In this paper, the impact of imperfect beam alignment (IBA) on millimeter wave (mmWave) wireless power transfer (WPT) is investigated. We consider a mmWave WPT network, where the location of the energy transmitters follows a Poisson point process. Instead of the mostly used flat-top antenna model, we adopt the Gaussian antenna model suggested by the 3rd Generation Partnership Project (3GPP) for better accuracy. Two beam alignment error (BAE) models, i.e., truncated Gaussian and uniform models, are introduced to represent different BAE sources. We derive the probability density functions (PDFs) of the cascaded antenna gain with both BAE models and then provide the approximated PDFs for tractability. With the help of Fox's H function, the analytic expression for the energy coverage probability with nonlinear energy harvesting model is derived. Besides, we deduce a closed-form expression of the average harvested radio frequency (RF) energy. The simulation results verify our theoretical results and demonstrate the performance degradation incurred by BAE. It also shows that the flat-top antenna model cannot always provide accurate performance evaluation in the presence of BAE.
翻译:在本文中,对不完善的波束对准(IBA)对毫米波(mmWave)无线电源传输(WPT)的影响进行了调查。我们考虑的是一毫米Wave WPT网络,其中能量发射机的位置遵循Poisson点过程。我们采用由第三代伙伴关系项目(3GPP)建议的高斯天线模型,以提高准确性。我们引入了两种波束对准(BAE)错误模型,即快速高斯仪和统一模型,以代表不同的BAE源。我们用两个BAE模型来得出级天线增益的概率密度函数(PDFs),然后提供近似于PDFS的可移动性。在Fox H功能的帮助下,我们得出了非线性能源采集模型对能源覆盖概率的分析表达。此外,我们推断出平均收成无线电频率(RF)的封闭式表达方式。模拟结果证实了我们的理论结果并展示了BAE的性能降解。它还表明,在BAE天线模型中,平式天线模型的性表现总是无法准确。