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首页> 外文期刊>Electronics and Communications in Japan. Part 1, Communications >Techniques for Applying Interference Cancelers to High-Frequency Band Wireless Link Systems Employing Multilevel Modulation
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Techniques for Applying Interference Cancelers to High-Frequency Band Wireless Link Systems Employing Multilevel Modulation

机译:在采用多级调制的高频无线链路系统中应用干扰消除器的技术

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摘要

Wireless link systems have been investigated for use as base station networks in future mobile communication systems. They utilize a high-frequency band and multilevel modulation scheme to satisfy the system requirements for high capacity. An interference canceler (IC) is an effective method of enhancing the system frequency utilization efficiency. In such a system, however, performance of the IC is severely degraded by the frequency offset between the desired and interference signals since the frequency offset due to the inaccuracy of local oscillators in each base station becomes extremely large in a high-frequency band. Moreover, signal constellation ambiguity frequently occurs and this impairs the IC performance severely when multilevel modulation is employed. This paper proposes two methods to address the aforementioned problems. One method estimates and compensates for the frequency offset by adjusting the frequency of the desired signal to that of the interference signal. Another method controls the transmission power or the phase of the desired signal in order to avoid the signal constellation ambiguity. Simulation results show that the proposed methods effectively suppress the frequency offset and the signal constellation ambiguity and that the IC is effective when using the proposed methods even when employing a high-frequency signal and multilevel modulation.
机译:已经研究了无线链路系统,以在未来的移动通信系统中用作基站网络。他们利用高频带和多级调制方案来满足系统对高容量的要求。干扰消除器(IC)是提高系统频率利用效率的有效方法。然而,在这样的系统中,由于在高频带中由于每个基站中本地振荡器的不精确性引起的频率偏移变得非常大,因此,期望信号和干扰信号之间的频率偏移会严重降低IC的性能。此外,当采用多电平调制时,信号星座的模糊性经常发生,并且这严重损害了IC性能。本文提出了两种解决上述问题的方法。一种方法是通过将所需信号的频率调整为干扰信号的频率来估计并补偿频率偏移。另一种方法控制期望信号的发射功率或相位,以避免信号星座歧义。仿真结果表明,所提出的方法有效地抑制了频率偏移和信号星座的歧义,并且即使在采用高频信号和多电平调制的情况下,使用所提出的方法IC也有效。

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