IP Library › Granted Patent US 11,618,445
Granted Patent B2
US 11,618,445 · App. 16/989,077 · Granted Apr 4, 2023

Industrial vehicle with regenerative braking limit control

Inventor: Takehiro Kubotani (Kariya, JP)
Assignee: KABUSHIKI KAISHA TOYOTA JIDOSHOKKI
B60W30/143B60W30/18127B60W40/08B60W2300/12B60W2520/10B60W2540/10
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Quick Facts
Patent No.
US 11,618,445
App. No.
16/989,077
Granted
Apr 4, 2023
Kind
B2
Abstract

An industrial vehicle including: a direction calculation unit that calculates an instructed travel direction of the vehicle based on an operation position of the direction instruction member; a vehicle speed calculation unit that calculates an actual speed of the vehicle; a switching unit that switches between permission and prohibition of regenerative braking limit; and a control unit that controls traveling of the vehicle. The control unit is configured to be switchable between a regenerative braking limit state where the regenerative braking limit is performed and a regenerative braking limit release state where the regenerative braking limit is released, when the vehicle speed limit mode is activated and the regenerative braking limit is permitted. The control unit has at least one control pattern that switches between the regenerative braking limit state and the regenerative braking limit release state when a predetermined condition is satisfied.

Claims (27)

1. An industrial vehicle that has a normal travel mode where the vehicle is controlled to travel at a vehicle speed corresponding to a target speed and a vehicle speed limit mode where a vehicle speed limit value smaller than a maximum vehicle speed value is determined and the vehicle is controlled to travel at a vehicle speed smaller than the vehicle speed limit value, as travel control modes, the vehicle comprising:

an accelerator operation member that instructs the vehicle to accelerate according to an operation performed by a driver;

a target speed calculation unit that calculates the target speed of the vehicle based on an operation amount of the accelerator operation member;

a direction instruction member that instructs the vehicle on a travel direction according to an operation performed by the driver;

a direction calculation unit that calculates an instructed travel direction of the vehicle based on an operation position of the direction instruction member;

a vehicle speed calculation unit that calculates an actual speed of the vehicle;

a switching unit that switches between permission and prohibition of regenerative braking limit and

a control unit that controls traveling of the vehicle,

wherein the control unit is configured to be switchable between (i) a regenerative braking limit state where the regenerative braking limit is performed when the vehicle speed limit mode is activated and the regenerative braking limit is permitted, and (ii) a regenerative braking limit release state where the regenerative braking limit is released,

wherein the control unit has at least one control pattern that switches between the regenerative braking limit state and the regenerative braking limit release state when a predetermined condition is satisfied, and

wherein the control pattern is a pattern where, when at least one of: (a) a condition that the regenerative braking limit state is activated and the instructed travel direction is changed or (b) a condition that the regenerative braking limit state is activated and the actual speed is zero, is satisfied as the predetermined condition, a change rate of a regeneration limit value is set to a value larger than a predetermined value and switching from the regenerative braking limit state to the regenerative braking limit release state is performed.

2. The industrial vehicle according to claim 1 ,

wherein the control pattern is a pattern where when a condition that the regenerative braking limit is switched from permission to prohibition is satisfied as the predetermined condition, switching from the regenerative braking limit state to the regenerative braking limit release state is performed.

3. An industrial vehicle that has a normal travel mode where the vehicle is controlled to travel at a vehicle speed corresponding to a target speed and a vehicle speed limit mode where a vehicle speed limit value smaller than a maximum vehicle speed value is determined and the vehicle is controlled to travel at a vehicle speed smaller than the vehicle speed limit value, as travel control modes, the vehicle comprising:

an accelerator operation member that instructs the vehicle to accelerate according to an operation performed by a driver;

a target speed calculation unit that calculates the target speed of the vehicle based on an operation amount of the accelerator operation member;

a direction instruction member that instructs the vehicle on a travel direction according to an operation performed by the driver;

a direction calculation unit that calculates an instructed travel direction of the vehicle based on an operation position of the direction instruction member;

a vehicle speed calculation unit that calculates an actual speed of the vehicle;

a switching unit that switches between permission and prohibition of regenerative braking limit and

a control unit that controls traveling of the vehicle,

wherein the control unit is configured to be switchable between (i) a regenerative braking limit state where the regenerative braking limit is performed when the vehicle speed limit mode is activated and the regenerative braking limit is permitted, and (ii) a regenerative braking limit release state where the regenerative braking limit is released,

wherein the control unit has at least one control pattern that switches between the regenerative braking limit state and the regenerative braking limit release state when a predetermined condition is satisfied, and

wherein in the vehicle speed limit mode, the vehicle receives gravity on a slope to be able to travel even though the driver does not operate the accelerator operation member, and

wherein when the vehicle moves forward to descend the slope, the control pattern is a pattern where, when at least one of: (a) a condition that the regenerative braking limit state is activated, an actual travel direction of the vehicle coincides with the instructed travel direction of the vehicle, and the target speed is higher than the actual speed, to thereby make a transition from the vehicle speed limit mode to the normal travel mode or (b) a condition that the regenerative braking limit state is activated and an operation state of the accelerator operation member in which the target speed is lower than the actual speed makes a transition to a non-operation state, to thereby make a transition from the vehicle speed limit mode to the normal travel mode, is satisfied as the predetermined condition, a change rate of a regeneration limit value is set to a value smaller than a predetermined value and switching from the regenerative braking limit state to the regenerative braking limit release state is performed.

4. The industrial vehicle according to claim 3 ,

wherein the control pattern is a pattern where when a condition that the regenerative braking limit is switched from permission to prohibition is satisfied as the predetermined condition, switching from the regenerative braking limit state to the regenerative braking limit release state is performed.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2020
From: KUBOTANI, TAKEHIRO
To: KABUSHIKI KAISHA TOYOTA JIDOSHOKKI
Reel/Frame 053445/0618 →
Priority Claims (1)
JP JP2019-148570 · Aug 13, 2019 · national
Continuity (1)
Related Publication 20210046931A1 · Feb 18, 2021