标题: 多天线正交分频多工系统之通道估计与I/Q失衡补偿
Joint Maximum Likelihood Estimation of Channel and I/Q Imbalance for MIMO-OFDM Systems
作者: 徐进发
沈文和
电信工程研究所
关键字: 正交分频多工;I/Q失衡;通道估计;OFDM;I/Q imbalance;channel estimation
公开日期: 2004
摘要: 现今许多的应用需要具备高传输速率的无线通讯系统,而多天线正交分频多工(MIMO-OFDM)系统正是满足此特性的主流技术之ㄧ。在接收机架构方面,无论是在业界或是学术界,直接转换接收机(Direct Conversion Receiver)皆被广泛地采用,因为其具备有小体积,低成本和高整合度等优势。然而,此架构因为射频(Radio Frequency)元件不完美的缘故,无可避免地会产生一些射频损伤,像是直流偏移(DC Offset)、频率偏移(Frequency Offset)和I/Q失衡(I/Q Imbalance)…等,而I/Q失衡问题将是我们讨论的重点。此论文中将同时考虑通道估测以及I/Q失衡补偿两项议题,并提出一共同最大可能性估计(Joint Maximum Likelihood Estimation)之估计和补偿方法。再者,I/Q失衡有两种类型,第一种为不随频率变动,第二种为随频率变动,我们会针对两者各自提出估计及补偿的方法。另外,论文中的通道估计和I/Q失衡补偿演算法不仅可应用于单天线(SISO)正交分频多工系统,更可应用在多天线正交分频多工系统,例如IEEE802.11n。论文内也包含了最大可能性估计的效能分析与电脑模拟的结果,以验证演算法的正确性和可行性。
Wireless communication systems with high data rate are strongly desired by a variety of applications, and MIMO-OFDM is one of the promising technologies satisfying the need for high throughput. A direct-conversion receiver (DCR) architecture becomes a trend in industry and academic world nowadays because it is small, cheap and less power-consuming. This kind of architecture, however, accompanies with some radio frequency (RF) imperfections such as the direct current (DC) offset, frequency offset, in-phase/quadrature (I/Q) imbalance, and etc. In this thesis, the RF impairment of I/Q mismatch is addressed; moreover, we propose a joint maximum likelihood (ML) estimation of I/Q imbalance and channel for MIMO-OFDM systems, such as IEEE 802.11n. The problems of I/Q mismatch compensation and channel estimation are considered at the same time, and we offer the compensation algorithms based on not only frequency-independent but also frequency-dependent I/Q imbalances. In addition to SISO-OFDM systems, our algorithms are able to work in the MIMO-OFDM systems with tone-interleaved training sequences for MIMO channel estimation.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009213504
http://hdl.handle.net/11536/69446
显示于类别:Thesis


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