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Modeling, simulation and measurement of a bidirectional optical interconnection system for industrial applications

机译:面向工业应用的双向光互连系统的建模,仿真和测量

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This paper presents a bidirectional optical data transmission system as an enhancement of a contactless power transmission system (CPTS). The latter consists of two separate devices and is able to transmit up to 240 W of electrical power using inductive resonant coupling. The optical system consists of two self-developed light-guiding structures and a short-reach free-space optical path. As source and sink of the optical system a light-emitting diode resp. a photodiode with a centroid wavelength of 850 nm are used. The optical system is positioned within the CPTS; it transmits the PROFIBUS protocol. Due to the restrictions given by the applications areas of the CPTS, such as air gap up to 5 mm, misalignment up to 2 mm, tilting up to 5° and rotation angle up to 360°, different kinds of light-guiding structures are analyzed by simulation. Based on these results the most promising structures are selected and manufactured. Hereafter the attenuation and the near field characteristic of one light-guiding structure is analyzed. After this, the attenuation based on misalignment, variation of air gap, tilting and rotation between two light-guiding structures are analyzed by measurement. To check whether the requirements of the PROFIBUS has been satisfied by the complete data transmission system, the transient transmission behavior of the system was analyzed by a pseudo-random bit stream. In this paper the most important results of the design, the simulation and the measurement are explained. The presented results demonstrate the ability to design of such systems based on simulations and to evaluate the suitability of various geometries for present and future works.
机译:本文提出了一种双向光学数据传输系统,作为非接触式电力传输系统(CPTS)的增强。后者由两个独立的设备组成,并且能够使用感应谐振耦合传输高达240 W的电能。光学系统由两个自行开发的导光结构和一个短距离自由空间光路组成。作为光学系统的源和宿,分别有一个发光二极管。使用质心波长为850 nm的光电二极管。光学系统位于CPTS内;它传输PROFIBUS协议。由于受CPTS应用领域的限制,例如气隙不超过5毫米,未对准不超过2毫米,倾斜不超过5°和旋转角度不超过360°,因此分析了各种导光结构通过仿真。基于这些结果,选择并制造了最有前途的结构。此后,分析一种导光结构的衰减和近场特性。此后,通过测量来分析基于未对准,气隙变化,两个导光结构之间的倾斜和旋转的衰减。为了检查整个数据传输系统是否满足PROFIBUS的要求,通过伪随机位流分析了系统的瞬时传输行为。本文解释了设计,仿真和测量的最重要结果。呈现的结果证明了基于仿真设计此类系统并评估各种几何形状对当前和未来工作的适用性的能力。

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