B62D57/028

Compact magnetic crawler vehicle with anti-rocking supports

A robotic vehicle for traversing surfaces is provided. The vehicle is comprised of a chassis supporting a magnetic drive wheel for driving and steering the vehicle and a stabilization mechanism. The magnetic wheel comprises two flux concentrator yokes and an axially magnetized hub extending therebetween. The hub includes a central housing configured to house a sensor probe and enhance the magnetic pull force of the wheel by providing a continuous pathway of high magnetic permeability material for magnetic flux to flow axially through the drive wheel. The stabilization mechanism comprises a front and rear facing support element moveably coupled to the chassis and configured to contact the surface and move symmetrically relative to the chassis thereby maintaining the vehicle and probe normal to the surface and providing stability to the vehicle while traversing surfaces regardless of surface curvature and vehicle orientation.

BIONIC ROBOT FOR ALL TERRAINS

A bionic robot is provided, which includes a body; a plurality of sets of wheeled leg devices arranged at intervals in a front-rear direction, each comprising two wheeled leg devices arranged symmetrically in a left-right direction, each comprising a leg assembly and a travel wheel, and a power output shaft connected to the travel wheel; and a suspension device disposed in the body and connected to at least two sets from the plurality of sets of wheeled leg devices. The at least two sets of wheeled leg devices are located at the foremost end and the backmost end respectively. The suspension device comprises a plurality of drive assemblies, each connected to a corresponding leg assembly, which each comprise: an electric cylinder being configured to drive a telescopic rod to extend or retract; a damper connected between the body and the leg assembly; and an elastic member fitted over the damper.

ROBOT AND DRONE GAME SYSTEM
20210132626 · 2021-05-06 · ·

A robot and drone game comprising an electronic game system configured for one of; software programming for a live reality match including game players which include one or more of: a semiautonomous and autonomous mobile robot player; a game match configured with an array of drone device avatars, mobile robot avatars, and robot-drone avatars and target objects to compete in said match via multiple players on a packet-based communication network. A virtual reality game system; a game processor of said AI system. A user of a virtual reality device to be electronically coupled to said game processor to visualize a stereoscopic image of said virtual game environment configured with said virtual environment game field; an augmented game system; AGSP comprising game application software programming for an augmented virtual game environment configured with multiple users playing a match; wherein said user interface computing system links the user interface electronic controller device to a cloud-based analytics platform.

MODULAR DELIVERY VEHICLE SYSTEM
20210132625 · 2021-05-06 · ·

The modular delivery vehicle system provides vehicle delivery services realized through delivery driver control or through remote operator interface involving a control network to manage delivery vehicles, delivery drones and delivery robots to deliver payloads to various locations including no-fly zones. Accordingly, the delivery drones and delivery robots may comprise propellers for aerial delivery service, comprise drive wheels land based delivery service, or comprises a combination of thereof in order to navigate inside the delivery vehicle to attain payloads, and to navigate on streets, bike lanes, sidewalks, courtyards, or inside buildings, etc. to drop-off payloads or pick-up payloads. In various elements the delivery vehicles, delivery drones and delivery robots comprise robotic mechanisms to affix boxed payloads onto loading brackets or in compartments of delivery drones and delivery robots, or may use robotic arms and loading mechanisms to pick-up or to drop-off payloads.

BI-DIRECTIONAL ROBOTIC CRAWLER FOR TRANSPORTING A SENSOR SYSTEM ABOUT A STRUCTURE
20210046636 · 2021-02-18 ·

A bi-directional robotic crawler includes a first drive system having a first drive member, a second drive member, and a support member. The first drive member includes a first pair of wheels and the second drive member includes a second pair of wheels. A second drive system includes a third drive member and a fourth drive member. The third drive member includes a first drive element and the fourth drive member includes a second drive element. A linking member selectively pivots the third drive member and the fourth drive member relative to the support member. A motor is mounted to the first drive system. The motor selectively operates the first and second pairs of wheels to move the bi-directional robotic crawler along a first axis and the first and second drive elements to move the bi-directional robotic crawler along a second axis.

Footstep Contact Detection
20210039253 · 2021-02-11 · ·

A method of footstep contact detection includes receiving joint dynamics for a swing leg of the robot where the swing leg performs a swing phase of a gait of the robot. The method also includes receiving odometry defining an estimation of a pose of the robot and determining whether an unexpected torque on the swing leg corresponds to an impact on the swing leg. When the unexpected torque corresponds to the impact, the method further includes determining whether the impact is indicative of a touchdown of the swing leg on a ground surface based on the odometry and the joint dynamics. When the impact is not indicative of the touchdown of the swing leg, the method includes classifying a cause of the impact based on the odometry of the robot and the joint dynamics of the swing leg.

Systems and methods for an autonomous cart robot

A system may include a vehicle having a storage area and a guide rail configured to extend from the storage area. The system may further include a robot having a support portion comprising a placement surface and a base. The robot may also include a plurality of descendible wheels. The robot may also further include a plurality of legs, each connecting the support portion to one of the plurality of descendible wheels.

Systems and methods for an autonomous cart robot

A system may include a vehicle having a storage area and a guide rail configured to extend from the storage area. The system may further include a robot having a support portion comprising a placement surface and a base. The robot may also include a plurality of descendible wheels. The robot may also further include a plurality of legs, each connecting the support portion to one of the plurality of descendible wheels.

Movable object

A movable object includes an upper frame and a drive part that is provided under the upper frame and is connected to the upper frame. The drive part includes a first actuator that is connected to the upper frame and rotates on a vertical axis, a first link that is connected to the first actuator and rotatable on the vertical axis by the first actuator, a second actuator that is provided on a first side of the first link and rotates on a horizontal axis, and a second link that faces the first link and is rotatable on a first end portion thereof facing the first link by the second actuator.

Movable object

A movable object includes an upper frame and a drive part that is provided under the upper frame and is connected to the upper frame. The drive part includes a first actuator that is connected to the upper frame and rotates on a vertical axis, a first link that is connected to the first actuator and rotatable on the vertical axis by the first actuator, a second actuator that is provided on a first side of the first link and rotates on a horizontal axis, and a second link that faces the first link and is rotatable on a first end portion thereof facing the first link by the second actuator.