Turbo Equalization of GMSK Signals Using Noncoherent Frequency Detection(<特集>Special Issue on Signals, Systems and Electronics Technology)
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概要
- 論文の詳細を見る
In this paper, we propose a turbo equalization scheme for GMSK signals with frequency detection. Although the channel is AWGN, there exists severe ISI (Inter-Symbol Interference) in the received signal due to the premodulation Gaussian baseband filter in the transmitter as well as the narrowband IF filter in the receiver. We regard these two filters as a real number inner convolutional encoder. The ISI equalizer for this inner encoder and the outer decoder for a RSC (Recursive Systematic Convolutional) code, are connected through a random (de-)interleaver. These inner and outer decoders generate the reliability values in terms of LLR (Log Likelihood Ratio), using MAP or SOVA algorithm with SISO (soft input and soft output). Moreover iterative decoding with the limitation of LLR values are employed between two decoders to achieve a turbo equalization for GMSK frequency detection. Through computer simulations, the proposed system shows the BER = 10^<-5> at E_b/N_O = 8.8dB, when we take BT = 0.6 (IF filter bandwidth multiplied by symbol duration) with the iteration number of 3. This means 3.1 dB improvement compared with the conventional scheme where the inner ISI equalizer is concatenated with the outer hard decision Viterbi decoder.
- 社団法人電子情報通信学会の論文
- 2002-03-01
著者
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Okada Tomoya
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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IWANAMI Yasunori
Department of Electrical and Computer Engineering, Nagoya Institute of Technology
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Okada T
Faculty Of Engineering Toyama Prefectural University
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Iwanami Yasunori
Department Of Computer Science And Engineering Graduate School Of Engineering Nagoya Institute Of Te
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Iwanami Yasunori
Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Iwanami Yasunori
The Department Of Electrical And Computer Engineering Nagoya Institute Of Technology
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Iwanami Yasunori
The Author Is With The Department Of Electrical And Computer Engineering Nagoya Institute Of Technol
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