• 제목/요약/키워드: Industrial Network Equipment

검색결과 148건 처리시간 0.024초

RFID/USN 보안을 위한 프로토콜 설계 (Design of protocol for RFID/USN security)

  • 박상현;박상민;신승호
    • 대한안전경영과학회지
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    • 제9권3호
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    • pp.103-109
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    • 2007
  • Payment and security requirement are playing an increasingly critical role in RFID system, allegedly the core of the ubiquitous, especially in logistics. Therefore, security technology has been playing essential role gradually unlike the past when only the perception of equipment was considered important technology. The current encoding system allows the access only to the user who has the secret key. Many encoding algorithm has been studied to ensure the security of secret key. Security protocol is the most typical way to authorize appropriate user perception by using the data and secret key to proceed the encoding and transmit it to the system in order to confirm the user. However, RFID system which transmits more than dozens of data per second cannot be used if the algorithm and protocol of the existing wired system are used because the performance will degrade as a consequence. Security protocol needs to be designed in consideration of property of RFID and hardware. In this paper, a protocol was designed using SNEP(Sensor Network Encryption Protocol), the security protocol used for the sensor similar to RFID- not the current system used in wired environment- and ECC (Elliptic Curve Cryptography: oval curve encoding), the encoding algorithm.

스마트 디바이스 기반의 보안성 강화를 위한 접근제어 기법 설계 (A Design of Access Control Method for Security Enhance based Smart Device)

  • 박중오
    • 디지털산업정보학회논문지
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    • 제14권3호
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    • pp.11-20
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    • 2018
  • Smart devices refer to various devices and control equipment such as health care devices, imaging devices, motor devices and wearable devices that use wireless network communication (e.g., Wi-fi, Bluetooth, LTE). Commercial services using such devices are found in a wide range of fields, including home networks, health care and medical services, entertainment and toys. Studies on smart devices have also been actively undertaken by academia and industry alike, as the penetration rate of smartphones grew and the technological progress made with the fourth industrial revolution bring about great convenience for users. While services offered through smart devices come with convenience, there is also various security threats that can lead to financial loss or even a loss of life in the case of terrorist attacks. As attacks that are committed through smart devices tend to pick up where attacks based on wireless internet left off, more research is needed on related security topics. As such, this paper seeks to design an access control method for reinforced security for smart devices. After registering and authenticating the smart device from the user's smart phone and service provider, a safe communication protocol is designed. Then to secure the integrity and confidentiality of the communication data, a management process such as for device renewal or cancellation is designed. Safety and security of the existing systems against attacks are also evaluated. In doing so, an improved efficiency by approximately 44% compared to the encryption processing speed of the existing system was verified.

HoneyThing: A New Honeypot Design for CPE Devices

  • Erdem, Omer;Pektas, Abdurrahman;Kara, Mehmet
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제12권9호
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    • pp.4512-4526
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    • 2018
  • The Internet of Things (IoT) has become an emerging industry that is broadly used in many fields from industrial and agricultural manufacturing to home automation and hospitality industry. Because of the sheer number of connected devices transmitting valuable data, the IoT infrastructures have become a main target for cyber-criminals. One of the key challenges in protecting IoT devices is the lack of security measures by design. Although there are many hardware and software based security solutions (firewalls, honeypots, IPDS, anti-virus etc.) for information systems, most of these solutions cannot be applied to IoT devices because of the fact that IoT devices have limited computing resources (CPU, RAM,). In this paper, we propose a honeypot system called HoneyThing for modem/router devices (i.e. a kind of IoT device). HoneyThing emulates TR-069 protocol which is prevalent protocol used to remotely manage customer-premises equipment (CPE) devices, e.g. modems, routers. Honeything also serves an embedded web server simulating a few actual, critical vulnerabilities associated with the implementation of TR-069 protocol. To show effectiveness of the HoneyThing in capturing real world attacks, we have deployed it in the Internet. The obtained results are highly promising and facilitate to reveal network attacks targeting to CPE devices.

Formal Validation Method and Tools for French Computerized Railway Interlocking Systems

  • Antoni, Marc
    • International Journal of Railway
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    • 제2권3호
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    • pp.99-106
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    • 2009
  • Checks and tests before putting safety facilities into service as well as the results of these tests are essential, time consuming and may show great variations between each other. Economic constraints and the increasing complexity associated with the development of computerized tools tend to limit the capacity of the classic approval process (manual or automatic). A reduction of the validation cover rate could result in practice. This is not compatible with the French national plan to renew the interlocking systems of the national network. The method and the tool presented in this paper makes it possible to formally validate new computerized systems or evolutions of existing French interlocking systems with real-time functional interpreted Petri nets. The aim of our project is to provide SNCF with a method for the formal validation of French interlocking systems. A formal proof method by assertion, which is applicable to industrial automation equipment such as interlocking systems, and which covers equally the specification and its real software implementation, is presented in this paper. With the proposed method we completely verify that the system follows all safety properties at all times and does not show superfluous conditions: it replaces all the indoor checks (not the outdoor checks). The advantages expected are a significant reduction of testing time and of the related costs, an increase of the test coverage rate, an answer to the new demand of railway infrastructure maintenance engineering to modify and validate computerized interlocking systems. Formal methods mastery by infrastructure engineers are surely a key to prove that more safety is not necessarily more expensive.

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Modeling and cost analysis of zone-based registration in mobile cellular networks

  • Jung, Jihee;Baek, Jang Hyun
    • ETRI Journal
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    • 제40권6호
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    • pp.736-744
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    • 2018
  • This study considers zone-based registration (ZBR), which is adopted by most mobile cellular networks. In ZBR, a user equipment (UE) registers its location area (or zone) in a network database (DB) whenever it enters a new zone. Even though ZBR is implemented in most networks for a UE to keep only one zone (1ZR), it is also possible for a UE to keep multiple zones. Therefore, a ZBR with two zones (2ZR) is investigated, and some mathematical models for 2ZR are presented. With respect to ZBR with three zones (3ZR), several studies have been reported, but these employed computer simulations owing to the complexity of the cases, and there have been no reports on a mathematical 3ZR model to analyze its performance. In this study, we propose a new mathematical model for 3ZR for the first time, and analyze the performance of 3ZR using this model. The numerical results for various scenarios show that, as the UE frequently enters zones, the proposed 3ZR model outperforms 1ZR and 2ZR. Our results help determine the optimal number of zones that a UE keeps, and minimize the signaling cost for radio channels in mobile cellular networks.

Comprehensive Survey on Internet of Things, Architecture, Security Aspects, Applications, Related Technologies, Economic Perspective, and Future Directions

  • Gafurov, Khusanbek;Chung, Tai-Myoung
    • Journal of Information Processing Systems
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    • 제15권4호
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    • pp.797-819
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    • 2019
  • Internet of Things (IoT) is the paradigm of network of Internet-connected things as objects that constantly sense the physical world and share the data for further processing. At the core of IoT lies the early technology of radio frequency identification (RFID), which provides accurate location tracking of real-world objects. With its small size and convenience, RFID tags can be attached to everyday items such as books, clothes, furniture and the like as well as to animals, plants, and even humans. This phenomenon is the beginning of new applications and services for the industry and consumer market. IoT is regarded as a fourth industrial revolution because of its massive coverage of services around the world from smart homes to artificial intelligence-enabled smart driving cars, Internet-enabled medical equipment, etc. It is estimated that there will be several dozens of billions of IoT devices ready and operating until 2020 around the world. Despite the growing statistics, however, IoT has security vulnerabilities that must be addressed appropriately to avoid causing damage in the future. As such, we mention some fields of study as a future topic at the end of the survey. Consequently, in this comprehensive survey of IoT, we will cover the architecture of IoT with various layered models, security characteristics, potential applications, and related supporting technologies of IoT such as 5G, MEC, cloud, WSN, etc., including the economic perspective of IoT and its future directions.

스마트팩토리를 위한 데이터 수집 관리 프로그램 개발 (Data Collection Management Program for Smart Factory)

  • 김현진;김진사
    • 한국전기전자재료학회논문지
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    • 제35권5호
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    • pp.509-515
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    • 2022
  • As the 4th industrial revolution based on ICT is progressing in the manufacturing field, interest in building smart factories that can be flexible and customized according to customer demand is increasing. To this end, it is necessary to maximize the efficiency of factory by performing an automated process in real time through a network communication between engineers and equipment to be able to link the established IT system. It is also necessary to collect and store real-time data from heterogeneous facilities and to analyze and visualize a vast amount of data to utilize necessary information. Therefore, in this study, four types of controllers such as PLC, Arduino, Raspberry Pi, and embedded system, which are generally used to build a smart factory that can connect technologies such as artificial intelligence (AI), Internet of Things (IoT), and big data, are configured. This study was conducted for the development of a program that can collect and store data in real time to visualize and manage information. For communication verification by controller, data communication was implemented and verified with the data log in the program, and 3D monitoring was implemented and verified to check the process status such as planned quantity for each controller, actual quantity, production progress, operation rate, and defect rate.

실감 입체 형상 생성을 위한 카멜레온형 핀아트 장치 개발 (Development of a Chameleonic Pin-Art Equipment for Generating Realistic Solid Shapes)

  • 권오흥;김진영;이설희;김주혜;이상원;조자양;김형태
    • 방송공학회논문지
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    • 제25권4호
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    • pp.497-506
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    • 2020
  • 본 논문에서 제안된 카멜레온형 서피스 (chameleonic surface)는 핀 아트 (pin-art) 장치로서 임의 형상 발생용 입체 디스플레이 장치이다. 슬림 텔레스코픽 액츄에이터 (slim telescopic actuator)와 고탄성의 복합 소재로 생성되는 부드럽고 연속적인 곡면 위에 동적 매핑 영상을 투사하여 사실적인 입체 형상을 연속적으로 생성할 수 있다. 슬림 텔레스코픽 액츄에이터는 적층을 위하여 긴 행정거리를 가지면서 최소 점유 면적을 가지도록 설계하였다. 3차원 형상은 다수의 슬림 텔레스코픽 액츄에이터가 고탄성 소재를 밀어서 돌출시켜서 만들어진다. 이와 같은 구조는 임의의 연속적인 곡면 형상 생성, 동적 영상 투사 및 장치 경량화 등의 장점이 있었다. 수백 개의 슬림 텔레스코픽 액츄에이터가 원활하게 동작하기 위하여 실시간 동기화가 가능한 이더캣 (EtherCAT) 통신 기반의 분산 제어기를 적용하였다. 통합 운영 소프트웨어로 돌출 형상과 입체 영상을 정합하고 다수 영상 투사기로 투사하여 실감 영상을 연속적으로 생성할 수 있었다. 실제 공연을 위하여 오페라용 콘텐츠를 제작하면서 카멜레온 서피스에 최적화하였고, 일반인들을 대상으로 상영하였다.

점화 명령에 동조된 인공위성 파이로테크닉 회로 설계 (A Design of Fire-Command Synchronous Satellite Pyrotechnic Circuit)

  • 구자춘;나성웅
    • 한국산업정보학회논문지
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    • 제18권5호
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    • pp.81-92
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    • 2013
  • 인공위성은 태양전지판 전개, 통신 안테나 전개, 관측 장비에 대한 오염방지 덮개, 추진계의 파이로테크닉 밸브 및 리튬-이온 셀 모듈 바이패스 장치 등 다수의 분리장치들을 포함하고 있다. 파이로테크닉 회로로 동작되는 분리장치의 기폭제들은 단발성으로 동작되기 때문에 기폭제 구동은 성공적 임무 수행을 위해 필수 요소이다. 파이로테크닉 회로는 안전을 위한 스위칭 네트워크를 포함해야 한다. 일반적인 스위칭 네트워크는 기폭제 점화 동안 스위칭 과도상태 전류를 취급하기 위해 높은 정격 전류 용량의 점화 스위치로 구성되는 단점이 존재한다. 파이로테크닉 회로는 기폭제가 메인버스에서 점화되면 버스에서 요구되는 첨두 전력을 감소시킬 수 있는 전력 조절 기능을 필요로 한다. 본 논문은 기폭제 점화 동안 스위칭 과도상태 전류를 취급하기 위해 높은 정격 전류 용량의 점화 스위치로 구성되는 단점을 극복하기 위해 점화 스위치를 작동시키기 위한 점화 명령에 동조된 파이로테크닉 회로를 설계한다. 파이로테크닉 회로는 점화스위치들이 점화 전류를 전달만 하고 스위칭을 하지 않는 것을 보증하기 위해 점화 명령에 동조되어 전류 제한된 윈도우 펄스 점화 전류를 제공한다. 전류 제한된 윈도우 펄스 점화 전류는 스위칭 네트워크에서 낮은 정격 전류 용량과 가벼운 무게의 스위치 사용을 가능하게 한다. 파이로테크닉 회로의 전류 제한 기능은 기폭제에 공급하는 전압을 감소시키고 첨두 버스 전력을 감소시키는 전력 조절 효과를 제공한다. 정지궤도위성 개발에 적용하기 위해 파이로테크닉 회로는 개발 모델에서 시험하여 기능을 검증하였다.

네트워크 RTK와 연계한 비금속 상수관의 GPR 탐사 (GPR Exploration of Non-metallic Water Pipes Linked with Network RTK)

  • 이근왕;박준규
    • 한국산학기술학회논문지
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    • 제22권2호
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    • pp.296-301
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    • 2021
  • GPR은 전자파를 지반 또는 대상물에 방사시켜 반사체에서 돌아온 반사파를 이용하는 탐사법으로써 광산의 지반침하나 건설현장의 비파괴 조사, 지반조사, 지하시설물 탐사 등에 활용되고 있다. 본 연구에서는 네트워크 RTK와 연계한 GPR을 이용한 비금속 상수관의 탐사에 대한 활용성을 제시하고자 하였다. GPR을 이용하여 연구대상지 상수관에 대한 데이터를 취득하였으며, 상수관로에 대한 위치 및 매설 심도를 측정하였다. 정확도 평가를 위해 GNSS 관측 성과와 GPR 탐사 결과를 비교하였으며, -0.16m ~ 0.15m의 편차를 확인하였다. 이러한 결과는 공공측량 작업규정의 기기성능을 만족하는 것으로 GPR을 이용한 상수관의 탐사가 가능함을 제시하였다. GPR은 기존 금속관로탐지기에서와 같은 접지 설치가 필요하지 않기 때문에 지하시설물 탐사를 위한 작업의 효율성 증대에 기여할 것이며, GPR을 이용한 탐사는 금속 및 비금속 지하시설물에 대한 위치와 심도를 동시에 취득할 수 있어 GIS 시스템 구축을 위한 데이터로 이용이 가능하다. 향후 추가적인 연구를 통해 금속 및 비금속관로 탐사와 콘크리트, 아스팔트 등 지면 매질에 따른 탐사 특성비교 연구가 이루어진다면 GPR을 이용한 지하시설물 탐사의 다양한 활용성을 제시할 수 있을 것이다.