Sub-dashboard acoustic isolation mounts: BYDRecent Research Landscape
Acoustic signal clarity in vehicle cabins is compromised by fixed-position interference and structural vibration. This mechanism adjusts physical transducer proximity and isolation to optimize audio capture.
What technical problems is BYD addressing in Sub-dashboard acoustic isolation mounts?
Inadequate acoustic signal clarity
(49)evidences
Ambient noise interference and hardware limitations degrade audio output quality. Improving signal-to-noise ratios ensures high-fidelity communication and sound reproduction within the vehicle cabin.
Excessive cabin noise transmission
(18)evidences
Unwanted sound propagation through structural gaps and ventilation pathways. Reducing acoustic leakage improves cabin quietness without compromising airflow requirements.
Inaccurate cabin noise simulation
(7)evidences
Inaccurate measurement of vibration-acoustic coherence leads to poor isolation performance. Precise identification of noise transmission paths prevents cabin resonance and improves passenger comfort.
Acoustic signal interference and vibration
(7)evidences
Mechanical vibrations and structural noise within vehicle housing assemblies distort audio capture. Mitigating these disturbances ensures clear voice command recognition and communication quality.