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Archives · 2020 · 20200097011

Application (pre-grant publication)

INTERACTIVE AUTONOMOUS ROBOT CONFIGURED WITH IN-CHARACTER SAFETY RESPONSE PROTOCOLS

Number
20200097011
Published
2020-03-26
Filed
2019-06-20
Assignee
DISNEY ENTERPRISES, INC.
Inventors
MIKA; Jeremy Andrew, HONECK; Michael Richard, FREEMAN; Kyle G., FUSCO; Michael
CPC
A63G31/02; B25J11/0005; B25J5/007; B25J9/163; B25J9/1664; G01S17/88; G05B19/406; G05B19/4155; G05D1/0088; G05D1/0214; G05D1/228; G05D1/617
Verdict
High Hardware
Source
Google Patents · FreePatentsOnline

The keeper's note

Autonomous interactive robot with in-character safety response protocols (droid-adjacent).

Abstract

An interactive autonomous robot is configured for deployment within a social environment. The disclosed robot includes a show subsystem configured to select between different in-character behaviors depending on robot status, thereby allowing the robot to appear in-character despite technical failures. The disclosed robot further includes a safety subsystem configured to intervene with in-character behavior when necessary to enforce safety protocols. The disclosed robot is also configured with a social subsystem that interprets social behaviors of humans and then initiates specific behavior sequences in response.

Background

BACKGROUNDField of the Various Embodiments

The various embodiments relate generally to robotics, and, more specifically, to an interactive autonomous robot configured with in-character safety response protocols.Description of the Related Art

A typical theme park provides guests with access to a variety of different types of attractions. For example, a given theme park could include rides, carnival games, scheduled performances, interactive experiences with theme park characters, water play areas, video game arcades, and so forth. Each of these different attractions generally includes thematic elements that relate in some way to one or more overarching themes associated with the park as a whole. For example, a theme park associated with a specific group of movies could include theme park characters derived from characters found in one or more of those movies.

Theme park characters can be implemented using several different approaches, including, for example, pre-programmed stationary animatronics or mobile robots controlled remotely. With any of these approaches, the fundamental goal of theme park characters is to provide guests with personalized, interactive, character-to-guest experiences. Such experiences are important from a guest satisfaction perspective because character-to-guest experiences enhance guest immersion within the overarching theme(s) of the theme park. For example, most children would be exceedingly happy to interact with a theme park chara

Claims

1. A computer-implemented method that causes a robot to mitigate safety risks during operation, the method comprising: analyzing sensor data while the robot performs one or more operations included in a first set of operations; determining that a safety risk exists based on the sensor data; and in response to determining that a safety risk exists, causing the robot to execute a second operation included in a second set of operations, wherein the second set of operations corresponds to a safety protocol that, when executed by the robot, mitigates the safety risk. 9. A robot system, comprising: a memory storing at least one software module; and a processor that, upon executing the at least one software module, is configured to perform the steps of: analyzing sensor data during execution of one or more operations included in a first set of operations, determining that a safety risk exists based on the sensor data, and in response to determining that a safety risk exists, executing a second operation included in a second set of operations, wherein the second set of operations corresponds to a safety protocol that, when executed, mitigates the safety risk. 18. A non-transitory computer-readable medium storing program instructions that, when executed by a processor, causes the processor to mitigate safety risks during operation of a robot by performing the steps of: analyzing sensor data captured in conjunction with the robot performing one or more operations included in a first set of operations; determining that a safety risk corresponding to the one or more operations exists based on the sensor data; and in response to determining that the safety risk exists, causing the robot to execute a second operation included in a second set of operations, wherein the second set of operations corresponds to a safety protocol that, when executed by the robot, mitigates the safety risk.