• 제목/요약/키워드: Wireless communication systems

검색결과 2,142건 처리시간 0.037초

Exploiting Correlation Characteristics to Detect Covert digital communication

  • Huang, Shuhua;Liu, Weiwei;Liu, Guangjie;Dai, Yuewei;Tian, Wen
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제14권8호
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    • pp.3550-3566
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    • 2020
  • As a widely used way to exfiltrate information, wireless covert channel (WCC) brings a serious threat to communication security, which enables the wireless communication process to bypass the authorized access control mechanism to disclose information. Unlike the covert channel on the network layer, wireless covert channels on the physical layer (WCC-P) is a new covert communication mode to implement and improve covert wireless communication. Existing WCC-P scheme modulates the secret message bits into the Gaussian noise, which is also called covert digital communication system based on the joint normal distribution (CJND). Finding the existence of this type of covert channel remains a challenging work due to its high undetectability. In this paper, we exploit the square autocorrelation coefficient (SAC) characteristic of the CJND signal to distinguish the covert communication from legitimate communication. We study the sharp increase of the SAC value when the offset is equal to the symbol length, which is caused by embedding secret information. Then, the SAC value of the measured sample is compared with the threshold value to determine whether the measured sample is CJND sample. When the signal-to-noise ratio reaches 20db, the detection accuracy can reach more than 90%.

조명용 LED와 솔라 셀을 이용한 실내 무선광 통신 (Indoor Wireless Optical Communication Using a Lighting LED and a Solar Cell)

  • 이성호
    • 한국전자파학회논문지
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    • 제21권3호
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    • pp.285-291
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    • 2010
  • 본 논문에서는 조명용 LED와 솔라 셀을 사용하여 실내 무선광 통신이 가능함을 보인다. 조명용 LED를 광원으로 사용하면 조명과 신호의 송신을 겸할 수 있으며, 솔라 셀을 수광 소자로 이용하면 조명광을 수신하여 에너지를 축적하는 동시에 신호를 검출할 수 있기 때문에 별도의 통신 시설을 설치하지 않고 전송이 가능하여 매우 편리하다. 실험에서는 조명용 LED와 솔라 셀을 사용하여 9.6 kbps 속도로 무선광 데이터 전송을 실시하였다.

차량통신시스템에서의 멀티홉 전송 방법 (A multi-hop Communication Scheme in Vehicular Communication Systems)

  • 조웅
    • 한국인터넷방송통신학회논문지
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    • 제12권6호
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    • pp.111-116
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    • 2012
  • 차량통신은 정보통신기술과 차량 및 도로 기술을 결합한 대표적인 융합기술중 하나이다. 일반적으로 차량통신은 WAVE (Wireless Access in Vehicular Environments)라 일컫어지는 IEEE 802.11p 표준을 채택하고 있다. 본 논문에서는 차량-노변기지국간 통신 및 차량간 통신을 지원하는 IEEE 802.11p 기반 통신시스템의 멀티홉 전송방식에 대해 알아본다. 먼저 IEEE 802.11p 기반 통신시스템의 성능에 대해 간단히 살펴본 후 브로드캐스팅과 유니캐스팅의 멀티홉 전송 방식에 대해 소개한다. 제안된 방식의 성능은 실제 시스템을 구현한 후 실험을 통한 결과를 통해 알아본다.

Percolation Theory-Based Exposure-Path Prevention for 3D-Wireless Sensor Networks Coverage

  • Liu, Xiaoshuang;Kang, Guixia;Zhang, Ningbo
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제9권1호
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    • pp.126-148
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    • 2015
  • Different from the existing works on coverage problems in wireless sensor networks (WSNs), this paper considers the exposure-path prevention problem by using the percolation theory in three dimensional (3D) WSNs, which can be implemented in intruder detecting applications. In this paper, to avoid the loose bounds of critical density, a bond percolation-based scheme is proposed to put the exposure-path problem into a 3D uniform lattice. Within this scheme, the tighter bonds of critical density for omnidirectional and directional sensor networks under random sensor deployment-a 3D Poisson process are derived. Extensive simulation results show that our scheme generates tighter bounds of critical density with no exposure path in 3D WSNs.

산업용 IoT 네트워크 기술의 진화: 과거, 현재, 미래 동향 (Evolution of Industrial IoT Network Technology: Past, Present, and Future Trends)

  • 박태준;김은희;차재선;이계선
    • 전자통신동향분석
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    • 제38권3호
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    • pp.20-28
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    • 2023
  • Wireless communication technology has mainly been used to fulfill the demands of industrial sites at which performance is not a critical concern. However, ongoing discussions and efforts are now focused on securing core wireless communication technologies to enable the transformation or expansion of wired industrial IoT (Internet of Things) network technology into a flexible and dynamic smart manufacturing system. This paper provides an overview of current wireless industrial IoT network technology and the recent wireless time-sensitive networking technology. It outlines the challenging level of reliability required for wireless communication technology to coexist with or replace its wired counterpart in future smart manufacturing systems. Additionally, we introduce ultra-reliable time deterministic network as the core technology of wireless industrial communications and focus on its reliability and delay characteristics.

Implementation of cost-effective wireless photovoltaic monitoring module at panel level

  • Jeong, Jin-Doo;Han, Jinsoo;Lee, Il-Woo;Chong, Jong-Wha
    • ETRI Journal
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    • 제40권5호
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    • pp.664-676
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    • 2018
  • Given the rapidly increasing market penetration of photovoltaic (PV) systems in many fields, including construction and housing, the effective maintenance of PV systems through remote monitoring at the panel level has attracted attention to quickly detect faults that cause reductions in yearly PV energy production, and which can reduce the whole-life cost. A key point of PV monitoring at the panel level is cost-effectiveness, as the installation of the massive PV panels that comprise PV systems is showing rapid growth in the market. This paper proposes an implementation method that involves the use of a panel-level wireless PV monitoring module (WPMM), and which assesses the cost-effectiveness of this approach. To maximize the cost-effectiveness, the designed WPMM uses a voltage-divider scheme for voltage metering and a shunt-resistor scheme for current metering. In addition, the proposed method offsets the effect of element errors by extracting calibration parameters. Furthermore, a design method is presented for portable and user-friendly PV monitoring, and demonstration results using a commercial 30-kW PV system are described.

Rapid-to-deploy reconfigurable wireless structural monitoring systems using extended-range wireless sensors

  • Kim, Junhee;Swartz, R. Andrew;Lynch, Jerome P.;Lee, Jong-Jae;Lee, Chang-Geun
    • Smart Structures and Systems
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    • 제6권5_6호
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    • pp.505-524
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    • 2010
  • Wireless structural monitoring systems consist of networks of wireless sensors installed to record the loading environment and corresponding response of large-scale civil structures. Wireless monitoring systems are desirable because they eliminate the need for costly and labor intensive installation of coaxial wiring in a structure. However, another advantageous characteristic of wireless sensors is their installation modularity. For example, wireless sensors can be easily and rapidly removed and reinstalled in new locations on a structure if the need arises. In this study, the reconfiguration of a rapid-to-deploy wireless structural monitoring system is proposed for monitoring short- and medium-span highway bridges. Narada wireless sensor nodes using power amplified radios are adopted to achieve long communication ranges. A network of twenty Narada wireless sensors is installed on the Yeondae Bridge (Korea) to measure the global response of the bridge to controlled truck loadings. To attain acceleration measurements in a large number of locations on the bridge, the wireless monitoring system is installed three times, with each installation concentrating sensors in one localized area of the bridge. Analysis of measurement data after installation of the three monitoring system configurations leads to reliable estimation of the bridge modal properties, including mode shapes.

Applying Artificial Intelligence Based on Fuzzy Logic for Improved Cognitive Wireless Data Transmission: Models and Techniques

  • Ahmad AbdulQadir AlRababah
    • International Journal of Computer Science & Network Security
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    • 제23권12호
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    • pp.13-26
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    • 2023
  • Recently, the development of wireless network technologies has been advancing in several directions: increasing data transmission speed, enhancing user mobility, expanding the range of services offered, improving the utilization of the radio frequency spectrum, and enhancing the intelligence of network and subscriber equipment. In this research, a series of contradictions has emerged in the field of wireless network technologies, with the most acute being the contradiction between the growing demand for wireless communication services (on operational frequencies) and natural limitations of frequency resources, in addition to the contradiction between the expansions of the spectrum of services offered by wireless networks, increased quality requirements, and the use of traditional (outdated) management technologies. One effective method for resolving these contradictions is the application of artificial intelligence elements in wireless telecommunication systems. Thus, the development of technologies for building intelligent (cognitive) radio and cognitive wireless networks is a technological imperative of our time. The functions of artificial intelligence in prospective wireless systems and networks can be implemented in various ways. One of the modern approaches to implementing artificial intelligence functions in cognitive wireless network systems is the application of fuzzy logic and fuzzy processors. In this regard, the work focused on exploring the application of fuzzy logic in prospective cognitive wireless systems is considered relevant.

Implementation of Human Motion Following Robot through Wireless Communication Interface

  • Choi, Hyoukryeol;Jung, Kwangmok;Ryew, SungMoo;Kim, Hunmo;Jeon, Jaewook;Nam, Jaedo
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2002년도 ICCAS
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    • pp.36.3-36
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    • 2002
  • $\textbullet$ Motion capture system $\textbullet$ Exoskeleton mechanism $\textbullet$ Kinematics analysis $\textbullet$ Man-machine Interface $\textbullet$ Wireless communication $\textbullet$ Control algorithm

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THz 실내 무선 통신시스템을 위한 전파환경 분석 (Analysis of Propagation Environments for Indoor Wireless Communication Systems at THz Frequencies)

  • 이원희;정태진
    • 한국인터넷방송통신학회논문지
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    • 제10권2호
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    • pp.1-6
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    • 2010
  • 근거리 무선 통신시스템은 사무실과 가정의 응용으로 빠르게 확장하고 있다. 무선 네트워크의 개발은 더 높은 data rate의 요구를 만족하도록 수행되었다. 이것으로 높은 주파수에서 동작하는 통신시스템 개발의 필요성이 강조된다. 따라서 근거리 무선 통신 네트워크는 테라헤르츠 주파수 쪽으로 옮겨갈 것으로 기대된다. 실내의 벽과 바닥, 천장에 의해 발생하는 전파 환경 분석은 3차원 광선방출기법을 이용하였다. 또한 테라헤르츠 주파수에서의 rough한 건물 벽면의 특성을 파악하기 위해 광학적으로 두꺼운 smooth한 건물 재질의 반사 모델로부터 접근하여 나타내었다. 전파환경 시뮬레이션 결과평균 수신 전력이 참고문헌의 결과와 유사한 결과를 얻을 수 있었다. 또한, 실내 공간의 크기가 $6m(L){\times}5m(W){\times}2.5m(H)$에서 콘크리트 벽의 경우 RMS 지연시간은 9.11 ns로 계산되었다.