Quiet Commutes. Happy Passengers.
AI-driven noise cancellation that targets wheel-rail friction and structural resonance—at a fraction of traditional costs.
AI-driven noise cancellation that targets wheel-rail friction and structural resonance—at a fraction of traditional costs.
Persistent low-frequency noise from wheel-rail friction resists mitigation by heavy, costly traditional materials. This unresolved background noise also disrupts public address systems, necessitating volume increases that further degrade the overall acoustic environment.
SteadyBeat’s solution combines advanced acoustic sensing, edge AI processing, and adaptive noise cancellation to create a comprehensive acoustic management system for rail transit vehicles.
Custom silicon that runs AI models locally—under 10W power, sub-10ms latency. No internet needed.
Fuses sound, vision, and sensor data into one intelligent system. Sees, hears, and understands context.
Delivers real-time processing—no cloud dependency, no latency, maximum efficiency.
AI-driven active noise cancellation specifically targets wheel-rail friction and structural resonance, achieving up to 30dB reduction in low-frequency noise where traditional methods fail.
Real-time adaptive ANC algorithms with multi-zone control
Lightweight electronic solution eliminates the need for heavy soundproofing materials, reducing vehicle weight and enabling easy retrofitting of existing fleets.
Compact edge AI processing with minimal hardware requirements
Quieter cabin environment reduces passenger fatigue, improves comfort during commutes, and elevates overall service quality perception.
Continuous noise monitoring and adaptive optimization
By reducing ambient noise, public address systems can operate at lower volumes while maintaining excellent clarity for safety announcements and passenger information.
Integrated acoustic environment management
See how our technology transforms different rail transit environments
Urban metro systems with frequent stops and starts generate significant wheel-rail noise, particularly during acceleration and braking.
Passengers experience a quieter, more comfortable commute, leading to higher satisfaction and increased ridership.
At high speeds, aerodynamic noise and structural vibrations create a challenging acoustic environment.
Premium passenger experience that justifies higher ticket prices and differentiates the service from competitors.
Light rail vehicles operating in urban environments face noise from both internal sources and external urban sounds.
Improved safety through better announcement clarity and enhanced passenger comfort in mixed-traffic environments.
Discover how SteadyBeat’s AI-powered noise cancellation can enhance passenger comfort and operational efficiency.