In pursuance of the unused spectrum in higher frequencies, millimeter wave (mmWave) bands have a pivotal role. However, the high path-loss and poor scattering associated with mmWave communications highlight the necessity of employing effective beamforming techniques. In order to efficiently search for the beam to serve a user and to jointly serve multiple users it is often required to use a composite beam which consists of multiple disjoint lobes. A composite beam covers multiple desired angular coverage intervals (ACIs) and ideally has maximum and uniform gain (smoothness) within each desired ACI, negligible gain (leakage) outside the desired ACIs, and sharp edges. We propose an algorithm for designing such ideal composite codebook by providing an analytical closed-form solution with low computational complexity. There is a fundamental trade-off between the gain, leakage and smoothness of the beams. Our design allows to achieve different values in such trade-off based on changing the design parameters. We highlight the shortcomings of the uniform linear arrays (ULAs) in building arbitrary composite beams. Consequently, we use a recently introduced twin-ULA (TULA) antenna structure to effectively resolve these inefficiencies. Numerical results are used to validate the theoretical findings.
翻译:在追求高频率中未使用的频谱时,毫米波(mmWave)波段具有关键作用。然而,与毫米波段通信相关的高路损耗和散射率低突出表明必须采用有效的光成形技术。为了高效地搜索光束,为用户服务,并为多个用户共同服务,往往需要使用由多个脱节圆叶组成的复合光束。复合波束覆盖了所希望的多角覆盖间隔(ACIs),理想的复合波束在每个理想的ACI内具有最大和统一的增益(moothness),在理想的ACI之外有微不足道的增益(渗漏)和锐利边缘。因此,我们建议了一种算法,用于设计这种理想的复合代码手册,通过提供分析的封闭式解决方案,低计算复杂性。在光束的增益、渗漏和光之间有一个基本的权衡。我们的设计允许在改变设计参数的基础上实现这种交换的不同值。我们强调,在建设任意的复合光谱中,统一线阵列(ULA)的缺点最大和最差。因此,我们最近采用了一种双级的IL结果。