• Title/Summary/Keyword: Attribute-based Naming

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An Attribute-Based Naming Architecture for Wireless Sensor Networks (무선 센서 네트워크를 위한 속성 기반 네이밍 구조)

  • Jung, Eui-Hyun
    • Journal of the Korea Society of Computer and Information
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    • v.12 no.4
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    • pp.95-102
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    • 2007
  • Recently, a lot of researchers focus on the sensor middleware that hide the complexity of application developments and provide the abstraction of functions to upper application layer. Although there we several factors to design sensor middleware, the attribute-based naming is considered to be an essential factor among them. However, most existing researches were not designed to reflect the characteristics of sensor networks and have the limitation of attribute-based query extension. This study adopts the concept of Virtual Counterpart to suggest the structure there attribute-based naming is supported by virtual sensor nodes of the middleware on the sink node. Unlike traditional data-centric middleware in which individual sensor nodes process attribute-based query, virtual sensor nodes mapped to physical sensor nodes are running on the middleware of the sink node and process attribute-based query as a proxy of the physical sensor. This approach enables attribute-based naming independent of physical infrastructure and easy extensibility.

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Attribute-based Naming Support for Wireless Sensor Network (무선 센서 네트워크를 위한 속성 기반 네이밍 지원)

  • Seo Hanbae;Jung Euihyun;Kim Yongpyo;Park Yongjin
    • Proceedings of the Korean Information Science Society Conference
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    • 2005.11a
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    • pp.478-480
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    • 2005
  • 센서 네트워크는 다수의 센서 노드들이 센싱된 데이터를 보고하는 형태의 네트워크로 기존 데이터 중심(Data-centric) 통신 모델은 오버헤드와 응답 속도의 저하와 관련된 문제점을 노출하고 있으며, 이를 해결하기 위한 방안으로 속성 기반 네이밍(Attribute-based naming)이 새로운 라우팅 구조로 주목받고 있다. 본 연구에서는 가상 대응체 (Virtual Counterpart) 개념을 센서 네트워크에 적용하여 속성 기반 네이밍을 싱크 노드내의 가상 센서 노드에서 처리해주는 구조를 제안하였다. 기존의 다른 속성 기반 네이밍 연구들과 달리 리얼센서에 대응되는 가상 센서 노드를 싱크 노드에서 운용하고, 리얼 센서의 데이터를 주기적으로 업데이트한 후, 속성 기반 쿼리를 가상 센서 노드가 리얼 센서를 대행하여 처리하는 구조를 설계하였다. 이런 구조를 취함으로써 효율적인 응답 처리와 하부 네트워크에 비종속적인 속성 기반 네이밍이 가능하며, 쿼리의 확장성과 센서들의 결합을 통한 부가적인 기능을 제공할 수 있게 된다.

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A Naming Application Model for Sensor Networks (센서 네트워크를 위한 네이밍 응용 모델)

  • Kim, Young-Jun
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.10 no.11
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    • pp.3183-3192
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    • 2009
  • The purpose of this paper is to introduce Naming application model for sensor networks. Currently, sensor networks comprised of sensor nodes have provided an application range which could not function before. However, unlike general network, current sensor networks are designed to cooperate with major wireless-capable sensor devices with limited resources. Thus, exporting/importing between individual sensor and current sensor networks is very inefficient and unstable. Attribute, schema and DIT(Directory Information Tree) must be designed for sensor network using SN LDAP application model in order to maintain transparency and provide constant service in a situation of data defect. With the system explained as above, Naming application model is made to manage SN Fuzzy Query. It shall be more efficient and stable structure as long as Naming application using a virtual equation in a certain environment with information collected from sensor node is provided. In this paper, I would like to introduce SN Fuzzy LDAP model for sensor network by quick Naming method. Also, naming application which is possible for fuzzy query in a certain environment based on the system will be proved.

Landscape Object Classification and Attribute Information System for Standardizing Landscape BIM Library (조경 BIM 라이브러리 표준화를 위한 조경객체 및 속성정보 분류체계)

  • Kim, Bok-Young
    • Journal of the Korean Institute of Landscape Architecture
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    • v.51 no.2
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    • pp.103-119
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    • 2023
  • Since the Korean government has decided to apply the policy of BIM (Building Information Modeling) to the entire construction industry, it has experienced a positive trend in adoption and utilization. BIM can reduce workloads by building model objects into libraries that conform to standards and enable consistent quality, data integrity, and compatibility. In the domestic architecture, civil engineering, and the overseas landscape architecture sectors, many BIM library standardization studies have been conducted, and guidelines have been established based on them. Currently, basic research and attempts to introduce BIM are being made in Korean landscape architecture field, but the diffusion has been delayed due to difficulties in application. This can be addressed by enhancing the efficiency of BIM work using standardized libraries. Therefore, this study aims to provide a starting point for discussions and present a classification system for objects and attribute information that can be referred to when creating landscape libraries in practice. The standardization of landscape BIM library was explored from two directions: object classification and attribute information items. First, the Korean construction information classification system, product inventory classification system, landscape design and construction standards, and BIM object classification of the NLA (Norwegian Association of Landscape Architects) were referred to classify landscape objects. As a result, the objects were divided into 12 subcategories, including 'trees', 'shrubs', 'ground cover and others', 'outdoor installation', 'outdoor lighting facility', 'stairs and ramp', 'outdoor wall', 'outdoor structure', 'pavement', 'curb', 'irrigation', and 'drainage' under five major categories: 'landscape plant', 'landscape facility', 'landscape structure', 'landscape pavement', and 'irrigation and drainage'. Next, the attribute information for the objects was extracted and structured. To do this, the common attribute information items of the KBIMS (Korean BIM Standard) were included, and the object attribute information items that vary according to the type of objects were included by referring to the PDT (Product Data Template) of the LI (UK Landscape Institute). As a result, the common attributes included information on 'identification', 'distribution', 'classification', and 'manufacture and supply' information, while the object attributes included information on 'naming', 'specifications', 'installation or construction', 'performance', 'sustainability', and 'operations and maintenance'. The significance of this study lies in establishing the foundation for the introduction of landscape BIM through the standardization of library objects, which will enhance the efficiency of modeling tasks and improve the data consistency of BIM models across various disciplines in the construction industry.