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An IoT routing based Local River Field Environment Management solution using Uzbekistan Testbed
Timur Khudaybergenov,박영기,임상일,배진호,양승윤,김진태,이성화,차대윤,우덕근,차재상 한국인터넷방송통신학회 2020 Journal of Advanced Smart Convergence Vol.9 No.3
Water consumption has grown at more than 2.5 times, comparing the past century. About 2.8 billion people live in river basins with some form of water deficit, because more than 75 % of the river flows are withdrawn for agriculture and other needs [1]. Challenges faced by more and more countries in their struggle for economic and social development are increasingly related to water [2]. This paper proposes a test of an effective local river field environment management solution. And describing a part of a pilot project for the ministry of water resources of Uzbekistan. Current work focused on direct action items of the existing project and describe an IoT routing based solution for local river field environment management solutions. Suggested technological decisions provided by needs and on-site testing results. The paper describes the backbone of IoT routing based river water resources management system.
Hologram based Internet of Signage Design Using Raspberry Pi
Khudaybergenov Timur,Jungdo Han(한정도),Jae-Sang Cha(차재상) 한국컴퓨터정보학회 2019 韓國컴퓨터情報學會論文誌 Vol.24 No.12
본 논문에서는 원격 제어 홀로그램 기반 인터랙티브 사이니지 디자인에 대해 제안한다. 제안한 방식은 Raspberry Pi 하드웨어 플랫폼 및 Intel realsense r200 카메라를 사용하여 인터랙션이 가능한 홀로그램 사이니지 구조를 구성하였으며, 소프트웨어 파트는 원격 콘텐츠 관리를 위한 Screenly 솔루션과 콘텐츠 제어를 위한 Open CV 기반 솔루션을 기반으로 구성된다. 3D 게임 기술 Unity 5를 기반으로 한 3D 콘텐츠 렌더링 알고리즘을 사용하여 테스트를 진행하였으며, 홀로그램 피라미드 사이니지 구조를 사용한 모델 테스트를 통해 IoS 설계를 위한 3D 데이터 시각화 및 표출이 가능한 새로운 방식을 실험하였다. 본 논문에서는 해당 홀로그램 사이니지 모델에 대하여 기술하였다. This paper propose design of remotely controllable hologram based interactive signage. General idea is organization of work of hologram signage through using Raspberry Pi hardware platform and Intel realsense r200 for interaction opportunity. Remote content management is based on Screenly software solution. Open CV based solutions are used for content controlling on the spectators side. Represented work describe of using of the 3D content rendering algorithm based on 3D gaming technology Unity 5. An experimental model was carried out with the purpose of IoS designing, to 3D data visualization and to introduce a new method for visualizing and displaying 3D data on a hologram pyramid signage. Description of working model of hologram signage is given in this paper.
An IoT routing based Local River Field Environment Management solution using Uzbekistan Testbed
Khudaybergenov, Timur,Park, Youngki,Im, Sangil,Ho, Bae Jin,Yang, Seungyoun,Kim, Jintae,Lee, Sunghwa,Cha, Dae Yoon,Woo, Deokgun,Cha, Jaesang The Institute of Internet 2020 International journal of advanced smart convergenc Vol.9 No.3
Water consumption has grown at more than 2.5 times, comparing the past century. About 2.8 billion people live in river basins with some form of water deficit, because more than 75 % of the river flows are withdrawn for agriculture and other needs. Challenges faced by more and more countries in their struggle for economic and social development are increasingly related to water. This paper proposes a test of an effective local river field environment management solution. And describing a part of a pilot project for the ministry of water resources of Uzbekistan. Current work focused on direct action items of the existing project and describe an IoT routing based solution for local river field environment management solutions. Suggested technological decisions provided by needs and on-site testing results. The paper describes the backbone of IoT routing based river water resources management system.
Low Rate VLC Receiver Design Using NCP302 Voltage Detector for IoT/IoL Connected Smart Homes
이범희,마리아판 비나야감,Timur Khudaybergenov,한정도,차재상 한국인터넷방송통신학회 2018 Journal of Advanced Smart Convergence Vol.7 No.4
The Internet of Things (IoT) and Visible Light Communication (VLC) is opening up new services in lighting industry by integrating sensory network features in addition to standard illumination functionality. In this progressive developments, the next generation lighting devices for smart homes are capable to sense the environmental conditions and transfer the captured data through lights to gateway controller to access remotely. The smart home environmental sensor information’s are few kbps only so VLC systems need to built-in with low rate light connectivity to transfer data to the gateway. To provide error free communication, the quality of a received light signal is important to be considered when designing an VLC receiver. Therefore, this paper proposes the design of robust low rate IoL receiver design using NCP302 voltage detector for micro controller to adapt the IoT/IoL front end module for system integration. To evaluate the proposed system performance, the Arduino UNO based IoT/IoL controller designed with lighting, sensors and lights connectivity interfaces. The experimental result shows that the robust interference rejection is feasible on proposed VOL receiver and possible to have an error-free communication up to 10 kbps at a low SNR using OOK modulation.
Low Rate VLC Receiver Design Using NCP302 Voltage Detector for IoT/IoL Connected Smart Homes
Lee, Beomhee,Mariappan, Vinayagam,Khudaybergenov, Timur,Han, Jungdo,Cha, Jaesang The Institute of Internet 2018 Journal of Advanced Smart Convergence Vol.7 No.4
The Internet of Things (IoT) and Visible Light Communication (VLC) is opening up new services in lighting industry by integrating sensory network features in addition to standard illumination functionality. In this progressive developments, the next generation lighting devices for smart homes are capable to sense the environmental conditions and transfer the captured data through lights to gateway controller to access remotely. The smart home environmental sensor information's are few kbps only so VLC systems need to built-in with low rate light connectivity to transfer data to the gateway. To provide error free communication, the quality of a received light signal is important to be considered when designing an VLC receiver. Therefore, this paper proposes the design of robust low rate IoL receiver design using NCP302 voltage detector for micro controller to adapt the IoT/IoL front end module for system integration. To evaluate the proposed system performance, the Arduino UNO based IoT/IoL controller designed with lighting, sensors and lights connectivity interfaces. The experimental result shows that the robust interference rejection is feasible on proposed VOL receiver and possible to have an error-free communication up to 10 kbps at a low SNR using OOK modulation.
스마트 팩토리 환경을 고려한 RGB 컬러 가변형 광 ID 모듈개발 연구
이민호(Min-Ho Lee),후다이베르게놉 티무르(Khudaybergenov Timur),이범희(Beom-Hee Lee),조주필(Ju-Phil Cho),차재상(Jae-Sang Cha) 한국정보전자통신기술학회 2018 한국정보전자통신기술학회논문지 Vol.11 No.5
스마트 팩토리는 제 4차 산업혁명시대의 도래와 함께, 제조업과 정보통신기술의 결합을 통하여 사용자가 공장 내 설치된 장비의 시뮬레이션 및 시나리오 설계를 통해 자동으로 제품을 생산하는 시스템 개념으로 해외 주요국에서 이미 추진 정책 및 전략을 발표하고, 관련 기술개발에 주력하고 있다. 또한, 이러한 스마트 팩토리 구현을 위한 기반기술로서 저전력 친환경 LED 조명시스템에 대한 관심이 증대되고 있으며, LED를 활용한 통신, 위치인식 등 이른바 광 ID 관련 응용기술에 대한 연구가 활발히 진행중이다. 본 논문에서는 친환경 저전력의 LED 조명 기반의 광통신 기술을 생산설비 관리에 접목하여, 공장 내 고전압, 고전류, 발전기 등 전자기 간섭의 영향을 받지 않고, 물류 위치 및 부가정보를 안정적으로 식별할 수 있는 시스템을 제안하였으며, 기초 실험을 통해 근거리에서 8가지 컬러가변에 따른 컬러 ID 검출율이 98.8%~93.8% 수준으로 적용 가능성을 검증하였다. Smart Factory is a concept of automatic production system of machines by the fusion of ICT and manufacturing. As a base technology for realizing such a smart factory, there is an increasing interest in a low-power environmentally friendly LED lighting system, and researches on so-called optical ID related application technologies such as communication using a LED and position recognition are actively underway. In this paper, We have proposed a system that can reliably identify logistics location and additional information without being affected by electromagnetic interference such as high voltage, high current, and generator in the plant. Through the basic experiment, we confirmed the applicability of the color ID recognition rate from 98.8% to 93.8% according to the eight color variations in the short distance.
Sung Hoon Yoon,Kil Soo Lee,Jae Sang Cha,Timur Khudaybergenov,Min Soo Kim,Deok Gun Woo,Jeong Uk Kim 한국인터넷방송통신학회 2020 International Journal of Internet, Broadcasting an Vol.12 No.2
The secure access the lighting, Heating, ventilation, and air conditioning (HVAC), fire safety, and security control boxes of building facilities is the primary objective of future smart buildings. This paper proposes an authorized user access to the electrical, lighting, fire safety, and security control boxes in the smart building, by using color grid coded optical camera communication (OCC) with face recognition Technologies. The existing CCTV subsystem can be used as the face recognition security subsystem for the proposed approach. At the same time a smart device attached camera can used as an OCC receiver of color grid code for user access authentication data sent by the control boxes to proceed authorization. This proposed approach allows increasing an authorization control reliability and highly secured authentication on accessing building facility infrastructure. The result of color grid code sequence received by the unauthorized person and his face identification allows getting good results in security and gaining effectiveness of accessing building facility infrastructure. The proposed concept uses the encoded user access authentication information through control box monitor and the smart device application which detect and decode the color grid coded informations combinations and then send user through the smart building network to building management system for authentication verification in combination with the facial features that gives a high protection level. The proposed concept is implemented on testbed model and experiment results verified for the secured user authentication in real-time.