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Adaptive step control of LMS-based Interference Cancellation for WMAN ICS radio repeater

机译:WMAN ICS无线中继器基于LMS的干扰消除的自适应步进控制

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The use of repeater for the support of high data rate data transmission and the extension of cell coverage is imperative for the Wibro system, which is based on the IEEE 802.16e standardization. Generally, if the separation between transmitting and receiving antennas is not sufficient, the oscillation of repeater and the interference due to the feedback signals from original transmitted signal may be occurred. Hence, the Interference Cancellation System (ICS) should be implemented as the important part of the repeater system for the mobile cellular systems in order to eliminate an unwanted signals from the corrupted signals in the receiver. In this paper, we propose an adaptive techniques for the LMS-based interference cancellation methods by changing the step size according to the variation of channel environment in order to improve the performance degradation which is occurred by using the fixed step size approach. Simulation results show that the proposed scheme attains a little lower BER performance and much faster convergence speed compared to the conventional LMS-based interference cancellation techniques. The proposed scheme can be applied to other OFDM-based cellular systems and also be expected to achieve a similar performance improvement to IMT-advanced system, which is called as the next generation mobile communication standards.
机译:对于基于IEEE 802.16e标准化的Wibro系统,必须使用中继器来支持高数据速率数据传输和扩展小区覆盖范围。通常,如果发射天线和接收天线之间的间隔不足,则可能会发生中继器的振荡以及由于来自原始发射信号的反馈信号而引起的干扰。因此,干扰消除系统(ICS)应该被实现为用于移动蜂窝系统的转发器系统的重要部分,以便从接收机中的损坏信号中消除不想要的信号。在本文中,我们提出了一种基于LMS的干扰消除方法的自适应技术,方法是根据信道环境的变化来改变步长,以改善使用固定步长方法导致的性能下降。仿真结果表明,与传统的基于LMS的干扰消除技术相比,该方案具有较低的BER性能和更快的收敛速度。所提出的方案可以应用于其他基于OFDM的蜂窝系统,并且还有望实现与IMT先进系统类似的性能改进,这被称为下一代移动通信标准。

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