Our Patent Pending Technology

The Sensory VR patent pending technology, as described in the patent, is a virtual reality to real-time environmental adaptation system designed to synchronize virtual environments with the user’s actual motion. The system includes compact sensing modules mounted near each wheel of a vehicle to capture precise physical data—such as speed, acceleration, pitch, yaw, and roll—which is transmitted to a computing device . The device uses this data to calculate real-time angles and continuously adjust the VR experience so that turns, inclines, and other movements inside the virtual world mirror the user’s real surroundings . By aligning sensory feedback between motion and vision, Sensory VR reduces motion sickness, enhances immersion, and allows applications ranging from gaming and simulation to vehicle-based training and wellness experiences .

Digital illustration of a car wheel with connected icons representing various automotive features and functions, glowing with blue neon lines.

Physical Sensing

The physical sensing aspect of the Sensory VR technology centers on compact sensing modules affixed near each wheel of a vehicle, integrating instruments such as GPS receivers, accelerometers, gyroscopes, magnetometers, and speedometers to capture real-time data on location, velocity, acceleration, pitch, yaw, and roll—allowing the system to translate physical motion precisely into virtual movement within the VR environment .

Digital art depicting a neon-lit futuristic road with arrows pointing upward, a city skyline in the background, a laptop showing mountains and a graph, and glowing grid lines with mountain and graph outlines.

Virtual Adaptation

The virtual environment adaptation aspect of the Sensory VR technology uses a computing device that dynamically adjusts virtual components in real time based on both AI/ML-predicted changes and sensor feedback — for example, when the sensors detect a 15° left turn or a 10° incline, the system correspondingly curves or tilts the VR environment by the same angles, ensuring that the virtual scene continuously mirrors the user’s actual movement for heightened realism and reduced motion sickness .

A futuristic digital rendering of a sleek black sports car with neon blue and pink light trails on a grid-like road, with a starry night sky and mountain silhouette in the background.

Use-Cases

In gaming and immersive sensory experiences, Sensory VR enables environments that physically move and react in perfect sync with a user’s actions—so when a player’s vehicle turns, accelerates, or climbs, the VR world mirrors those exact motions in real time—creating a hyper-realistic sense of presence that enhances engagement, reduces motion sickness, and deepens the emotional and sensory impact of gameplay.

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