Determining the number of true different permutation polynomials of degrees up to five by Weng and Dong algorithm
Author:
Publisher
Springer Science and Business Media LLC
Subject
Electrical and Electronic Engineering
Link
http://link.springer.com/article/10.1007/s11235-017-0335-y/fulltext.html
Reference32 articles.
1. Takeshita, O. Y. (2007). Permutation polynomial interleavers: An algebraic-geometric perspective. IEEE Transactions on Information Theory, 53(6), 2116–2132.
2. Sun, J., & Takeshita, O. Y. (2005). Interleavers for turbo codes using permutation polynomials over integer rings. IEEE Transactions on Information Theory, 51(1), 101–119.
3. Takeshita, O. Y. (2006). On maximum contention-free interleavers and permutation polynomials over integer rings. IEEE Transactions on Information Theory, 52(3), 1249–1253.
4. Ryu, J., & Takeshita, O. Y. (2006). On quadratic inverses for quadratic permutation polynomials over integer rings. IEEE Transactions on Information Theory, 52(3), 1254–1260.
5. Takeshita, O.Y. (2006). A new metric for permutation polynomial interleavers. In Proceedings of IEEE international symposium on information theory (ISIT), Seattle, USA, pp. 1983–1987.
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1. When Is the Number of True Different Permutation Polynomials Equal to 0?;Mathematics;2019-10-25
2. Nonlinearity Degree for CPP, 4-PP, and 5-PP Interleavers for Turbo Codes;2019 11th International Conference on Electronics, Computers and Artificial Intelligence (ECAI);2019-06
3. Correction to: The number of different true permutation polynomial based interleavers under Zhao and Fan sufficient conditions;Telecommunication Systems;2018-12-11
4. Determining the Number of Permutation Polynomial-Based Interleavers in Terms of Their Length;Permutation Polynomial Interleavers for Turbo Codes;2018-10-02
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