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PAPERS |
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Signal Representation Including Waveform Envelope by Clustered Line-Spectrum Modeling
(PDF-247KB) |
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M. Kazama, K. Yoshida, and M. Tohyama |
123 |
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When modeling a narrow-band signal, which includes spectral lines close
to the peak, the effect of windowing truncation also appears in the
region near the peak spectral line. By extending previous research, the
authors propose a method to model the spectrum near peaks. This requires
an interpolation to find the peak, peak picking, and a model of the
effect of windowing in order to extract the slowly varying envelope
information. Several examples of audio signals with noise, called
clustered line-spectrum modeling, are used to demonstrate practical
applications of the approach. |
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ENGINEERING REPORTS |
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A Moving-Horizon Optimal Quantizer for Audio Signals
(PDF-273KB) |
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Graham C. Goodwin, Daniel E. Quevedo, and David McGrath |
138 |
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Quantizing, or requantizing a previously digitized signal, produces
errors that are perceived as noise. While a time-invariant noise-shaping
feedback can move the noise spectrum to a region of less sensitivity,
this conventional approach is actually a subset of a more general
method. In the proposed extension, quantization decisions use a
perceptual model that also analyzes future samples. A look ahead of only
three samples, called a moving horizon, is sufficient to produce even
lower perceived noise without adding significant computational
complexity. |
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Test Signal Generation and Accuracy of Turntable Control in a Dummy-Head Measurement System
(PDF-76K) |
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György Wersényi and András Illényi |
150 |
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Unlike the typical application, ultrahigh-accuracy measurements of the
head-related transfer function are required when studying the influence
of small changes in the acoustic environment near the head. To achieve
the needed accuracy, the normal measurement method was modified.
Low-crest factor, pseudo-random noise sequences replaced the
conventional impulse, and the turntable positioning of the dummy head
was modified for high-positional repeatability. |
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Loudspeaker Equalizer Design for Near-Sound-Field Applications
(PDF-100K) |
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Wee Ser, Peng Wang, and Ming Zhang |
156 |
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Single-user loudspeaker presentation venues, such as those found in
transaural and binaural systems or in personal computers, can not
benefit from the conventional form of frequency response equalization.
Those optimizations are on-axis signal, average power, or some other
generic metric. Single-user applications benefit by optimizing the sound
at the listener's two ears in the near field and no other place. The
proposed method demonstrates an equalization method that improves
absolute accuracy at both ears and minimizes differential errors between
the two ears. |
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LETTERS TO THE EDITOR |
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Comments on "A Simplified Wavetable Matching Method Using Combinatorial Basis Spectra Selection"
(PDF-36K) |
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Robert Bristow-Johnson |
162 |
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Author's Reply |
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Andrew Horner |
163 |
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STANDARDS AND INFORMATION DOCUMENTS |
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AES Standards Committee News
(PDF-24K) |
164 |
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Analog recording; loudspeaker modeling and measurement; audio file
transfer; Internet audio delivery; audio metadata |
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FEATURES |
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23rd Conference Preview, Copenhagen
(PDF-1.7MB) |
170 |
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Calendar
(PDF-843K) |
172 |
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Program
(PDF-300K) |
174 |
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Registration Form
(PDF-21K) |
179 |
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Moving Digital Audio, Part 2-File Transfer
(PDF-1.7MB) |
180 |
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DEPARTMENTS |
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News of the Sections
(PDF-351K) |
188 |
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Upcoming Meetings
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192 |
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(PDF-194K) |
193 |
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New Products and Developments
(PDF-240K) |
195 |
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Available Literature
(PDF-10K) |
197 |
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(PDF-50K) |
198 |
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Advertiser Internet Directory
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200 |
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(PDF-33K) |
202 |
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AES Conventions and Conferences
(PDF-35K) |
208 |
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EXTRAS |
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(PDF-25K) |
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(PDF-26K) |
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