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Acoustic Event Detection Sensors are hardware sensing systems that detect and differentiate discrete sound events by converting environmental audio into structured, machine-readable signals. They enable awareness of safety, mechanical, or environmental events that may not be detectable through visual sensing alone.
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Acoustic Event Recognition Sensors are audio-based perception systems that detect and classify sound events to identify activities, anomalies, or state changes that may not be visually observable. They complement visual sensing by enabling machine perception in low-visibility, enclosed, or sound-dominant environments.
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The Autonomous Pedestrian-Space Navigation Platform enables low-speed, human-aware autonomous movement in environments shared with foot traffic by combining short-range perception, behavior-aware control, and safety-focused compliance logic. It is designed to support predictable, socially compatible navigation rather than speed or route optimization.
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Environmental Haptic Feedback Surfaces are fixed, spatially integrated systems that communicate environmental or system states through localized tactile cues such as vibration or pressure. They translate abstract signals into bodily sensations tied to specific locations, enabling intuitive, low-attention awareness in physical spaces.
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Obstacle Detection and Avoidance Systems are perception-driven hardware and processing systems that enable robots to identify physical hazards and adjust movement in real time. They support safe navigation in dynamic, human-adjacent environments by combining sensing, spatial interpretation, and low-latency response.
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Proximity-Aware Robotic Systems are robots designed to safely operate alongside humans by continuously sensing nearby presence and adapting their motion, speed, and behavior in real time. They enable shared workspaces by embedding spatial awareness and dynamic safety responses directly into robotic platforms.
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