Wireless communication using fully passive metal reflectors is a promising technique for coverage expansion, signal enhancement, rank improvement and blind-zone compensation, thanks to its appealing features including zero energy consumption, ultra low cost, signaling- and maintenance-free, easy deployment and full compatibility with existing and future wireless systems. However, a prevalent understanding for reflection by metal plates is based on Snell's Law, i.e., signal can only be received when the observation angle equals to the incident angle, which is valid only when the electrical dimension of the metal plate is extremely large. In this paper, we rigorously derive a general reflection model that is applicable to metal reflectors of any size, any orientation, and any linear polarization. The derived model is given compactly in terms of the radar cross section (RCS) of the metal plate, as a function of its physical dimensions and orientation vectors, as well as the wave polarization and the wave deflection vector, i.e., the change of direction from the incident wave direction to the observation direction. Furthermore, experimental results based on actual field measurements are provided to validate the accuracy of our developed model and demonstrate the great potential of communications using metal reflectors.
翻译:使用完全被动的金属反射器进行无线通信是扩大覆盖范围、增强信号、改进等级和对视区补偿的一个很有希望的技术,因为其具有吸引力的特点,包括零能源消耗、超低成本、无信号和维护、容易部署和与现有和未来无线系统完全兼容,然而,金属板反射的普遍理解是基于Snell法,即只有在观测角度与事件角度相等时才能收到信号,而这只有在金属板的电子尺寸极大时才有效。我们本文件严格地提出了一个适用于任何尺寸、任何方向和任何线性极化的金属反射器的一般反射模型。衍生模型以金属板的雷达截面(RCS)为缩写,作为其物理尺寸和定向矢量的函数,以及波极和波偏向矢量的函数,即从事件波波向方向向向向向方向变化时才能收到信号。此外,根据实际的实地测量结果提供了实验结果,以证实我们开发的模型的准确性,并展示使用金属反射器进行通信的巨大潜力。