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Full-Duplex Bidirectional MIMO: Achievable Rates Under Limited Dynamic Range

机译:全双工双向MIMO:有限动态范围内的可达到速率

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In this paper, we consider the problem of full-duplex bidirectional communication between a pair of modems, each with multiple transmit and receive antennas. The principal difficulty in implementing such a system is that, due to the close proximity of each modem's transmit antennas to its receive antennas, each modem's outgoing signal can exceed the dynamic range of its input circuitry, making it difficult—if not impossible—to recover the desired incoming signal. To address these challenges, we consider systems that use pilot-aided channel estimates to perform transmit beamforming, receive beamforming, and interference cancellation. Modeling transmitter/receiver dynamic-range limitations explicitly, we derive tight upper and lower bounds on the achievable sum-rate, and propose a transmission scheme based on maximization of the lower bound, which requires us to (numerically) solve a nonconvex optimization problem. In addition, we derive an analytic approximation to the achievable sum-rate, and show, numerically, that it is quite accurate. We then study the behavior of the sum-rate as a function of signal-to-noise ratio, interference-to-noise ratio, transmitter/receiver dynamic range, number of antennas, and training length, using optimized half-duplex signaling as a baseline.
机译:在本文中,我们考虑一对分别具有多个发送和接收天线的调制解调器之间的全双工双向通信问题。实施这种系统的主要困难在于,由于每个调制解调器的发射天线与接收天线的距离非常近,每个调制解调器的输出信号可能会超出其输入电路的动态范围,因此,即使不是不可能,也很难恢复。所需的输入信号。为了解决这些挑战,我们考虑使用导频辅助信道估计来执行发射波束成形,接收波束成形和干扰消除的系统。明确地对发送器/接收器动态范围限制进行建模,我们在可实现的总速率上推导出严格的上限和下限,并提出基于下限最大化的传输方案,这要求我们(从数字上)解决非凸优化问题。此外,我们得出了可达到的总和率的解析近似值,并在数值上表明了它的准确性。然后,我们使用优化的半双工信令作为信噪比,干扰/噪声比,发射机/接收机动态范围,天线数量和训练长度的函数,研究求和率的行为。基线。

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