Hybrid Beamforming for Outage-Minimization in Frequency Selective Millimeter-Wave Channels

Sota Uchimura, G. Abreu, K. Ishibashi
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Abstract

We propose a hybrid beamforming for coordinated multi-point (CoMP) transmission using orthogonal frequency division multiplexing (OFDM) over millimeter-wave (mmWave) channels to combat random propagation path blockages. In particular, a sum-of-outage-probability minimization problem with manifold constraints is formulated, which designs the hybrid beamformers, the data rate allocation, and the power allocation over subcarriers jointly to meet the prescribed data rate requirement. A new block stochastic learning mechanism exploiting prior knowledge of the path blockages is also introduced to solve the problem efficiently. Numerical results confirm the effectiveness of the proposed approach in minimizing the outage probability of users according to their target rate. Furthermore, these results also show that the proposed hybrid CoMP transmission only with a few radio frequency (RF) chains and knowledge of blockage probabilities achieves comparable outage performance to a fully digital CoMP transmission alternative with perfect knowledge of instantaneous path blockages.
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频率选择毫米波信道中最小化中断的混合波束形成
我们提出了一种混合波束形成,用于协调多点(CoMP)传输,使用毫米波(mmWave)信道上的正交频分复用(OFDM)来对抗随机传播路径阻塞。特别地,提出了具有多种约束条件的中断概率和最小化问题,该问题联合设计了混合波束形成器、数据速率分配和子载波上的功率分配,以满足规定的数据速率要求。引入了一种新的块随机学习机制,利用路径块的先验知识有效地解决了这一问题。数值结果证实了该方法在根据用户目标率最小化用户中断概率方面的有效性。此外,这些结果还表明,所提出的混合CoMP传输仅具有少量射频(RF)链和阻塞概率知识,其中断性能与具有瞬时路径阻塞知识的全数字CoMP传输替代方案相当。
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