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首页> 外文期刊>IEEE Transactions on Communications >Beamforming Optimization for Wireless Network Aided by Intelligent Reflecting Surface With Discrete Phase Shifts
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Beamforming Optimization for Wireless Network Aided by Intelligent Reflecting Surface With Discrete Phase Shifts

机译:离散相移智能反射表面对无线网络的波束成形优化

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Intelligent reflecting surface (IRS) is a cost-effective solution for achieving high spectrum and energy efficiency in future wireless networks by leveraging massive low-cost passive elements that are able to reflect the signals with adjustable phase shifts. Prior works on IRS mainly consider continuous phase shifts at reflecting elements, which are practically difficult to implement due to the hardware limitation. In contrast, we study in this paper an IRS-aided wireless network, where an IRS with only a finite number of phase shifts at each element is deployed to assist in the communication from a multi-antenna access point (AP) to multiple single-antenna users. We aim to minimize the transmit power at the AP by jointly optimizing the continuous transmit precoding at the AP and the discrete reflect phase shifts at the IRS, subject to a given set of minimum signal-to-interference-plus-noise ratio (SINR) constraints at the user receivers. The considered problem is shown to be a mixed-integer non-linear program (MINLP) and thus is difficult to solve in general. To tackle this problem, we first study the single-user case with one user assisted by the IRS and propose both optimal and suboptimal algorithms for solving it. Besides, we analytically show that as compared to the ideal case with continuous phase shifts, the IRS with discrete phase shifts achieves the same squared power gain in terms of asymptotically large number of reflecting elements, while a constant proportional power loss is incurred that depends only on the number of phase-shift levels. The proposed designs for the single-user case are also extended to the general setup with multiple users among which some are aided by the IRS. Simulation results verify our performance analysis as well as the effectiveness of our proposed designs as compared to various benchmark schemes.
机译:智能反射表面(IRS)是一种经济效益的解决方案,用于通过利用能够反射具有可调节相移信号的大量低成本无源元件来实现未来的无线网络中的高频谱和能量效率。在IRS上的事先有效主要考虑在反射元素的连续相移,这实际上难以导致的硬件限制。相比之下,我们在本文中研究了IRS辅助无线网络,其中部署了每个元素的有限阶段移位的IRS,以帮助从多天线接入点(AP)到多个单个 - 天线用户。我们的目的,通过共同优化AP处的连续发射预编码和IRS的离散反射相位偏移来最小化AP的发射功率,经过给定的最小信号到干扰除噪声比(SINR)。用户接收器的约束。所考虑的问题被示出为混合整数非线性程序(MINLP),因此难以一般地解决。为了解决这个问题,我们首先使用IRS辅助的一个用户研究单用户案例,并提出了解决它的最佳和次优算法。此外,我们分析表明,与连续相移的理想情况相比,具有离散相移的IRS在渐近大量反射元件方面实现了相同的平方功率增益,而仅达到恒定的比例功率损耗关于相移级别的数量。对于单用户案例的建议设计也扩展到具有多个用户的一般设置,其中一些用户是由IRS辅助的。仿真结果验证了我们的性能分析以及与各种基准方案相比我们提出设计的有效性。

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