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한국정보통신설비학회 학술대회

간행물 정보
  • 자료유형
    학술대회
  • 발행기관
    한국정보통신설비학회 [Korea Institute of Information & Telecommunication Facilities Engineering]
  • 간기
    반년간
  • 수록기간
    2002 ~ 2025
  • 주제분류
    공학 > 전자/정보통신공학
  • 십진분류
    KDC 567 DDC 621
한국정보통신설비학회 2025 하계학술대회 (116건)
No
1

4,000원

기조강연

초청강연Ⅰ

초청강연Ⅱ

15

We present an innovative nanoscale color-filter array utilizing a metal-insulator-metal (MIM) resonator structure. The insulator layer is made of silk fibroin, with its thickness controlling the resonance frequency of the MIM cavity. Using grayscale electron-beam lithography (EBL), we achieved precise control over the silk fibroin thickness, enabling high-resolution variation. The resulting color filters demonstrated an impressive resolution of 80k dots per inch (DPI) while maintaining exceptional color purity.

18

57GHz-71GH Cascode LNA

남정후, 장태환

한국정보통신설비학회 한국정보통신설비학회 학술대회 AI 대전환, 인프라로 완성하다 2025.08 pp.82-84

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3,000원

23

A compact implantable antenna system has been developed for wireless capsule endoscopy, featuring both SISO and MIMO configurations. The antennas are designed using water as the substrate. Owing to the high permittivity of water, the design achieves miniaturization and improved impedance matching with biological tissue. Operating at 1.47 GHz and 2.45 GHz with simulated bandwidths of 100 MHz and 250 MHz, respectively, the antenna demonstrates effective performance validated through both simulations and experimental measurements for biomedical telemetry applications.

24

This paper presents a novel multiple-input multiple-output (MIMO)-based endovascular aneurysm repair (EVAR) stent system integrated with a flexible antenna for high-datarate telemetry and post-surgical monitoring in Internet of Medical Things (IoMT) applications. The four-element dual-band antenna, operating at 915 and 2450 MHz, was validated through simulations in human models and experiments using minced pork and saline phantoms. It demonstrated wide impedance bandwidths (380 MHz and 440 MHz), high gain, and reliable communication up to 13 meters at 12 Mbps. Channel metrics confirmed strong MIMO performance, and specific absorption rate analysis verified safety, positioning this system as a promising solution for next-generation implantable healthcare devices.

26

Urinary incontinence affects millions globally, demanding reliable real-time bladder monitoring. This study introduces a novel IoMT-enabled system integrating a stretchable strain sensor with an ultra-wideband (UWB) antenna. Prioritizing comfort and efficiency, this device ensures continuous wireless telemetry of bladder pressure changes, advancing smart healthcare through seamless, non-invasive data transmission over clinically relevant distances.

 
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