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Design and Modeling of a Flexible Conductive Fabric Antenna Integrated in an OLED Light Source for WIMAX Wireless Communication Systems

机译:用于WiMAX无线通信系统OLED光源中集成的柔性导电织物天线的设计与建模

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This work presents a new bendable antenna for worldwide interoperability for microwave access (WiMAX) wireless communication systems. These antennas, transparent and flexible, will be easily integrated into various mdia and in particular OLED lighting which could be part of the public lighting network of tomorrow as well as on all display media. The integration of these antennas as close as possible to the end-user is a possible solution to reduce the energy consumption which goes hand in hand with the increase in the data rate. This kind of new antenna, designed to be integrated in organic light-emitting diode (OLED), was modeled from a transparent VeilShieldTM conductive fabric and was placed on a 100% polyester substrate with a thickness of 1.5 mm and a loss tangent of 0.02. We have tested and evaluated the characteristic parameters of our antenna, namely the reflection coefficient, the radiation pattern and the gain, to find out the performance of our proposed design. The performance of the transparent conductive fabric integrated in the 100% polyester substrate is tested for the application of flexible antenna operating at 3.5 GHz with a gain value of 5.38 dB. We have integrated this proposed new antenna with the OLED light source containing four layers of different materials and electrical properties: aluminum cathode layer, polymer layer, indium tin oxide (ITO) anode layer and glass substrate layer. After integration, the resonant frequency shifted to 3.52 GHz with a gain value of 4.61 dB. In addition, we also tested the concave bending on the reflection coefficient of the proposed flexible antenna taking into account the different bending angles. This work demonstrates the possibility of integrating these unconventional materials used for the proposed antenna within the OLED despite weak effects on the resonant frequency and the gain of the proposed antenna after integration.
机译:这项工作提出了一种新的可弯曲天线,用于微波访问(WiMAX)无线通信系统的全球互操作性。这些天线,透明和灵活,将很容易地集成到各种MDIA中,特别是OLED照明,这可能是明天的公共照明网络以及所有显示介质的一部分。尽可能接近最终用户的这些天线的集成是一种可能的解决方案,以减少携带数据速率的增加的能量消耗。这种设计用于集成在有机发光二极管(OLED)中的新天线从透明的VEILSHIELDTM导电织物建模,并将厚度为1.5mm的100%聚酯基底和0.02的损失正切。我们已经测试并评估了我们天线的特征参数,即反射系数,辐射模式和增益,以了解我们所提出的设计的性能。在100%聚酯基板中集成的透明导电织物的性能被测试用于在3.5GHz下运行的柔性天线,增益值为5.38 dB。我们已经将该提出的新天线与包含四层不同材料和电性能的OLED光源集成:铝阴极层,聚合物层,氧化铟锡(ITO)阳极层和玻璃基板层。在集成之后,谐振频率会移至3.52GHz,增益值为4.61 dB。另外,我们还考虑了所提出的柔性天线的反射系数的凹面弯曲,以考虑不同的弯曲角度。这项工作表明,尽管对整合后谐振频率的弱势效应弱,但是在OLED中,可以将用于所提出的天线的非传统材料集成到OLED中。

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