Abstract:
Mixed reality systems and methods, and in particular to systems and methods for providing virtual elements based on a code provided within a mixed reality scene, are provided. A mixed reality method includes generating a live video signal of a scene associated with a field of view of a user, wherein the scene comprises an optical, machine-readable representation of code data. The method further includes determining, via a processing device, the code data based on the representation of the code data. The method further includes determining, via the processing device based on the code data, a virtual element in real time. The method further includes displaying the virtual element to the user as part of the scene.
Abstract:
A method of operating an electronic gaming machine includes generating an interactive game environment in accordance with game data, the interactive game environment having a viewing area may include a plurality of visible game components as a subset of the interactive game environment, displaying the viewing area with the plurality of visible game components, monitoring eye gaze of a player to collect player eye gaze data, determining a location of the eye gaze of the player relative to the viewing area using the player eye gaze data, and in response to the location of the eye gaze of the player relative to the viewing area, changing a resolution of a portion of the viewing area other than a portion of the viewing area corresponding to location of the eye gaze of the player on the viewing area. Related electronic gaming machines are also disclosed.
Abstract:
An electronic gaming machine where the player plays an interactive game using their player eye gaze. A graphics processor generates an interactive game environment and defines a viewing area as its subset, the viewing area having visible game components. A display device displays the viewing area having the plurality of visible game components. The display controller controls rendering of the viewing area on the display device using the graphics processor. At least one data capture camera device continuously monitors the player eye gaze to collect player eye gaze data. The game controller determines the location of the player's eye gaze relative to the viewing area and triggers a control command to the display controller. In response, the display controller controls the display device in real-time to provide a graphical animation effect displayed on the display device representative of a visual update to the visible game components in the viewing area.
Abstract:
An electronic gaming machine (“EGM”) can include a set of mechanical reels; a display surface; and a projector. The projector can be configured to project a digital element on the display surface. The display surface can be located between the projector and the set of mechanical reels.
Abstract:
Gaming devices, systems, and methods are provided. The gaming device includes a display device, an image capture device to capture images of eyes of multiple users of the device, and a processor circuit. A memory includes machine-readable instructions that, when executed by the processor circuit, cause the processor circuit to generate, for each of the images of eyes of the plurality of users, gaze direction data corresponding to gaze directions of the eyes of each of the plurality of users and, based on the gaze direction data of the plurality of users, modify a gaming device function.
Abstract:
In one aspect, there is described a method for a game to a player. The method includes: determining that a game screen provided by a game includes an interface element associated with a contactless feedback effect; identifying a location of one or more player features based on an electrical signal from a locating sensor; determining a mid-air location to be associated with the interface element associated with the contactless feedback effect based on the identified location of the one or more player features; and providing an ultrasonic field at the mid-air location.
Abstract:
A gaming system, computer-implemented method and gaming device are operable enhance player experience using image data. A system includes a processor circuit and a memory including machine-readable instructions that, when executed by the processor circuit, cause the processor circuit to perform operations. Such operations include receiving, from a camera, image data that includes visual signals corresponding to a player and determining player action components from the image data. The player action components include multiple different player attributes that correspond to an emotional state of the player. Operations further include, based on the different player attributes, determining a predicted action of the player and causing a casino related action that corresponds to the predicted action.
Abstract:
An electronic gaming machine where the player plays an interactive game using their player eye gaze. A graphics processor generates an interactive game environment and defines a viewing area as its subset, the viewing area having visible game components. A display device displays the viewing area having the plurality of visible game components. The display controller controls rendering of the viewing area on the display device using the graphics processor. At least one data capture camera device continuously monitors the player eye gaze to collect player eye gaze data. The game controller determines the location of the player's eye gaze relative to the viewing area and triggers a control command to the display controller. In response, the display controller controls the display device in real-time to provide a graphical animation effect displayed on the display device representative of a visual update to the visible game components in the viewing area.
Abstract:
An electronic gaming machine where the player plays an interactive game using their player eye gaze. A graphics processor generates an interactive game environment and defines a viewing area as its subset, the viewing area having visible game components. A display device displays the viewing area having the plurality of visible game components. The display controller controls rendering of the viewing area on the display device using the graphics processor. At least one data capture camera device continuously monitors the player eye gaze to collect player eye gaze data. The game controller determines the location of the player's eye gaze relative to the viewing area and triggers a control command to the display controller. In response, the display controller controls the display device in real-time to provide a graphical animation effect displayed on the display device representative of a visual update to the visible game components in the viewing area.
Abstract:
An electronic gaming machine (“EGM”) can include a surface-integrated speaker, a processor circuit coupled to the surface-integrated speaker, and a memory coupled to the processor circuit. The memory can include machine-readable instructions that, when executed by the processor circuit, cause the EGM to perform operations. The operations can include determining a position on the EGM from which to output audio. The operations can further include outputting, via a surface-integrated speaker, the audio at the position.