You are currently logged in as an
Institutional Subscriber.
If you would like to logout,
please click on the button below.
Home / Publications / E-library page
Only AES members and Institutional Journal Subscribers can download
In today`s competitive consumer audio market the Advanced Audio Coding (AAC) format has quickly become a must-have technology with its adoption on the Internet, in digital radio, digital television and home theatre. Compression using AAC retains high audio quality even at low bit rates. One reason for this effectiveness is the use of Huffinan variable length coding to represent frequency domain information. However, this requires to perform the relatively complex task of Huffman decoding in the audio decoder, which is typically very sensitive to cost and processor speed requirements. Furthermore, encoders can sometimes create worst-case scenarios consisting of very long code words, even when unnecessary. Thus, one needs to optimize the Huffinan decoding for these worst-case scenarios without giving up average performance. This paper discusses various methods for Huffinan decoding, their inherent implementation tradeoffs on a DSP platform and proposes improvements that are specific to the Huffman codebooks used in AAC.
Author (s): Mesarovic, Vladimir; Rao, Raghunath; Dokic, Miroslav; Deo, Sachin
Affiliation:
Cirrus Logic Inc, Austin, TX
(See document for exact affiliation information.)
Publication Date:
2001-04-06
Import into BibTeX
Session subject:
Silicon for Audio
Permalink: https://aes2.org/publications/elibrary-page/?id=10146
(574KB)
Click to purchase paper as a non-member or login as an AES member. If your company or school subscribes to the E-Library then switch to the institutional version. If you are not an AES member Join the AES. If you need to check your member status, login to the Member Portal.
Mesarovic, Vladimir; Rao, Raghunath; Dokic, Miroslav; Deo, Sachin; 2001; Optimized Huffman Decoding for AAC [PDF]; Cirrus Logic Inc, Austin, TX; Paper uk117; Available from: https://aes2.org/publications/elibrary-page/?id=10146
Mesarovic, Vladimir; Rao, Raghunath; Dokic, Miroslav; Deo, Sachin; Optimized Huffman Decoding for AAC [PDF]; Cirrus Logic Inc, Austin, TX; Paper uk117; 2001 Available: https://aes2.org/publications/elibrary-page/?id=10146