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Military 5G Mobile Networking as Driver of UAVs in Detecting RAM for Stealth Operation

机译:军事5G移动网络作为无人机在隐形运行RAM检测中的驱动器

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This paper puts forward the forthcoming technology in military impact especially in the stealth operation. Synthetized ferrite phase $B_{a}F_{e}(M_{n}C_{o})_{1}.{}_{5}T_{i_{1.5}}O_{19}$ using sol-gel method as RAM (Radar Absorber Material) is analyzed to avoid detection from radar by coating it on military vehicle and weaponry. FTIR (Fourier Transform Infrared) is an analytical technique applied to identify organic and some cases of inorganic materials. The measurement technique of infrared absorption radiation is applied upon the sample material versus wavelength, because each molecule absorbs infrared radiation at its characteristic frequencies. When $B_{a}F_{e}(M_{n}C_{o})_{1}.{}_{5}T_{i_{1.5}}O_{19}$ as Irradiated infrared Radar Absorber Material, the absorbed radiation process normally stimulates each molecule into a higher vibrational state. The absorbed light wavelength by one particular molecule is the energy gap function between the at-rest and excited vibrational states. Proposed issues of embedded FTIR sensor for detecting $B_{a}F_{e}(M_{n}C_{o})_{1}.{}_{5}T_{i_{1.5}}O_{19}$ as RAM in UAVs with 5G network architecture by means of high frequency spectrum would be the next frontier of military impact as it enables significantly faster speeds to process a large amount of data with lower latency and greater device connectivity.
机译:本文提出了即将到来的军事打击技术,尤其是隐身作战技术。使用溶胶凝胶法合成的铁氧体相$ B_ {a} F_ {e}(M_ {n} C_ {o})_ {1}。{} _ {5} T_ {i_ {1.5}} O_ {19} $由于对RAM(雷达吸收材料)进行了分析,以避免将雷达涂层在军用车辆和武器上,从而避免被雷达探测到。傅立叶变换红外(FTIR)是一种分析技术,用于识别有机材料和某些无机材料。红外吸收辐射的测量技术应用于样品材料与波长的关系,因为每个分子都以其特征频率吸收红外辐射。当将$ B_ {a} F_ {e}(M_ {n} C_ {o})_ {1}。{} _ {5} T_ {i_ {1.5}} O_ {19} $作为辐照红外雷达吸收材料时,吸收的辐射过程通常会刺激每个分子进入更高的振动状态。一个特定分子吸收的光波长是静止和激发振动状态之间的能隙函数。提议的用于检测$ B_ {a} F_ {e}(M_ {n} C_ {o})_ {1}的嵌入式FTIR传感器的问题。{} _ {5} T_ {i_ {1.5}} O_ {19} $因为具有5G网络架构的无人机中的RAM通过高频频谱将成为军事领域的下一个前沿领域,因为它可以以更快的速度处理大量数据,并具有更低的延迟和更大的设备连接性。

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