Electric travelling vehicle and grass mower
An electric travelling vehicle including: a motor controller configured to control an electric motor based on displacement of a steering operation part to a forward travel position, a neutral position, and a rearward travel position, a brake controller configured to bring an electromagnetic power-off brake into a released state or a braking state; and a travel state detector configured to detect a travelling state that is accompanied with the released state, a stopped state that is accompanied with the braking state, and a transit stopped state that is accompanied with the braking state.
1. An electric travelling vehicle comprising:
a vehicle body;
a power device that includes an electric motor that is driven by being excited, and an electromagnetic power-off brake;
a drive wheel configured to be driven by power from the power device;
a steering operation lever configured to be displaced to a forward travel position, a neutral position, and a rearward travel position from one to another by a manual operation;
a motor controller configured to control the electric motor based on displacement of the steering operation lever;
a brake controller configured to bring the electromagnetic power-off brake into a released state or a braking state;
a brake operation part configured to be switchable between a first position to make a request to the brake controller to bring the electromagnetic power-off brake into the released state and a second position to make a request to the brake controller to bring the electromagnetic power-off brake into the braking state; and
a travel state detector configured to detect a travelling state that is accompanied with the released state, a stopped state that is accompanied with the braking state, and a transit stopped state that is accompanied with the braking state and is a transit state between the stopped state and the travelling state,
wherein a transition from the travelling state to the transit stopped state occurs on a condition that, in the travelling state, the steering operation lever has been returned to the neutral position and a predetermined period of time has elapsed upon a rotational speed of the electric motor decreasing to a very low rotational speed, and
a transition from the transit stopped state to the stopped state occurs upon the brake operation part being transitioned from the first position to the second position, and a transition from the stopped state to the transit stopped state occurs upon the brake operation part being transitioned from the second position to the first position.
2. The electric travelling vehicle according to claim 1 ,
wherein a transition from the transit stopped state to the travelling state occurs at least on a condition that, in the transit stopped state, a predetermined period of time has elapsed upon the steering operation lever deviating from the neutral position.
3. The electric travelling vehicle according to claim 1 ,
wherein the travel state detector detects the travelling state on a condition that the steering operation lever has deviated from the neutral position, the electromagnetic power-off brake is in the released state, the electric motor is in an excited state, and the brake operation part is at the first position,
the travel state detector detects the stopped state on a condition that the steering operation lever is at the neutral position, the electromagnetic power-off brake is in the braking state, the electric motor is in an unexcited state, and the brake operation part is at the second position, and
the travel state detector detects the transit stopped state on a condition that the steering operation lever is at the neutral position, the electromagnetic power-off brake is in the braking state, the electric motor is in an unexcited state, and the brake operation part is at the first position.
4. The electric travelling vehicle according to claim 1 ,
wherein, when the brake operation part is switched from the first position to the second position in the travelling state, the electromagnetic power-off brake enters the braking state and a transition from the travelling state to an emergency stopped state in which the vehicle body is stopped occurs when a predetermined period of time has elapsed upon a no-rotation instruction being output to the electric motor.