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Intelligent Proximity Sensors

机译:智能邻近传感器

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Radio-frequency based Intelligent Proximity Sensors for detection as well as identification of objects is presented. A resonant structure is constructed that creates a near-field with three-dimensional extent in the same order of magnitude as the physical size of the objects to be detected and identified. As an object is brought within the extent of the near-field, a redistribution of electric and magnetic fields take place, modifying the reflection coefficient (i.e. impedance) of the resonant structure monitored through a port. The object under test, with its own natural frequencies, perturbs the resonant frequency of the monitoring structure to create a unique set of natural frequencies (poles and zeros). These poles and zeros, depending on the size, shape, material composition and orientation, constitute the RF signature of the object and can be determined from the measurement of reflection coefficient. This technique can be used to create smart shelves for automated inventory without the need for tagging, as well for a variety of security applications. The technique can be used for metallic and non-metallic objects, as well as for a combination thereof. The basic principle is illustrated by way of electromagnetic simulation, and implementation of a smart tray using the principle is presented.
机译:呈射频基于频率的智能接近传感器以及对象的识别。构建谐振结构,其以与要检测和识别的物体的物理尺寸相同的数量级以三维范围产生近距离的结构。当物体被带到近场的范围内时,发生电场的重新分配,修改通过端口监测的谐振结构的反射系数(即阻抗)。正在测试的对象,具有自身的自然频率,扰动了监控结构的谐振频率,以创建独特的自然频率(杆和零)。这些极点和零,取决于尺寸,形状,材料组成和取向,构成物体的RF签名,并且可以从反射系数的测量确定。此技术可用于为自动化库存创建智能架,而无需标记,以及各种安全应用。该技术可用于金属和非金属物体,以及其组合。基本原理通过电磁模拟来说明,并提出了使用原理的智能托盘的实现。

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