Conformal array antenna design for radio frequency identification (RFID) centralizer activation in extended-reach horizontal wells

To address the challenge of unreliable information transmission and limited installation space in extended-reach horizontal wells, this paper proposes a novel Radio Frequency Identification (RFID) conformal array antenna design for activating variable-diameter centralizers. Based on the constraints of downhole annular dimensions (D1=210 mm and D2=141 mm), an inverted “U”-shaped structure with a width of 34.5 mm was engineered using bending technology. The design utilizes a four-element microstrip patch array with a series-parallel feeding network to achieve high gain and robust impedance matching at 5 GHz. Simulation and experimental results demonstrate that the proposed antenna achieves a significant gain of 7.02 dBi and an effective transmission distance of 0.44 m, which is a 120% improvement over traditional antennas (0.2 m). This work provides a high-performance solution for downhole signal interaction, ensuring reliable control of centralizers in complex extended-reach horizontal well environments.

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Publication Details

Journal
Petroleum Science and Technology
Published
2026-10-04
DOI
https://doi.org/10.1080/10916466.2026.2739842
Primary Topic
Antenna Design and Analysis
Type
article
Field-Weighted Citation Impact
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article

Conformal array antenna design for radio frequency identification (RFID) centralizer activation in extended-reach horizontal wells

Yiyong Yin, Linshan Qi, Congfeng Qu, Wenbin An et al.
Petroleum Science and Technology
Antenna Design and Analysis
article

Conformal array antenna design for radio frequency identification (RFID) centralizer activation in extended-reach horizontal wells

Yiyong Yin, Linshan Qi, Congfeng Qu, Wenbin An, Wenjia Zhu, Yuyao Wang
article en

Abstract

To address the challenge of unreliable information transmission and limited installation space in extended-reach horizontal wells, this paper proposes a novel Radio Frequency Identification (RFID) conformal array antenna design for activating variable-diameter centralizers. Based on the constraints of downhole annular dimensions (D1=210 mm and D2=141 mm), an inverted “U”-shaped structure with a width of 34.5 mm was engineered using bending technology. The design utilizes a four-element microstrip patch array with a series-parallel feeding network to achieve high gain and robust impedance matching at 5 GHz. Simulation and experimental results demonstrate that the proposed antenna achieves a significant gain of 7.02 dBi and an effective transmission distance of 0.44 m, which is a 120% improvement over traditional antennas (0.2 m). This work provides a high-performance solution for downhole signal interaction, ensuring reliable control of centralizers in complex extended-reach horizontal well environments.

Petroleum Science and Technology
China Agricultural University (CN), China National Petroleum Corporation (China) (CN)
Openalex Percentile: Top 16%
Antenna Design and Analysis
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Conformal array antenna design for radio frequency identification (RFID) centralizer activation in extended-reach horizontal wells — Yiyong Yin, Linshan Qi, et al. · Petroleum Science and Technology (2026) | TGRS Research Map | TGRS