한상국 교수
Sang-Guk Han
연세대학교 · 공학
연구실 소개
한상국 교수의 연구실은 고성능 유비쿼터스 통신 및 센서 기반 실내 위치정보 기술을 핵심으로 하며, 가시광선 통신(VLC)과 연계된 정밀 3차원 위치 측정 기술 개발에 주력하고 있습니다. 특히, LED 기반 실내 위치 기반 서비스, 마이크로-LED 및 양자점 기반 고해상도 디스플레이, 그리고 고도화된 광파이버 및 파장 분할 multiplexing 기반 광통신 시스템에 대한 연구를 진행하고 있습니다. 다양한 표면(곡면, 천, 피부 등)에 부착 가능한 유연한 광소자와 고성능 파장 선택 필터 기술도 함께 개발하여 미래형 웨어러블 및 스마트 인프라 응용을 선도하고 있습니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15A novel concept for integrating visible light communications (VLC) with three‐dimensional indoor positioning is presented. A VLC link based on transmitter and receiver characteristics using experimental measurements was modelled. Proposed is a three‐dimensional positioning algorithm using received signal strength indication, which changes based on the angle and distance of the location based service. To reduce inter‐cell interference, the transmitter's location code was sent using different subc
The authors propose a new high‐resolution indoor positioning method based on visible light communication using two light emitting diode (LED) lightings and an image sensor of camera as a receiver. Through the proposed method, the authors can determine position of receiver using the real coordinate of two LED lightings and a captured image. In order to demonstrate the applicability of positioning method, they evaluated the positioning accuracy as changing receiver position. From the experimental
Abstract A flexible full-color micro-LED display with high mechanical robustness was fabricated by printing quantum dots (QDs) on a blue micro-LED array using standard photolithography. The red and green colors yielded from QDs exhibit a better color gamut than conventional color filters. The light conversion efficiency was enhanced by adding TiO 2 nanoparticles to the QD-photoresist composite. This full-color micro-LED display was successfully mounted on various unusual substrates such as curve
Power limiting in semiconductor-doped glass waveguides in the cw regime is explained on the basis of thermal effects. From the measurement of the temperature dependence of the refractive index and transmission as a function of wavelength, we show that the change in the absorption coefficient that is due to heating of the bulk-glass substrates at high optical powers accounts for the nonlinear behavior of the waveguides. The power limiting observed in planar waveguides was calculated, and excellen
Free-space optical (FSO) communication has been studied for next-generation network systems. Because an FSO system establishes point-to-point communication links, maintaining alignment among the transceivers is a critical challenge. In addition, atmospheric turbulence causes significant signal loss in FSO vertical links. Even in clear weather conditions, transmitted optical signals suffer significant scintillation losses due to random variations. Thus, the effect of atmospheric turbulence should
This paper proposes a semiconductor optical amplifier (SOA)-based multilevel polarization shift on–off keying (MPS-OOK) transmission for free-space optical (FSO) communication. At the transmitter end, the MPS-OOK signal is modulated with a constant linear state of polarization (SOP) at the high-intensity level and various SOPs at the low-intensity level in order to improve the spectral efficiency (SE) with the transmitted power efficiency. At the receiver end, first, a polarization-independent S
We proposed the statistical misalignment model and the power-efficient configuration of transceivers for bi-directional multi-input and multi-output (MIMO) based vertical free space optical (FSO) links. Spatial diversity based MIMO FSO systems could be used to mitigate atmospheric fading issues. However, the increased number of channels can cause additional pointing error in pointing, acquisition and tracking (PAT) systems. The statistical misalignment model for detecting misalignment error is d
For the first time a narrowband wavelength filter in InGaAlAs/InP is reported. A highly asymmetrical, vertically-coupled directional coupler operating near the band edge is formed by a narrow ridge and a wide strip-loaded waveguide. Operation at a centre wavelength of ~1.5 µm with a bandwidth of 18 Å and transfer efficiency of ~50–70% has been achieved.
The architectures of wired/wireless signal transmission based on RoF access network are proposed and their experimental results are shown. Both a wired and a wireless signals with a same data and heterogeneous data in different schemes are simultaneously generated using an injection locking technique and optical carrier suppression modulation based on a Fabry-Perot laser as a cost-effective WDM optical source. A reflective semiconductor optical amplifier (RSOA) is employed for the purpose of a c
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