• Title/Summary/Keyword: IEEE 1451.2

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Design of electronic tongue using IEEE 1451.2 (IEEE 1451.2를 이용한 전자혀 설계)

  • Kim, Dong-Jin;Kim, Jeong-Do;Jung, Woo-Suk;Lee, Jung-Hwan;Kim, Myung-Guy;Yoon, Chul-Oh
    • Journal of Sensor Science and Technology
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    • v.16 no.2
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    • pp.150-158
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    • 2007
  • The IEEE 1451 publication are available, this standard defines interface between sensor and processor, and plug and play in processor is possible. Also, Intelligence of sensor was possible because sensor includes transducer electronic data sheet (TEDS). In IEEE 1451 standards, IEEE 1451.4 is suitable standard in single sensor, and IEEE 1451.2 is suitable standard in multi-sensors (array sensor). In this paper, apply IEEE 1451 to electronic tongue system. In the case of electronic tongue system, because array sensor is used, it is that complex and difficult to apply IEEE 1451.4 that is standard for single sensor. In this paper, apply IEEE 1451.2 for array sensor to design of electronic tongue system. Communication interface method of IEEE 1451.2 for electronic tongue system is presented, and implemented TEDS of electronic tongue system.

A Study on the application of IEEE 1451 for efficient measurement system (효과적인 계측시스템을 위한 IEEE 1451 적용에 관한 연구)

  • Cho, Hyang-Duck;Park, Woo-Il;Moon, Se-Sang;Kim, Woo-Shik
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2007.05a
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    • pp.983-986
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    • 2007
  • In this paper, we addressed the IEEE 1451.x that can organize a sensor network for efficient measurement system. IEEE 1451 provides standard interface, specification and Object model for example Network Capable Application Processor(NCAP), Transducer Electronic Data Sheet(TEDS), Smart Transducer Interface Module (STIM) and so on. Especially IEEE 1451.2 defines the TEDS Formats and STIM. The TEDS makes transducer to be used independently from device. NCAP makes the component of measurement system to be handled as an object. Therefore each function block constructs system by using Add-on. IEEE 1451.x can be expend the system with Add-on and Plug-and-Play by using smart sensor and connected with current network. We expect that this method can provide the efficiency and convenience when using the measurement system.

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A study on the Implementation of Standard Transducer Protocol on IEEE 1451.2 for Sensor Networking (센서 네트워킹을 위한 변환표준 프로토콜 IEEE 1451.2 의 구현에 관한 연구)

  • Cho, Hyng-Duck;Lim, Keung-Sang;Kim, Jae-Hwan;Kim, Bong-Sung;Hu, Jung-Il;Kim, Woo-Shik
    • 한국정보통신설비학회:학술대회논문집
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    • 2005.08a
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    • pp.364-369
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    • 2005
  • 센서네트워크는 유비쿼터스를 적용하기 위한 통신환경중 하나다. 다양한 종류의 센서들이 서로 다른 하드웨어환경과 네트쿼크환경에서 공통의 데이터를 사용하기 위해서 계측과 데이터 표현을 위한 통신표준이 요구된다. IEEE 1451은 네트쿼크 기술과 독립적으로 계측 및 데이터 표현방법을 제공하기위한 통신표준이다. 특히 IEEE 1451.2는 다양한 종류의 센서로부터 데이터를 획득하고, 액츄에이터로 데이터를 전송하는데 필요한 데이터 변환방법을 인터페이스 모듈로 정의한 것이다. 본 논문은 IEEE 1451.2에 대해서 소개하고 구현을 위한 1451.2의 Object를 구성한다. 그리고 프레임 전송을 위한 TII상태머신과 시뮬레이션을 보인다.

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A Way to Smart Interface based on the IEEE 1451 Standards for Five-senses Information Device in Ubiquitous Environments (유비쿼터스 환경에서 오감 정보 장치를 위한 IEEE 1451 표준 기반의 스마트 인터페이스 방안)

  • Kim, Dong-Jin;Kim, Jeong-Do;Ham, Yu-Kyung;Lee, Jung-Hwan
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.9 no.2
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    • pp.339-346
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    • 2008
  • Ubiquitous computer can be interfaced with many several peripheral devices for information acquisition. Users should be able to easily use these devices without considering when these devices were interfaced, how to use these devices, and interoperability issues (such as plug and play, the installation of device drivers, and so on). Further, computers and their users need an interface technology that provides five-senses information (the recognition and expressions of the user) such that multimodal interaction can be enabled. In this paper, we proposed an IEEE 1451 standard that uses a smart interface standard for interfacing devices with ubiquitous computer. IEEE 1451 describes the property information of a transducer in the transducer electronic data sheet (TEDS). Further, by using the TEDS format, the interoperability between devices can be enabled by means of the plug-and-play function; it also makes the inconvenient installations of device drivers unnecessary.

Implementation of Wired Sensor Network Interface Systems (유선 센서 네트워크 인터페이스 시스템 구현)

  • Kim, Dong-Hyeok;Keum, Min-Ha;Oh, Se-Moon;Lee, Sang-Hoon;Islam, Mohammad Rakibul;Kim, Jin-Sang;Cho, Won-Kyung
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.45 no.10
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    • pp.31-38
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    • 2008
  • This paper describes sensor network system implementation for the IEEE 1451.2 standard which guarantees compatibilities between various wired sensors. The proposed system consists of the Network Capable Application Processor(NCAP) in the IEEE 1451.0, the Transducer Independent Interface(TII) in the IEEE 1451.2, the Transducer Electronic Data Sheet(TEDS) and sensors. The research goal of this study is to minimize and optimize system complexity for IC design. The NCAP is implemented using C language in personal computer environment. TII is used in the parallel port between PC and an FPGA application board. Transducer is implemented using Verilog on the FPGA application board. We verified the proposed system architecture based on the standards.

Implementation of IEEE 1451 based ZigBee Smart Sensor System for Active Telemetries (능동형 텔레매트릭스를 위한 IEEE 1451 기반 ZigBee 스마트 센서 시스템의 구현)

  • Lee, Suk;Song, Young-Hun;Park, Jee-Hun;Kim, Man-Ho;Lee, Kyung-Chang
    • Journal of the Korean Society for Precision Engineering
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    • v.28 no.2
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    • pp.176-184
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    • 2011
  • As modern megalopolises become more complex and huge, convenience and safety of citizens are main components for a welfare state. In order to make safe society, telemetrics technology, which remotely measures the information of target system using electronic devices, is an essential component. In general, telemetrics technology consists of USN (ubiquitous sensor network) based on a wireless network, smart sensor, and SoC (system on chip). In the smart sensor technology, the following two problems should be overcome. Firstly, because it is very difficult for transducer manufacturers to develop smart sensors that support all the existing network protocols, the smart sensor must be independent of the type of networking protocols. Secondly, smart sensors should be modular so that a faulty sensor element can be replaced without replacing healthy communication element. To solve these problems, this paper investigates the feasibility of an IEEE 1451 based ZigBee smart sensor system. More specifically, a smart sensor for large network coverage has been developed using ZigBee for active telemetrics.