The room was a great contributor to li→≠ stening, especially lo←←₩w frequencies were more affected by ≤Ω←®the room.
Our first room measurement tec£₹ε£hnology can measure the ro₹©$om size and reflectance thro∞☆•₩ugh speakers and microphones,↔↓ and automatically adjust the sound parameters γ↑↕♥to achieve HIFI effect.
Measuring room parameters, multi-positiβ∏←on measurement calibration
Automatically adjust volume a λ nd configure various DSP parαφ€ameters according to room parame→α™∞ters
Ideal sound reproduction in ∞™→different room environments
The virtual surround sound system is bσ÷↓ased on two-channel ster'₩✔eo.
Without adding channels and speakers, it bro§adcasting the sound field signal through the c≥>ircuit to allow the listener to ♦•feel that the sound comes from≠αΩ∞ multiple positions and produ€↔↓§ces a simulated ster>♣eo field.
This technology enablγ€es real-time multi-chan×σnel balance and better perc§ ÷•eption of sound details.
Dolby Digital decoding
Multi-channel dyna↕σ Ωmic balance DSP algorithm
Real-time multi-channeλ↓™l dynamic EQ and DRC pr∑& ocessing for better perΩ ception of sound details
Virtual surroun→↕•εd sound technology, real-time multi-channel b®✔₹alance, perceptual so und details
The head related tra÷£nsfer function enables the panoramic stereo§§✘↑ recording to record professional₩<λ★ sound everywhere. U☆←•sage Scenarios include travelinπ∞g, live broadcast, teaching↕♥π, etc,.
Cooperate with Thγ₹ e EMOS.AI platform, it can accurat™₩ely detect human emotions, intentionφ←™s, and personalities by extracting emot₽♦ional cues from human speech, text, tone, an↔' d behavior to understand high-le×☆£vel communication features to guide its×♣<• responses accordingly.