• Title/Summary/Keyword: IoT(사물인터넷)

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Smart Fog : Advanced Fog Server-centric Things Abstraction Framework for Multi-service IoT System (Smart Fog : 다중 서비스 사물 인터넷 시스템을 위한 포그 서버 중심 사물 추상화 프레임워크)

  • Hong, Gyeonghwan;Park, Eunsoo;Choi, Sihoon;Shin, Dongkun
    • Journal of KIISE
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    • v.43 no.6
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    • pp.710-717
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    • 2016
  • Recently, several research studies on things abstraction framework have been proposed in order to implement the multi-service Internet of Things (IoT) system, where various IoT services share the thing devices. Distributed things abstraction has an IoT service duplication problem, which aggravates power consumption of mobile devices and network traffic. On the other hand, cloud server-centric things abstraction cannot cover real-time interactions due to long network delay. Fog server-centric things abstraction has limits in insufficient IoT interfaces. In this paper, we propose Smart Fog which is a fog server-centric things abstraction framework to resolve the problems of the existing things abstraction frameworks. Smart Fog consists of software modules to operate the Smart Gateway and three interfaces. Smart Fog is implemented based on IoTivity framework and OIC standard. We construct a smart home prototype on an embedded board Odroid-XU3 using Smart Fog. We evaluate the network performance and energy efficiency of Smart Fog. The experimental results indicate that the Smart Fog shows short network latency, which can perform real-time interaction. The results also show that the proposed framework has reduction in the network traffic of 74% and power consumption of 21% in mobile device, compared to distributed things abstraction.

Research study on cognitive IoT platform for fog computing in industrial Internet of Things (산업용 사물인터넷에서 포그 컴퓨팅을 위한 인지 IoT 플랫폼 조사연구)

  • Sunghyuck Hong
    • Journal of Internet of Things and Convergence
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    • v.10 no.1
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    • pp.69-75
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    • 2024
  • This paper proposes an innovative cognitive IoT framework specifically designed for fog computing (FC) in the context of industrial Internet of Things (IIoT). The discourse in this paper is centered on the intricate design and functional architecture of the Cognitive IoT platform. A crucial feature of this platform is the integration of machine learning (ML) and artificial intelligence (AI), which enhances its operational flexibility and compatibility with a wide range of industrial applications. An exemplary application of this platform is highlighted through the Predictive Maintenance-as-a-Service (PdM-as-a-Service) model, which focuses on real-time monitoring of machine conditions. This model transcends traditional maintenance approaches by leveraging real-time data analytics for maintenance and management operations. Empirical results substantiate the platform's effectiveness within a fog computing milieu, thereby illustrating its transformative potential in the domain of industrial IoT applications. Furthermore, the paper delineates the inherent challenges and prospective research trajectories in the spheres of Cognitive IoT and Fog Computing within the ambit of Industrial Internet of Things (IIoT).

An Adaptation of F(I)MEA Technique for security analysis on Software Defined Network Technology for IoT services (사물인터넷 서비스를 위한 소프트웨어 정의 네트워크 기술의 보안 분석을 위한 F(I)MEA 기법 적용)

  • Kim, Green;Han, Keun-Hee;Kim, Kee-Cheon
    • Journal of Internet of Things and Convergence
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    • v.2 no.1
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    • pp.17-21
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    • 2016
  • The rapid development of IoT leads new kinds of services which does not existed. And, it requires several changes on existing network. Software Defined Network is one of the future network technology which can deal with problems from these kinds of changes. The strong point of Software Defined Network is flexibility and scalability. However, In some cases, these factors could be the security vulnerabilities. In this paper, we present adaptation of F(I)MEA technique for the security analysis on Software Defined Network Technology for IoT services.

Cyber KillChain Based Security Policy Utilizing Hash for Internet of Things (해시를 활용한 사이버킬체인 기반의 사물인터넷 보안 정책)

  • Jeong, So-Won;Choi, Yu-Rim;Lee, Il-Gu
    • Journal of Digital Convergence
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    • v.16 no.9
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    • pp.179-185
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    • 2018
  • Technology of Internet of Things (IoT) which is receiving the spotlight recently as a new growth engine of Information Communications Technology (ICT) industry in the $4^{th}$ Industrial Revolution needs trustworthiness beyond simple technology of security. IoT devices should consider trustworthiness from planning and design of IoTs so that everyone who develop, evaluate and use the device can measure and trust its security. Increased number of IoTs and long lifetime result in the increased securituy vulnerability due to the difficulty of software patch and update. In this paper, we investigated security and scalability issues of current IoT devices through research of the technical, political and industrial trend of IoT. In order to overcome the limitations, we propose an automatic verification of software integrity utilizing and a political solution to apply cyber killchain based security mechanism using hash which is an element technology of blockchain to solve these problems.

IoT와 적외선 신호 제어를 융합한 스마트 홈 플랫폼

  • U, In-Gu
    • Information and Communications Magazine
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    • v.32 no.4
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    • pp.57-62
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    • 2015
  • 사물인터넷의 발전과 함께 홈 IoT(사물인터넷 기반 스마트 홈)로 주거 문화가 바뀌고 있다. 과거 고급형 대단위 아파트 중심의 홈 오토메이션 시스템이 스마트폰으로 촉발된 모바일 혁명을 바탕으로 쉽고 편하게 사용할 수 있는 생활 밀착형 스마트 홈으로 전환되고 있으며, 제품 판매 중심이었던 수익모델도 다양한 서비스를 기반으로 하는 플랫폼 사업으로 변화하고 있다. 본고에서는 최근 발전을 거듭하고 있는 홈 IoT 플랫폼과 함께 적외선 제어 방식을 추가한 디지엔스의 홈 IoT 플랫폼을 소개한다.

A Conceptual Framework for Aging Diagnosis Using IoT Devices (IoT 디바이스 기반 노화진단을 위한 개념적 프레임워크)

  • Lee, Jae Yoo;Park, Jin Cheul;Kim, Soo Dong
    • Journal of KIISE
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    • v.42 no.12
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    • pp.1575-1583
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    • 2015
  • With the emergence of Internet-of-Things (IoT) computing, it has become possible to acquire users' health-related contexts from various IoT devices and to diagnose their biological aging through analysis of the IoT health contexts. However, previous work on methods of aging diagnosis used a fixed list of aging diagnosis factors, making it difficult to handle the variability of users' IoT health contexts and to dynamically adapt the addition and deletion of aging diagnosis factors. This paper proposes a design and methods for a dynamically adaptable aging diagnosis framework that acquires a set of IoT health contexts from various IoT devices based on a set of aging diagnosis factors of the user. By using the proposed aging diagnosis framework, aging diagnosis methods can be applied without considering the variability of IoT health contexts and aging diagnosis factors can be dynamically added and deleted.

Internet of things application service system with open source hardware (오픈소스 하드웨어를 활용한 사물인터넷 응용 서비스 시스템)

  • Seong, Chang-Gyu;Rhyu, Keel-Soo
    • Journal of Advanced Marine Engineering and Technology
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    • v.40 no.6
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    • pp.542-547
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    • 2016
  • In recent times, Internet of Things (IoT) has attracted wide attention, and there are increasing requests for IoT application services. Open-Source Hardware (OSH) utilizes a variety of components that are created through the sharing of hardware design so that others developers can also work on it. The concept of "open source" that attracted attention in the software industry has been applied to the hardware field by the emergence of IoT market. The emergence of OSH that has the advantage of low hardware cost and faster development encourages the idea of a diverse IoT application services. In this paper, we describe an IoT application service system that is developed using the OSH platform Arduino and Raspberry Pi to process collection, exchange, and computation of the environmental information. The overall system architecture and hardware and software components are presented.

A Design of Secure Communication for Device Management Based on IoT (사물인터넷 기반 디바이스 관리를 위한 안전한 통신 프로토콜 설계)

  • Park, Jung-Oh;Choi, Do-Hyeon;Hong, Chan-Ki
    • Journal of Convergence for Information Technology
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    • v.10 no.11
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    • pp.55-63
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    • 2020
  • The IoT technology is a field that applies and converges the technologies in the existing industrial environment, instead of new technologies. The IoT technology is releasing various application services converged with other industries such as smart home, healthcare, construction, and automobile, and it is also possible to secure the work efficiency and convenience of users of IoT-based technologies. However, the security threats occurring in the IoT-based technology environment are succeeding to the vulnerability of the existing wireless network environment. And the occurrence of new and variant attacks in the combination with the ICT convergence environment, is causing damages. Thus, in the IoT technology-based environment, it would be necessary to have researches on the safe transmission of messages in the communication environment between user and device, and device and device. This thesis aims to design a safe communication protocol in the IoT-based technology environment. Regarding the suggested communication protocol, this thesis performed the safety analysis on the attack techniques occurring in the IoT technology-based environment. And through the performance evaluation of the existing PKI-based certificate issuance system and the suggested communication protocol, this thesis verified the high efficiency(about 23%) of communication procedure. Also, this thesis verified the reduced figure(about 65%) of the issued quantity of certificate compared to the existing issuance system and the certificate management technique.

A Study on the Use of IoT in Infant Care (영아 돌봄에서 IoT 활용에 대한 일고찰)

  • Yee, YoungHwan;Hwang, Sheenhai
    • The Journal of the Convergence on Culture Technology
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    • v.3 no.4
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    • pp.59-66
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    • 2017
  • These days, IoT attached diaper are available in markets. It measures child's temperature, oxygen rate, or even humidity of diaper and send the result directly to parent's smartphone. This research emphasize the followings, due to the fact that use of IoT in context of infant care should ultimately be leaded to infant's wellbeing and healthy development. First, there can be many problems when you only focus on usability without careful consideration of the accuracy of the infant's health information produced by the IoT. Second, infant's needs and nature of child should be reflected when developing IoT which supports infant care. The use of the IoT should not take away the chance of physical contact such as eye-contact or patting and hugging between the caregiver and baby. IoT is very important, however in terms of infant development, connect with IoT cannot antecede contact with child.

A Study on the High-Speed Malware Propagation Method for Verification of Threat Propagation Prevent Technology in IoT Infrastructure (IoT 인프라 공격 확산 방지 기술 성능 검증을 위한 악성코드 고속 확산 기법 연구)

  • Hwang, Song-yi;Kim, Jeong-Nyeo
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.31 no.4
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    • pp.617-635
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    • 2021
  • Internet of Things (IoT) devices connected to the network without appropriate security solutions have become a serious security threat to ICT infrastructure. Moreover, due to the nature of IoT devices, it is difficult to apply currently existing security solutions. As a result, IoT devices have easily become targets for cyber attackers, and malware attacks on IoT devices are actually increasing every year. Even though several security solutions are being developed to protect IoT infrastructure, there is a great risk to apply unverified security solutions to real-world environments. Therefore, verification tools to verify the functionality and performance of the developed security solutions are also needed. Furthermore, just as security threats vary, there are several security solution s that defend against them, requiring suitable verification tools based on the characteristics of each security solution. In this paper, we propose an high-speed malware propagation tool that spreads malware at high speed in the IoT infrastructure. Also, we can verify the functionality of the security solution that detect and quickly block attacks spreading in IoT infrastructure by using the high-speed malware propagation tool.