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Multi-antenna systems for wireless capsule endoscopy

机译:用于无线胶囊内窥镜检查的多天线系统

摘要

With the advent of new medical diagnostic techniques, the wireless capsule endoscopy has been emerged as more convenient than traditional endoscopy for the digestive tract monitoring. The typical use of wireless capsule endoscopy is to diagnose intricate areas of the small intestine. However, the current wireless capsule endoscopy systems suffer from low data rate which cannot meet the requirement for transmitting high resolution images. The poor quality of received images can bring ambiguities during the diagnosis.In this master thesis, the MIMO antennas employing polarization diversity is proposed for a wireless capsule endoscopy system at 433 MHz ISM band. The polarization diversity between in-body capsule and on-body receiver is considered to be main responsible for increasing the data rate. Two conformal dual polarized loop antennas are designed for the in-body capsule transmitter, while two planar dual polarized printed monopole antennas are designed for the on-body receiver. The on-body receiving antennas are designed using the flat and flexible substrates to study their impacts on the size, bandwidth and efficiency.The simulated refection coefficients of proposed in-body MIMO antennas are less than -10 dB over the required bandwidth (400-500 MHz). The mutual coupling between them is found to be less than -20 dB over a wide range of frequencies. The on-body MIMO antennas are measured on the liquid phantom to validate the simulated results. The simulated and measured results showed good agreement of matching in terms of reflection coefficients and mutual coupling. Moreover, the size of on-body antennas found to be compact by using the high permittivity substrate. The on-body MIMO antennas are also measured on the human body. It is observed that the lossy properties of skin significantly reduce the mutual coupling between the MIMO antennas.
机译:随着新的医学诊断技术的出现,无线胶囊内窥镜已经出现了比传统内窥镜更为方便的消化道监测。无线胶囊内窥镜检查的典型用途是诊断小肠的复杂区域。然而,当前的无线胶囊内窥镜系统遭受低数据速率的困扰,这不能满足传输高分辨率图像的要求。接收图像质量差会给诊断带来歧义。在本论文中,提出了一种采用极化分集的MIMO天线,用于433 MHz ISM频段的无线胶囊内窥镜系统。体内胶囊与体内接收器之间的极化分集被认为是增加数据速率的主要原因。体内胶囊发射器设计了两个共形双极化环形天线,而体内接收器设计了两个平面双极化印刷单极天线。人体接收天线是使用平坦且柔软的基板设计的,以研究其对尺寸,带宽和效率的影响。建议的人体MIMO天线的仿真反射系数在所需带宽范围内小于-10 dB(400- 500 MHz)。发现它们之间的互耦在很宽的频率范围内小于-20 dB。人体MIMO天线在液体模型上进行测量,以验证仿真结果。仿真和测量结果表明,在反射系数和相互耦合方面匹配良好。此外,通过使用高介电常数的基板,体内天线的尺寸变得紧凑。人体MIMO天线也可以在人体上进行测量。可以看出,皮肤的有损特性大大降低了MIMO天线之间的相互耦合。

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  • 作者

    Khan Ahsan;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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