Turbo nonlinear CPFSK with iterative decoding

B. J. Ku, W. G. Kim, H. Y. Yang, D. S. Hong, C. E. Kang

Research output: Contribution to journalConference article

Abstract

A Turbo nonlinear continuous phase frequency shift keying (CPFSK) with iterative maximum a posteriori probability (MAP) decoding is proposed. It uses the nonlinear CPFSK encoding components proposed by us. They have nonlinear characteristics and good performance of power and bandwidth with simple structures.

Original languageEnglish
Number of pages1
JournalIEEE International Symposium on Information Theory - Proceedings
Publication statusPublished - 2000 Dec 1

Fingerprint

Iterative Decoding
Iterative decoding
Frequency shift keying
Decoding
Maximum a Posteriori
Bandwidth
Encoding

All Science Journal Classification (ASJC) codes

  • Electrical and Electronic Engineering

Cite this

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title = "Turbo nonlinear CPFSK with iterative decoding",
abstract = "A Turbo nonlinear continuous phase frequency shift keying (CPFSK) with iterative maximum a posteriori probability (MAP) decoding is proposed. It uses the nonlinear CPFSK encoding components proposed by us. They have nonlinear characteristics and good performance of power and bandwidth with simple structures.",
author = "Ku, {B. J.} and Kim, {W. G.} and Yang, {H. Y.} and Hong, {D. S.} and Kang, {C. E.}",
year = "2000",
month = "12",
day = "1",
language = "English",
journal = "IEEE International Symposium on Information Theory - Proceedings",
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publisher = "Institute of Electrical and Electronics Engineers Inc.",

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Turbo nonlinear CPFSK with iterative decoding. / Ku, B. J.; Kim, W. G.; Yang, H. Y.; Hong, D. S.; Kang, C. E.

In: IEEE International Symposium on Information Theory - Proceedings, 01.12.2000.

Research output: Contribution to journalConference article

TY - JOUR

T1 - Turbo nonlinear CPFSK with iterative decoding

AU - Ku, B. J.

AU - Kim, W. G.

AU - Yang, H. Y.

AU - Hong, D. S.

AU - Kang, C. E.

PY - 2000/12/1

Y1 - 2000/12/1

N2 - A Turbo nonlinear continuous phase frequency shift keying (CPFSK) with iterative maximum a posteriori probability (MAP) decoding is proposed. It uses the nonlinear CPFSK encoding components proposed by us. They have nonlinear characteristics and good performance of power and bandwidth with simple structures.

AB - A Turbo nonlinear continuous phase frequency shift keying (CPFSK) with iterative maximum a posteriori probability (MAP) decoding is proposed. It uses the nonlinear CPFSK encoding components proposed by us. They have nonlinear characteristics and good performance of power and bandwidth with simple structures.

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