• 제목/요약/키워드: spatial network

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도시 공간분석을 위한 지상·지하 공간 네트워크 (Integrated Ground-Underground Spatial Network for Urban Spatial Analysis)

  • 박근송;최재필
    • 대한건축학회논문집:계획계
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    • 제34권4호
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    • pp.69-76
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    • 2018
  • The purpose of this study is to propose and verify a spatial network construction method that integrated roads and subway lines to improve the predictability of the urban spatial analysis model. The existing axial map for urban spatial analysis did not reflect the subway line that serves as an important moving space in modern cities. To improve this axial map, proposed a Ground-Underground Spatial Network by integrating the underground spatial network with the axial map. As a result of the integration analysis, the Ground-Underground Spatial Network(GUSN) were similar to the movement frequency. Correlation of GUSN was 0.723, which showed higher explanatory power than correlation coefficient of 0.575 in axial map. The result of this study is expected to be a theoretical basis for constructing spatial network in urban space analysis with subway.

개방형 BIM 기반 공간네트워크 분석도구 개발에 관한 연구 (A Study on Development of the Spatial Network Analysis Tool based on Open BIM Technologies)

  • 박영섭
    • 한국CDE학회논문집
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    • 제17권1호
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    • pp.7-16
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    • 2012
  • One distinguishing feature of BIM(Building Information Modeling) is the objectification of spatial elements independently, which makes it easy to represent spatial network. From this perspective, this study aimed to develop the spatial network analysis tool based on open BIM technologies. From the literature review, an object model of spatial network with nodes and links and a process model from construction to visualization were established. A prototype system implementing the proposed models, named SNAT(Spatial Network Analysis Tool), was developed in Java platform with using its open source packages. SNAT can create a spatial network from IFC-BIM model, calculate the indices of spatial network analysis, and visualize it with the representing types(map, graph, matrix and table).

공간 데이터스트림을 위한 조인 전략 및 비용 모델 (Strategies and Cost Model for Spatial Data Stream Join)

  • 유기현;남광우
    • 한국공간정보시스템학회 논문지
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    • 제10권4호
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    • pp.59-66
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    • 2008
  • GeoSensor 네트워크란 지리공간상에서 발생하는 다양한 현상들을 모니터링하는 특정형태의 센서네트워크 인프라 및 관련 소프트웨어를 의미한다. 그리고 이러한 GeoSensor 네트워크는 데이터스트림과 공간 속성의 데이터를 가진 스트림, 또는 공간 릴레이션과의 조합으로 구현될 수 있다. 하지만, 최근까지 연구된 센서 네트워크 시스템은 공간 정보를 배제한 센서 데이터스트림에 대한 저장 및 검색 방안 연구에 치중되어 있다. 따라서 본 논문은 GeoSensor 네트워크에서 데이터스트림과 공간 데이터가 결합된 형태의 공간 데이터스트림의 정의 및 그들 간의 조인 전략들을 제안한다. 본 논문에서 정의하고 있는 공간 데이터스 트림에는 이동 객체 형태의 동적 공간 데이터스트림과 고정된 형태의 정적 공간 데이터스트림이 있다. 동적공간 데이터스트림은 GPS와 같이 동적으로 이동하는 센서에 의해 전송되는 데이터스트림을 말한다. 반면, 정적 공간 데이터스트림은 일반 센서 형태의 데이터스트림과 이러한 센서들의 위치 값을 가지고 있는 릴레이션과의 조인으로 만들어 진다. 본 논문은 동적 공간 데이터스트림과 정적 공간 데이터스트림의 조인 및 조인 비용을 추정하는 모델을 제안하고 있다. 또한, 실험을 통해 제안하는 비용 모델의 검증 및 조인 전략에 따른 조인 성능을 보이고 있다.

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확산망에 의한 방향성 계층적 공간 필터의 구현 (Implementation of Hierarchical Spatial Filters with Orientation Selectivity by Using Diffusion Network)

  • 최태완;김재창
    • 전자공학회논문지B
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    • 제33B권10호
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    • pp.130-138
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    • 1996
  • In this paper, we propose a neural network which detect edges of different orentation and spatial frequency in arbitrary image data. We constructed the proposed neural network iwth two different types neural network. A diffusion network performs the gaussian operation efficiently by the diffusion process. And the spatial difference network has specially designed connections suitble to detect the contours of a specific oriention. Simulation results showed that the proposed neural network can extract the edges of selected orientation efficiently by applying the neural network to a test pattern and the real image.

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네트워크 흐름의 속도에 따른 공간구조 변화 (The Organization of Spatial Networks by the Velocity of Network Flows)

  • 한이철;이정재;이성우
    • 한국농공학회논문집
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    • 제53권1호
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    • pp.1-7
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    • 2011
  • The nature of a network implies movement among vertices, and can be regarded as flows. Based on the flow concept which network follows the hydraulic fluid principle, we develop a spatial network model using Bernoulli equation. Then we explore the organization of spatial network and growth by the velocity of network flows. Results show that flow velocity determines network connections or influence of a vertex up to a point, and that the overall network structure is the result of pull force (pressure) and flow velocity. We demonstrate how one vertex can monopolize connections within a network.

A 4S DESIGN ON MOBILE AD HOC NETWORKS

  • Lee, Eun-Kyu;Kim, Mi-Jeong;Oh, Byoung-Woo;Kim, Min-Soo
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2002년도 Proceedings of International Symposium on Remote Sensing
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    • pp.844-849
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    • 2002
  • A provision of spatial information is expected to make a market explosion in various fields. A distribution of spatial data on wireless mobile environments indicates a huge expansion of mobile technology as well as a spread of geospatial applications. For high quality spatial information, 4S technology project integrating 4 kinds of spatial systems is currently being executed with the goal of nationwide integration of spatial data and spatial information systems. In terms of network environments, a mobile ad hoc network where mobile terminals communicate with each other without any infrastructures has been standardized for the next generation mobile wireless network. With respect to the future technologies for spatial information, it is necessary to design 4S applications on mobile ad hoc networks. This paper addresses the issue, which is proposing design points for distributing 4S spatial data on mobile ad hoc networks and ad hoc styled 4S applications.

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A 4S Design on Mobile Ad hoc Networks

  • Lee, Eun-Kyu;Kim, Mi-Jeong;Oh, Byoung-Woo;Kim, Min-Soo
    • 대한원격탐사학회지
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    • 제19권1호
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    • pp.81-89
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    • 2003
  • A provision of spatial information is expected to make a market explosion in various fields. A distribution of spatial data on wireless mobile environments indicates a huge expansion of mobile technology as well as a spread of geospatial applications. For high-qualified spatial information, the 4S technology Project that is integrating four kinds of spatial systems is currently being executed with the goal of nationwide integration of spatial data and spatial information systems. In terms of network environments, a mobile ad hoc network where mobile terminals communicate with each other without any infrastructures has been standardized for the next generation mobile wireless network. With respect to the future technologies for spatial information, it is necessary to design 4S applications on mobile ad hoc networks. This paper addresses the issue, which is proposing design concepts for distributing 4S spatial data on mobile ad hoc networks and for ad hoc styled 4S applications.

GR-tree: 무선 센서 네트워크에서 에너지 효율적인 분산 공간색인기법 (The GR-tree: An Energy-Efficient Distributed Spatial Indexing Scheme in Wireless Sensor Networks)

  • 김민수;장인성
    • Spatial Information Research
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    • 제19권5호
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    • pp.63-74
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    • 2011
  • 최근 특정 공간영역 내에 포함되는 센서노드들만의 센싱정보를 에너지 효율적으로 수집하는 센서 네트워크 기반 공간질의처리에 대한 관심이 증가하고 있다. 이러한 센서 네트워크 기반 공간질의처리의 가장 단순한 방법은 모든 센서노드의 위치와 센싱정보를 서버로 수집한 다음, 서버에서 공간질의를 처리하는 Centralized 방법이다. 이 방법은 간단하다는 장점은 있지만, 모든 센서노드를 접근하기 위하여 소요되는 높은 무선통신 비용으로 인하여 센서노드의 에너지 효율성이 크게 떨어지는 단점을 가지고 있다. 이러한 Centralized 방법을 보완하기 위하여 센서노드에서 분산 공간 필터링을 수행하여 센서노드 간의 무선통신 횟수를 감소시키는 In-network 기반 분산 공간색인기법들이 제안되어 왔다. 그러나, 이러한 분산 공간색인기법들은 대부분 서버에서 이용되던 기존 공간색인기법들을 센서 네트워크에 단순히 적용하였기 때문에, In-network 환경에서 공간 필터링의 효과와 센서노드들 간의 무선 라우팅을 동시에 최적화하지 못하는 단점을 가지고 있다. 이에 본 논문에서는 In-network 환경에서 공간 필터링을 최적화하면서 동시에 센서노드들 간의 라우팅을 보장할 수 있는 GR-tree의 새로운 분산 공간색인기법을 제안하고자 한다. GR-tree 방법은 R-tree와 유사하게 MBR 기반의 트리를 구성하며, 센서노드들 간의 무선 라우팅 및 공간적인 인접성을 보장하면서 MBR들 간의 겹침을 최소화할 수 있는 특징을 가지고 있다. 끝으로, GR-tree와 기존 방법들의 다양한 성능 비교 실험을 통하여 제안된 방법의 효율성을 보여주고자 한다.

In-network Distributed Event Boundary Computation in Wireless Sensor Networks: Challenges, State of the art and Future Directions

  • Jabeen, Farhana;Nawaz, Sarfraz
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제7권11호
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    • pp.2804-2823
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    • 2013
  • Wireless sensor network (WSN) is a promising technology for monitoring physical phenomena at fine-grained spatial and temporal resolution. However, the typical approach of sending each sensed measurement out of the network for detailed spatial analysis of transient physical phenomena may not be an efficient or scalable solution. This paper focuses on in-network physical phenomena detection schemes, particularly the distributed computation of the boundary of physical phenomena (i.e. event), to support energy efficient spatial analysis in wireless sensor networks. In-network processing approach reduces the amount of network traffic and thus achieves network scalability and lifetime longevity. This study investigates the recent advances in distributed event detection based on in-network processing and includes a concise comparison of various existing schemes. These boundary detection schemes identify not only those sensor nodes that lie on the boundary of the physical phenomena but also the interior nodes. This constitutes an event geometry which is a basic building block of many spatial queries. In this paper, we introduce the challenges and opportunities for research in the field of in-network distributed event geometry boundary detection as well as illustrate the current status of research in this field. We also present new areas where the event geometry boundary detection can be of significant importance.

사회네트워크 분석을 이용한 광주 전남지역의 공간 구조 변화 및 중심지 분석 (Analysis of Spatial Structures and Central Places of Gwangju and Jeonnam Region using Social Network Analysis)

  • 이지민
    • 농촌계획
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    • 제23권2호
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    • pp.43-54
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    • 2017
  • When an age of low growth and population decline, population migration plays an important role in spatial structure of region. There have been many researches on migration and regional spatial structure. The purpose of this study is to examine the changes of Gwangju and Jeonnam region's spatial structure and central area using social network analysis methods. For analysis it was used that population and migration data and passenger OD(Origin and Destination) travel data released by Statistics Korea and Korea Transport Database(KTDB). Using Gephi 0.8.2, migration and passenger OD networks were visualized, and this describe network flow and density. The results of the network centrality analysis show that the most populated village is not always network center though population mass is an important factor of central places. The average eigenvector centrality of 2010 migration is the lowest during 2005-2015, and it means few regions have high centralities. When comparing migration and travel networks, travel data is more effective than migration data in determining the central location considering spatial functions.