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Robust beamforming in interference channels with imperfect transmitter channel information

机译:发射机信道信息不完善的干扰信道中强大的波束成形

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We consider K links operating concurrently in the same spectral band. Each transmitter has multiple antennas, while each receiver uses a single antenna. This setting corresponds to the multiple-input single-output interference channel. We assume perfect channel state information at the single-user decoding receivers whereas the transmitters only have estimates of the true channels. The channel estimation errors are assumed to be bounded in elliptical regions whose geometry is known at the transmitters. Robust beamforming optimizes worst-case received power gains, and a Pareto optimal point is a worst-case achievable rate tuple from which it is impossible to increase a link's performance without degrading the performance of another. We characterize the robust beamforming vectors necessary to operate at any Pareto optimal point. Moreover, these beamforming vectors are parameterized by K(K-1) real-valued parameters. We analyze the system's spectral efficiency at high and low signal-to-noise ratio (SNR). Zero forcing transmission achieves full multiplexing gain at high SNR only if the estimation errors scale linearly with inverse SNR. If the errors are SNR independent, then single-user transmission is optimal at high SNR. At low SNR, robust maximum ratio transmission optimizes the minimum energy per bit for reliable communication. Numerical simulations illustrate the gained theoretical results.
机译:我们认为K条链路在同一频谱段中同时运行。每个发射器都有多个天线,而每个接收器都使用单个天线。此设置对应于多输入单输出干扰通道。我们假设单用户解码接收器具有完美的信道状态信息,而发送器仅具有真实信道的估计。假设信道估计误差被限制在其几何形状在发射机处已知的椭圆区域中。稳健的波束成形可优化最坏情况下的接收功率增益,而帕累托最优点是可实现的最坏情况下的速率元组,从中可以提高链路性能而不降低另一个链路的性能。我们表征了在任何帕累托最优点上运行所必需的鲁棒波束成形矢量。此外,这些波束成形向量由K(K-1)个实值参数进行参数化。我们分析了高和低信噪比(SNR)时系统的频谱效率。仅当估计误差与反SNR成线性比例关系时,零强制传输才能在高SNR时实现全复用增益。如果误差与SNR无关,则在高SNR时单用户传输是最佳的。在低SNR时,稳健的最大比率传输可优化每位最小能量,以实现可靠的通信。数值模拟说明了所获得的理论结果。

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