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Smart antenna design for high-speed moving vehicles with minimum return loss

机译:用于高速移动车辆的智能天线设计,具有最小回报损耗

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The Internet of Things (IoT) is a connection amongst people and applications to another dimension of machine-to-machine communication. IoT scenario is unequivocally related with the development of the advancement of wireless sensor systems (WSNs) and radio-frequency identification (RFID) frameworks. Owing to the technological advances around the world, energy demand is increasing exponentially. Energy proficiency has turned out to be one of the real worries in the present life that essentially influence every single human action. In communication system, return loss is a major issue for transmission process. Owing to return loss, a huge amount of power consumption occurs. This phenomenon is contemporary with transmission process, and it will initiate a serious problem for high-speed moving substance like aircraft, rockets, and spaceship. To overcome this problem, a four-element cylindrical antenna (conformal) array with better axial radiation is proposed. The four U-shaped slots are uniformly wrapped around on a cylindrical surface, which produces tilted radiation. To enhance the axial radiation, four conformal elements are reefed by a one- to four-microstrip feed network. The proposed conformal design has a bandwidth of 200 MHz (narrow bandwidth) at the center frequency of 3.9 GHz, covering the range of 3 to 3.9 GHz, with the gain of 4.9 dBic, and can be suitable for unmanned aerial vehicles (UAV), wireless avionics intra-communication (WAIC), and so forth. The proposed design is low profile and can be used for high-speed avionic applications. Finally, machine learning technique is explored to design a model for a smart antenna with optimistic parameters to reduce return loss and enhance the transmission rate.
机译:事物互联网(物联网)是人员和应用程序到机器到机器通信的另一种维度。与无线传感器系统(WSN)和射频识别(RFID)框架的进步的发展,IOT方案明确地与开发有关。由于世界各地的技术进步,能源需求呈指数增长。能量熟练能力原因是目前生活中的真正担忧之一,基本上影响了每一个人类行动。在通信系统中,回报损失是传输过程的主要问题。由于回报损失,发生了大量的功耗。这种现象是现代因传输过程,它将为飞机,火箭和宇宙飞船等高速移动物质发起严重的问题。为了克服这个问题,提出了一种具有更好轴向辐射的四元件圆柱形天线(共形)阵列。四个U形槽均匀地缠绕在圆柱形表面上,这产生倾斜辐射。为了增强轴向辐射,通过一个至四微三维馈送网络重新定义四个共形元件。所提出的保形设计在3.9GHz的中心频率下具有200 MHz(窄带宽)的带宽,占据3至3.9 GHz的范围,增益为4.9 DBIC,并且可以适用于无人驾驶飞行器(UAV),无线航空电子通信(瓦米)等。所提出的设计是低调,可用于高速航空应用。最后,探索了机器学习技术来设计具有乐观参数的智能天线的模型,以减少回波损耗并提高传输速率。

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