Barrier passage system for autonomous working machine
A system for use with an autonomous working machine such as a robotic lawn mower. The system may allow communication (directly or indirectly) between the machine and a gate or other barrier opening to allow unattended or remotely-controlled passage of the machine through the gate. In some embodiments, the mower may include a vision system operable to detect unknown objects within an area adjacent to the gate.
1. A barrier passage system permitting an autonomous working machine to cross a property barrier, the system comprising:
a gate associated with the property barrier, the gate selectively movable between a closed position, wherein a gate opening through the property barrier is blocked by the gate, and an open position, wherein passage of the working machine through the gate opening is permitted;
an actuator adapted to move the gate between the closed position and the open position;
a gate controller adapted to selectively energize the actuator; and
an autonomous working machine comprising a machine controller adapted to autonomously control navigation of the working machine within a property divided by the property barrier, wherein the machine controller is configured to autonomously transmit a gate open signal to the gate controller requesting movement of the working machine through the gate opening, wherein upon receipt of the gate open signal the gate controller commands the actuator to move the gate from the closed position to the open position to allow the working machine to autonomously navigate through the gate opening under control of the machine controller, and wherein the actuator and the gate controller are adapted to receive electrical power from the working machine.
2. The barrier passage system of claim 1 , wherein the actuator comprises a linear actuator.
3. The barrier passage system of claim 1 , wherein the actuator comprises a rotary actuator.
4. The barrier passage system of claim 3 , wherein the actuator is coupled to an actuator cable extended through an offset cable guide, wherein the actuator cable is adapted to pivot the gate between the closed position and the open position.
5. The barrier passage system of claim 3 , further comprising a gate latch, wherein the actuator is coupled to a retractable pin of the gate latch.
6. The barrier passage system of claim 1 , wherein the gate comprises a turntable formed by a floor segment and two upwardly extending walls.
7. The barrier passage system of claim 1 , further comprising a camera associated with the working machine, the camera operatively coupled to the machine controller.
8. The barrier passage system of claim 1 , wherein the autonomous working machine further comprises a camera operatively coupled to the machine controller, and wherein the working machine is adapted to:
monitor an area adjacent to the gate with the camera;
detect an unknown object within the area adjacent to the gate using the camera and machine controller; and
delay movement of the gate to the open position based upon a detected presence of the unknown object.
9. A method for controlling operation of an autonomous working machine through a gate opening formed through a property barrier, the gate opening selectively blocked by a gate, the method comprising:
approaching a first side of the gate with the working machine, the working machine comprising a machine controller adapted to autonomously control navigation of the working machine as the working machine traverses a property containing the property barrier;
autonomously transmitting a gate open signal from the machine controller to a gate controller associated with the gate when the machine controller requests passage of the machine through the gate opening;
commanding, via the gate controller, an actuator connected to the gate to move the gate from a closed position, wherein passage of the working machine through the property barrier is blocked, to an open position, wherein passage of the working machine through the gate opening is permitted, and wherein the actuator and the gate controller are adapted to receive electrical power from the working machine; and
autonomously propelling the working machine through the gate opening under control of the machine controller.
10. The method of claim 9 , further comprising returning the gate, via the gate controller and the actuator, to the closed position after expiration of a predetermined period of time.
11. The method of claim 9 , further comprising wirelessly transmitting a gate close signal from the machine controller to the gate controller after the working machine has passed through the gate opening.
12. The method of claim 9 , further comprising:
monitoring an area adjacent to the gate with a camera operatively communicating with the machine controller;
detecting an unknown object within the area adjacent to the gate using the camera and machine controller; and
delaying movement of the gate to the open position based upon a detected presence of the unknown object.
13. A method for controlling operation of an autonomous working machine through a gate opening formed through a property barrier, the gate opening selectively blocked by a gate, the method comprising:
approaching a first side of the gate with the working machine, the working machine comprising:
a machine controller adapted to autonomously control navigation of the working machine as the working machine traverses a property containing the property barrier; and
two or more cameras carried by the working machine and in communication with the machine controller;
autonomously transmitting a gate open signal from the machine controller to a gate controller associated with the gate;
commanding, via the gate controller, an actuator connected to the gate to move the gate from a closed position, wherein passage of the working machine through the gate opening of the property barrier is blocked, to an open position, wherein passage of the working machine through the gate opening of the property barrier is permitted, and wherein the actuator and the gate controller are adapted to receive electrical power from the working machine;
monitoring an area adjacent to the gate with the two or more cameras;
detecting an unknown object within the area adjacent to the gate using the two or more cameras and machine controller;
delaying movement of the gate to the open position based upon a detected presence of the unknown object; and
autonomously propelling the working machine through the gate opening, once the gate moves to the open position, under control of the machine controller.