E. Perez Gonzalez, J. D. Reiss, and J. Wells, “The Phase Amplitude Control Bit Stream Adder,” in Proc. AES Conference: 31st International Conference: New Directions in High Resolution Audio, Jun. 2007, Paper 10. [Online]. Available: https://aes.org/publications/elibrary-page/?id=13945
Perez Gonzalez E, Reiss JD, Wells J. The Phase Amplitude Control Bit Stream Adder. In: AES Conference: 31st International Conference: New Directions in High Resolution Audio. Audio Engineering Society; 2007. Paper 10. Available from: https://aes.org/publications/elibrary-page/?id=13945
@inproceedings{PerezGonzalez2007_13945,
author = {Perez Gonzalez, Enrique and Reiss, Joshua D. and Wells, Jez},
title = {{The Phase Amplitude Control Bit Stream Adder}},
booktitle = {AES Conference: 31st International Conference: New Directions in High Resolution Audio},
note = {Paper 10},
year = {2007},
month = jun,
publisher = {Audio Engineering Society},
url = {https://aes.org/publications/elibrary-page/?id=13945}
}
TY - CPAPER
TI - The Phase Amplitude Control Bit Stream Adder
AU - Perez Gonzalez, Enrique
AU - Reiss, Joshua D.
AU - Wells, Jez
T2 - AES Conference: 31st International Conference: New Directions in High Resolution Audio
M1 - Paper 10
PY - 2007
DA - 2007/06/06
UR - https://aes.org/publications/elibrary-page/?id=13945
PB - Audio Engineering Society
LA - en
AB - This research introduces a one-bit signal processing structure called the phase amplitude control bit stream adder. The proposed method is a digital filter structure, which is capable of controlling amplitude and phase over a one-bit sine wave without the need of directly multiplying the one-bit stream with a floating-point constant. The method allows performing signal processing in the one-bit domain, thus maintaining high-resolution characteristics associated with one-bit signals. It has applications in precision variable oscillator control and in oscillator bank additive synthesis reconstruction models. The research also explores a method for one-bit oscillator bank synthesis, without using intermediate multi-bit stages directly applied to the signal.
ER -