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A Novel one-tap frequency domain RLS equalizer combined with Viterbi decoder using channel state information in OFDM systems Advisor: Yung-an Kao Student:

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Presentation on theme: "A Novel one-tap frequency domain RLS equalizer combined with Viterbi decoder using channel state information in OFDM systems Advisor: Yung-an Kao Student:"— Presentation transcript:

1 A Novel one-tap frequency domain RLS equalizer combined with Viterbi decoder using channel state information in OFDM systems Advisor: Yung-an Kao Student: Chian Young

2 outline  Introduction  System overview  A Novel 1-tap frequency domain RLS equalizer  Viterbi Decoding with CSI  Simulation result

3 Introduction(1/3)  The advantage of OFDM ’ s parallel transmission scheme: frequency selective channel  multiple flat fading sub-channels  the sub-channel equalization in frequency is simple Transmit Spectrum Receive Spectrum Channel Training Tone Data Tone Channel Spectrum

4 Introduction(2/3)  The main factors that distort the signal in OFDM system: Channel Noise Frequency offset: CFO (carrier frequency offset), SFO (sampling frequency offset)

5 Introduction(3/3)  The benefit of the proposed equalizer structure: Compensate signal distorted by the channel, CFO and SFO at the same time The division operation is not required Combine with CSI to improve system performance

6 System overview (receiver) In the proposed FEQ structure, the constellation must be adjusted Signal affect by channel SFO, CFO, noise, etc.. CSI is obtain from 1-tap FEQ A modified RLS algorithm is used or … or

7 A Novel 1-tap frequency domain RLS equalizer(1/4)  Filtering equation: Definition of :  rewrite RLS filtering equation: magnitude phase Y k,l : EQ output X k,l :EQ input k : k-th sub-carrier l : l-th OFDM symbol λ k : forgetting factor 0<λ <1. Φ k,l :correlation matrix w k,l : equalizer weighting

8 A Novel 1-tap frequency domain RLS equalizer(2/4)  The update equation for  The update equation for Φ k,l  Error signal is not used  No division

9 A Novel 1-tap frequency domain RLS equalizer(3/4)  From,the magnitude is not compensated: 1-tap FEQ input 1-tap FEQ output

10 A Novel 1-tap frequency domain RLS equalizer(4/4)  We have to adjust the constellation of the equalized signal by Φ k,l times on each sub- carrier 13-3 -3 1 3 - 3 -3-3 - -3-3 3 : Equalized signal constellation size multiply by Φ k,l times

11 Viterbi Decoding with CSI(1/3)  CSI (channel state information) Each sub-carrier experiences different flat fading (SNR) SNR high  high reliability SNR low  low reliability Those reliabilities can be collected as the CSI

12 Viterbi Decoding with CSI(2/3)  VITERBI DECODING WITH CSI We use CSI to reflect different sub- channel fading Viterbi decoding: select the path on code trellis with the minimum Euclidean distance Adding CSI when calculating the Euclidean distance  improve reliability on calculating the Euclidean distance

13 Viterbi Decoding with CSI(3/3)  The calculation of the Euclidean distance:  When SNR is high enough:  Adding CSI to D : the adjusted signal constellation : possible transmitted signal n : n-th de-interleaver output

14 Simulation environment & parameters  Follows IEEE 802.11a standard  CFO=3.125kHz,SFO=800Hz  Indoor Rayleigh fading multipath channel with Trms=50ns,Ts=50ns  1000 packets, 256bytes/packet

15 Simulation result PER performance for IEEE 802.11a (no CSI aided) PER performance for IEEE 802.11a (CSI aided)


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