Joint decision-directed beamforming and channel equalization approach for OFDM systems

Chih-Feng Wu, Chun-Hung Chen
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Abstract

In this paper, a joint decision-directed beamforming and channel equalization approach is presented for OFDM systems in the presence of co-channel interference (CCI). According to the minimum mean-square error (MMSE) criterion, the cost function of the joint approach is proposed to minimize the MSE on each subchannel and to further improve the system performance. The joint approach is a dual-loop structure composed of a beamforming and a channel equalization loops. The beamforming loop is primarily employed to suppress CCI. The channel equalization loop is used to compensate the baseband equivalent channel variations caused by multipath fading channel and adaptation of beamformer. The simulations are done for the multipath frequency-selective fading channel with CCI to show that the proposed approach can effectively eliminate CCI and compensate the channel distortions, thereby enhancing the system performance compared with the considered pilot-aided approach.
OFDM系统的联合决策定向波束形成和信道均衡方法
针对存在共信道干扰的OFDM系统,提出了一种联合决策定向波束形成和信道均衡方法。根据最小均方误差(MMSE)准则,提出联合方法的代价函数,使各子信道上的均方误差最小,进一步提高系统性能。该联合方法是由波束形成环路和信道均衡环路组成的双环结构。波束形成环路主要用于抑制CCI。信道均衡环路用于补偿由多径衰落信道和波束形成器自适应引起的基带等效信道变化。通过对带CCI的多径频率选择衰落信道的仿真,表明该方法能够有效地消除CCI并补偿信道畸变,从而提高系统性能。
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