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储能系统技术 储能系统 GaN器件 多物理场耦合 ★ 4.0

用于无线胶囊内窥镜的高数据速率希尔伯特曲线MIMO天线与改进带宽和圆极化

High Data-Rate Hilbert-Curved-Shaped MIMO Antenna for Wireless Capsule Endoscopy

作者 Syed Misbah Un Noor · Syed Ahson Ali Shah · Shahid Khan · Izaz Ali Shah · Jamal Nasir · Salahuddin Khan
期刊 IEEE Access
出版日期 2025年1月
技术分类 储能系统技术
技术标签 储能系统 GaN器件 多物理场耦合
相关度评分 ★★★★ 4.0 / 5.0
关键词 无线胶囊内窥镜 多输入多输出天线 希尔伯特曲线 小型化 安全评估
语言:

中文摘要

生物医学工程中无线通信需求增长开辟新研究前沿。本文引入创新微型化(4×9mm²)多输入多输出MIMO圆极化CP可植入天线用于无线胶囊内窥镜WCE系统。所提设备采用两个希尔伯特曲线形状蜿蜒谐振器。希尔伯特曲线固有的空间填充特性有助于小型化和带宽增强达250MHz,以覆盖不同器官间可能失谐。同时,采用曲线固有自然对称性和正交端口排列,显著改善隔离度达27dB,增强增益为-27.9dBi。在胃、小肠和大肠中对天线集成WCE系统在均质和异质环境中进行综合仿真分析。无需外部去耦结构,系统显示良好MIMO特性,隔离度27dB。在生理盐水和碎猪肉中测试制造原型,测量与仿真结果良好匹配。两个端口的轴比(<3dB)覆盖均质胃、小肠和大肠仿体中ISM频段部分。此外,使用真实人体模型的安全评估,结果符合既定安全指南,在2.45GHz显示平均比吸收率543W/kg(1g)和58.6W/kg(10g)。链路预算分析确认在78Mbps下可靠无线数据传输达1.8m。所提MIMO天线以其卓越主导特性,优于领先最先进内窥镜天线,为胶囊内窥镜系统提供有前途进步。

English Abstract

The growing demand for wireless communication in biomedical engineering has opened new research frontiers. This paper introduces an innovative miniaturized ( 4 9 mm2) multiple-input multiple-output (MIMO) circularly polarized (CP) implantable antenna for a wireless capsule endoscopy (WCE) system. The presented device features two Hilbert curve-shaped meandered resonators. The space-filling characteristic inherent in the Hilbert curve contributes to miniaturization and bandwidth enhancement of up to 250 MHz to cover possible detuning between diverse organs. Simultaneously, employing the curve’s inherent natural symmetry and adopting an orthogonal port arrangement led to a noteworthy improvement in isolation up to 27 dB with an enhanced gain of −27.9 dBi. Comprehensive simulation analysis of antenna-integrated WCE systems in homogeneous and hetrogenous environments is conducted in the stomach, small intestine, and large intestine. Without the need for an external decoupling structure, the system demonstrated good MIMO characteristics with isolation of 27 dB. A fabricated prototype has been tested in a saline solution and minced pork. A good match between the measured and simulated results has been observed. At both ports, the axial ratio (<3 dB) covers part of the ISM band in the homogeneous stomach, small intestine, and large intestine phantoms. Additionally, a safety assessment, employing a realistic human model, aligns findings with established safety guidelines, revealing average specific absorption rates of 543 W/kg (1 g) and 58.6 W/kg (10 g) at 2.45 GHz. Moreover, link budget analysis confirms reliable wireless data transmission up to 1.8 m at 78 Mbps. The proposed MIMO antenna, with its superb dominant characteristics, outperforms leading state-of-the-art endoscopic antennas, offering promising advancements for capsule endoscopy systems.
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SunView 深度解读

该小型化MIMO天线技术对阳光电源物联网设备和传感器具有借鉴意义。虽然该研究针对医疗设备,但其小型化设计和高隔离度技术可应用于阳光储能系统的无线通信模块。阳光大型储能电站需要部署大量无线传感器监测电池单体状态,该希尔伯特曲线天线的紧凑尺寸(4×9mm²)和宽带特性可优化阳光传感器设计。在电磁复杂环境下,该天线的高隔离度(27dB)可提升储能系统内部无线通信可靠性。该研究的圆极化和MIMO技术可应用于阳光光伏电站的无人机通信系统,增强信号鲁棒性和数据传输速率。结合阳光IoT平台,该小型化天线技术可支持更密集的传感器部署,提升电站监控精度和智能化水平。