A Circular TE01 Mode Excitation for Air Drilling Using Novel Inline Rectangular TE10 Mode to Rectangular TE20 Mode Transition

IF 1.2 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Fangzhou Guo, Qingzhi Wu, Gao Li, Wenhe Xia
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引用次数: 0

Abstract

This paper proposes a circular TE01 mode excitation for downhole microwave communication during air drilling, aiming to meet the critical requirements of preserving sufficient cross-sectional airflow area while maintaining a relatively short structural length. The excitation approach initiates by generating a rectangular TE10 mode using a conventional probe. A novel inline transition structure is subsequently developed, employing a strategically positioned septum to achieve rectangular TE10 to TE20 mode conversion via field bisection into opposite phase components, while preserving maximum airflow capacity. The excitation further incorporates a compact three-section transition to facilitate efficient rectangular TE20 to circular TE01 mode conversion, reducing longitudinal dimension to mitigate drill pipe deformation effect. A cross-radial metal sheet (CRMS) configuration is implemented to effectively suppress spurious modes and enhance mode purity. Finally, a back-to-back prototype was fabricated and measured, showing a return loss better than 15 dB and an insertion loss lower than 1.3 dB from 6.13 to 6.27 GHz, demonstrating the performance of proposed method.

利用新型直列矩形TE10模式到矩形TE20模式转换的空气钻孔圆形TE01模式激励
本文提出了一种用于空气钻井井下微波通信的圆形TE01模式激励,以满足在保持较短结构长度的同时保持足够的横截面气流面积的关键要求。激发方法通过使用传统探针产生矩形TE10模式启动。随后开发了一种新颖的内联过渡结构,采用战略定位的隔膜,通过场对分进入相反相位组件,实现矩形TE10到TE20模式转换,同时保持最大的气流容量。该激励进一步采用了紧凑的三段过渡,以促进有效的矩形TE20到圆形TE01模式转换,减少纵向尺寸,以减轻钻杆变形的影响。为了有效地抑制杂散模态,提高模态纯度,采用了径向金属板(CRMS)结构。最后,制作了一个背对背原型并进行了测量,在6.13 ~ 6.27 GHz范围内回波损耗优于15 dB,插入损耗低于1.3 dB,验证了所提出方法的性能。
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来源期刊
Microwave and Optical Technology Letters
Microwave and Optical Technology Letters 工程技术-工程:电子与电气
CiteScore
3.40
自引率
20.00%
发文量
371
审稿时长
4.3 months
期刊介绍: Microwave and Optical Technology Letters provides quick publication (3 to 6 month turnaround) of the most recent findings and achievements in high frequency technology, from RF to optical spectrum. The journal publishes original short papers and letters on theoretical, applied, and system results in the following areas. - RF, Microwave, and Millimeter Waves - Antennas and Propagation - Submillimeter-Wave and Infrared Technology - Optical Engineering All papers are subject to peer review before publication
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