标题: 多输入多输出正交分频多工系统之子载波间干扰连续消除
Successive ICI Cancellation in MIMO-OFDM Systems
作者: 郭珈纭
Chia-Yun Kuo
吴文榕
Wen-Rong Wu
电信工程研究所
关键字: 多输入多输出;正交分频多工;子载波间干扰;都卜勒效应;时变通道;MIMO;OFDM;Intercarrier Interference;Doppler effect;time-varying channel
公开日期: 2004
摘要: OFDM系统中通道快速变化会破坏子载波间之正交性,并因而导致子载波间干扰(intercarrier interference, ICI)。在单输入单输出(single-input single-output, SISO)-OFDM系统中,用于缓和ICI问题的方法有最小均方误差(Minimum mean square error, MMSE)等化器与连续ICI消除器(successive ICI cancellation),而这两种方法效能主要受限于通道估计的准确度,要获得准确的通道估计值需要大量的pilot tones,但是相对付出代价是会减少频宽使用效率。在本论文中,吾人针对MIMO-OFDM系统中ICI的问题提出一个递回估计通道与连续消除ICI的演算法,其基本概念为连续消除ICI并递回重新估计通道。MIMO-OFDM系统中会将所有的子载波一起排序供后续作ICI消除,此外,吾人在MMSE估计上会利用快速演算法以减少运算复杂度。最后模拟结果显示出,本论文提出的演算法作用于MIMO-OFDM系统中通道快速变化的环境可以大幅降低ICI效应。
Fast channel variation will destroy the orthogonality of subcarriers in OFDM systems and this will result in intercarrier interference (ICI). Minimum mean square error (MMSE) and successive ICI cancellation have been proposed to mitigate this problem in single-input single-output (SISO) OFDM systems. However, the performance of these methods greatly depends on the channel estimation. To obtain good estimation, a great amount of pilot tones are required and this will reduce the bandwidth utilization efficiency. In this thesis, we propose a recursive channel estimation and successive ICI cancellation for MIMO-OFDM systems. The main idea is to successively cancel ICI and perform channel re-estimation. In ICI canceling, all tones in MIMO-OFDM systems are jointly sorted. To reduce the computational complexity, we also employ a fast algorithm in the MMSE estimate. Simulations show that the proposed algorithm can greatly reduce the ICI effect in MIMO-OFDM systems operated in the fast channel variation environment.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009213511
http://hdl.handle.net/11536/69523
显示于类别:Thesis


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