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April 1, 2026Nippon Onkyo Gakkaishi/Acoustical science and technology/Nihon Onkyo Gakkaishi0 citationsOpen Access

Inverse filter design using numerical optimization for binaural synthesis based on optimal source distribution

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KHK. HaraTHTsuguto HoshinoMYMotoki Yairi

Key Points

  • This research aims to enhance binaural synthesis by optimizing the transfer function matrix based on the Optimal Source Distribution.
  • Applied numerical optimization to gain and delay parameters
  • Reconstructed the transfer function matrix
  • Used discrete linear loudspeaker arrangements and frequency-band division filtering
  • Experimental validation with a multiway loudspeaker system
  • Reduced the condition number of the transfer function matrix
  • Validated effectiveness of the proposed reconstruction method
  • Improved sound quality in binaural synthesis using the optimal source distribution

Abstract

The theory of the Optimal Source Distribution (OSD) has been proposed as the basis for binaural synthesis over loudspeakers. In applying this theory to practical systems, discrete linear loudspeaker arrangements and frequency-band division filtering cause an increase in the condition number of the transfer function matrix. This paper proposes a transfer function matrix reconstruction method by applying gain and delay parameters that are optimized using numerical optimization to reduce the condition number. The effectiveness of the proposed method is experimentally validated using a multiway loudspeaker system based on the OSD principle.

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Cite This Study

Hara et al. (2026) studied this question.

synapsesocial.com/papers/69cd79bb5652765b073a68dfhttps://doi.org/10.1250/ast.e26.13
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