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  • 學位論文

用於正交分頻多工系統之可適性頻譜預編碼與調變技術

Adaptive spectral precoding and modulation in OFDM

指導教授 : 鐘嘉德

摘要


在本篇論文中,我們提出用於正交分頻多工系統的可適性頻譜預編碼與調變技術(adaptive spectral precoding and modulation orthogonal frequency division multiplexing , ASP-OFDM)),改善傳輸訊號的頻譜的效能。故在此系統中,能夠可適性的選擇頻譜預編碼階層與調變方式,並把此組合稱為一個傳輸模式(TX mode)。另外,也會探討使用了循環字首(cyclic prefix, CP)與保護區間內使用全為零的傳輸(zero padding, ZP)的正交分頻多工訊號,對系統平均頻譜益(spectral efficiency)的影響。接下來,在錯誤率和傳輸功率的限制下,找出在固定傳輸能量或可變傳輸能量時,傳輸模式的最佳的切換準位(switching levels)。最後,我們可以觀察出使用可適性頻譜預編碼將能比未使用的正交分頻多工系統提供更高的平均頻譜效率。

並列摘要


In this thesis, adaptive spectral precoding and modulation orthogonal frequency division multiplexing (ASP-OFDM) are proposed to improve the spectral performance. The coding order of the spectral prcoding and the modulation scheme, called the TX mode, are chosen in ASP-OFDM system. The average spectral efficiency of the transmitted signal with cyclic prefix (CP) or zero padding (ZP) is also considered. In constant power or variable power cases, the switching levels of adaptive TX mode are obtained under BER constraint. At last, we show the ASP-OFDM systems outperform AOFDM systems in average spectral efficiency.

參考文獻


【2】 C. D. Chung, “Spectral precoding for rectangularly pulsed OFDM,” IEEE Trans. Commun., submitted for publication, 2006.
【3】 C. D. Chung, “Spectrally precoded OFDM,” IEEE Trans. Commun., vol. 54, No. 12, pp.2173-2185, Dec. 2006.
【4】 S. T. Chung and A. J. Goldsmith, “Degrees of freedom in adaptive modulation: a unified view,” IEEE Trans. Commun., vol. 49, pp. 1561-1571, Sep. 2001
【5】 A. J. Goldsmith and S. Chua, “Variable rate variable power MQAM for fading channels,” IEEE Trans. Commun., vol. 45, pp. 1218-1230, Oct. 1997.
【6】 T. Keller and L. Hanzo, “Adaptive modulation techniques for duplex FDM transmission,” IEEE trans. Veh. Technol., vol.49, pp. 1893-1906, Sep. 2000

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