Patent classifications
B61B11/00
INSTALLATION AND METHOD OF TRANSPORT BY OVERHEAD CABLE
Installation of transport by overhead cable including at least one chair configured to be suspended on the overhead cable and including a pivoting seat surface, a back rest and a pivoting mechanism to modify the inclination of the seat surface with respect to the back rest, the installation including an actuator configured to cooperate with the pivoting mechanism so as to control pivoting of the seat surface, the actuator being mounted movable between a raised position in which the actuator controls raising of the seat surface in the direction of the back rest and a lowered position in which the actuator controls lowering of the seat surface.
INSTALLATION AND METHOD OF TRANSPORT BY OVERHEAD CABLE
Installation of transport by overhead cable including at least one chair configured to be suspended on the overhead cable and including a pivoting seat surface, a back rest and a pivoting mechanism to modify the inclination of the seat surface with respect to the back rest, the installation including an actuator configured to cooperate with the pivoting mechanism so as to control pivoting of the seat surface, the actuator being mounted movable between a raised position in which the actuator controls raising of the seat surface in the direction of the back rest and a lowered position in which the actuator controls lowering of the seat surface.
Towing apparatus
The present invention relates to towing apparatus (200) for towing a vehicle with a cable transport arrangement. The towing apparatus (200) comprises a first attachment arrangement (204) configured to provide for attachment to a towing part of the cable transport arrangement. The towing apparatus (200) comprises a second attachment arrangement (208) configured for releasable attachment to a vehicle. The second attachment arrangement (208) comprises a main body (210) and first and second arms (212,214). The first and second arms (212,214) are substantially immovably mounted on the main body (210) and spaced apart from each other with each of the first and second arms defining a vehicle engaging profile (222). The second attachment arrangement (208) is rotatable such that the first and second arms (212,214) move between: a first position in which the vehicle engaging profiles (222) can be brought into engagement with or disengaged from a part of the vehicle; and a second position in which the vehicle engaging profiles (222) engage with the part of the vehicle so as to provide for towing of the vehicle.
SYSTEM AND METHOD FOR DETECTING THE NUMBER OF USERS ON AT LEAST ONE SKI RESORT RUN
A system for detecting the passage of users in a ski resort, the ski resort comprising a plurality of ski runs and a plurality of ski lifts; the system for detecting the passage of users comprising: an image sensor and a processing unit, which are connected in communication with each other; wherein the image sensor is configured to capture images, such as a video, of a portion of the ski run, and send them to the processing unit; the processing unit being configured to analyse said images, such as the video, and detect moving objects, such as moving in a given direction, and count said detected moving objects; such as the image sensor is a video camera.
SYSTEM AND METHOD FOR DETECTING THE NUMBER OF USERS ON AT LEAST ONE SKI RESORT RUN
A system for detecting the passage of users in a ski resort, the ski resort comprising a plurality of ski runs and a plurality of ski lifts; the system for detecting the passage of users comprising: an image sensor and a processing unit, which are connected in communication with each other; wherein the image sensor is configured to capture images, such as a video, of a portion of the ski run, and send them to the processing unit; the processing unit being configured to analyse said images, such as the video, and detect moving objects, such as moving in a given direction, and count said detected moving objects; such as the image sensor is a video camera.
Portable rope tow assembly
A portable rope tow assembly is used to transport people, typically skiing or snowboarding, along snow covered ground and usually up hill. The assembly is extremely lightweight, portable and rapid to deploy. It uses a variable frequency drive to control an electric drive motor, and enables convenient variable speed and reverse direction operation.
Tow system
A portable tow system includes a drive system for removable mounting to a first anchor point, a flywheel system for removable mounting to a second anchor point distal from the first anchor point, and a tow strap for connecting a drive wheel of the drive system to a flywheel of the flywheel system. One or more persons or objects can be removably attached or connected to the tow strap. The drive system includes a motor for causing the drive wheel to rotate, which rotation causes the tow strap to rotate, such that the person(s) or object(s) connected thereto may be pulled from the first anchor point to the second anchor point or vice versa.
CABLE CAR AND CABLE CAR NETWORK WITH SEVERAL CABLE CARS
A cable car and a cable car network with cable car stations and cable car vehicles movable with a haulage rope between the cable car stations includes a cable car control unit for controlling the cable car, wherein a maximum electrical energy consumption of the cable car is predetermined; an energy detection unit configured for determining an electrical energy consumption of the cable car; and wherein the cable car control unit is configured to control or regulate an electrical energy consumption of at least one electrical consumer of the cable car based at least in part on the determined electrical energy consumption of the cable car such that the maximum electrical energy consumption predetermined for the cable car is not exceeded. Associated methods of operating a cable car or cable car network are also disclosed.
Cart conveyor assembly
A cart assembly system for handling laundry in a facility, the system including first and second support structures each having arms extending outwardly therefrom. The arms support drive wheels, which in turn support a tow line extending between the first and second support structures. The system may include a drop cord extending downwardly from the tow line and engaging a slot on a tow cart to attach the tow cart to the tow line. The system may also include a mast extending from the cart to the tow line, the mast supporting a clamp assembly for coupling the cart to the tow line. A controller drives one or both of drive wheels to move the tow line and the cart along the line pathway, where the cart transports laundry throughout the facility.
Systems and methods for improved operations of ski lifts
Systems and methods for improved operations of ski lifts increase skier safety at on-boarding and off-boarding locations by providing an always-on, always-alert system that “watches” these locations, identifies developing problem situations, and initiates mitigation actions. One or more video cameras feed live video to a video processing module. The video processing module feeds resulting sequences of images to an artificial intelligence (AI) engine. The AI engine makes an inference regarding existence of a potential problem situation based on the sequence of images. This inference is fed to an inference processing module, which determines if the inference processing module should send an alert or interact with the lift motor controller to slow or stop the lift.