE GMBH
To: HONDA MOTOR CO., LTD.
Reel/Frame 070614/0186 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 4, 2018
From: GOERICK, CHRISTIAN
To: HONDA RESEARCH INSTITUTE EUROPE GMBH
Reel/Frame 047668/0616 →
Priority Claims (1)
EP 17205824 · Dec 7, 2017 · regional
Continuity (1)
Related Publication 20190176649A1 · Jun 13, 2019