• Title/Summary/Keyword: 시공간 색인

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Dynamic Insertion Policy based on Spatiotemporal Proximity in the TB-tree (시공간 근접성을 고려한 TB-tree의 동적 삽입 정책)

  • 장종우;임덕성;홍봉희
    • Proceedings of the Korean Information Science Society Conference
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    • 2003.04a
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    • pp.776-778
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    • 2003
  • 이동체 데이터베이스에서 대용량 궤적 정보를 효율적으로 검색학기 위해서는 색인이 필요하다. 특히 궤적을 선택하는 과정과 선택된 궤적의 일부분을 추출하는 과정으로 이루어진 복합 질의를 효율적으로 처리하기 위해서는 궤적 보존을 지원하는 TB-tree와 같은 색인 구조가 적합하다. 그러나, TB-tree는 공간적인 인접성을 고려하지 않아 비단말 노드의 겹침과 사장 영역이 매우 커 영역 질의의 비용이 증가하는 문제가 있다. 이 논문에서는 복합 질의 및 영역 질의를 효율적으로 처리하기 위하여, TB-tree에서 사장 영역을 감소시킬 수 있는 최대 영역 감소 정책을 제시한다. 최대 영역 감소 정책을 공간 활용도를 최대로 유지하면서 사장 영역을 점진적으로 감소시키는 삽일 및 분할 정책으로서 TB-tree의 비단말 노드의 겹침을 줄여 영역 질의의 비용을 감소시킨다.

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A Node Relocation Strategy of Trajectory Indexes for Efficient Processing of Spatiotemporal Range Queries (효율적인 시공간 영역 질의 처리를 위한 궤적 색인의 노드 재배치 전략)

  • Lim Duksung;Cho Daesoo;Hong Bonghee
    • Journal of KIISE:Databases
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    • v.31 no.6
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    • pp.664-674
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    • 2004
  • The trajectory preservation property that stores only one trajectory in a leaf node is the most important feature of an index structure, such as the TB-tree for retrieving object's moving paths in the spatio-temporal space. It performs well in trajectory-related queries such as navigational queries and combined queries. But, the MBR of non-leaf nodes in the TB-tree have large amounts of dead space because trajectory preservation is achieved at the sacrifice of the spatial locality of trajectories. As dead space increases, the overlap between nodes also increases, and, thus, the classical range query cost increases. We present a new split policy and entry relocation policies, which have no deterioration of the performance for trajectory-related queries, for improving the performance of range queries. To maximally reduce the dead space of a non-leaf node's MBR, the Maximal Area Reduction (MAR) policy is used as a split policy for non-leaf nodes. The entry relocation policy induces entries in non-leaf nodes to exchange each other for the purpose of reducing dead spaces in these nodes. We propose two algorithms for the entry relocation policy, and evaluate the performance studies of new algorithms comparing to the TB-tree under a varying set of spatio-temporal queries.

Index method of using Rend 3DR-tree for Location-Based Service (위치 기반 서비스를 위한 Rend 3DR-tree를 이용한 색인 기법)

  • Nam, Ji-Yeun;Rim, Kee-Wook;Lee, Jeong-Bae;Lee, Jong-Woock;Shin, Hyun-Cheol
    • Convergence Security Journal
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    • v.8 no.4
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    • pp.97-104
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    • 2008
  • Recently, the wireless positioning techniques and mobile computing techniques have rapidly developed to use location data of moving objects. The more the number of moving objects is numerous and the more periodical sampling of locations is frequent, the more location data of moving objects become very large. Hence the system should be able to efficiently manage mass location data, support various spatio-temporal queries for LBS, and solve the uncertainty problem of moving objects. Therefore, in this paper, innovating the location data of moving object effectively, we propose Rend 3DR-tree method to decrease the dead space and complement the overlapping of nodes by utilizing 3DR-tree with the indexing structure to support indexing of current data and history data.

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A Study on Bottom-Up Update of TPR-Tree for Target Indexing in Naval Combat Systems (함정전투체계 표적 색인을 위한 TPR-Tree 상향식 갱신 기법)

  • Go, Youngkeun
    • Journal of the Korea Institute of Military Science and Technology
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    • v.22 no.2
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    • pp.266-277
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    • 2019
  • In modern warfare, securing time for preemptive response is recognized as an important factor of victory. The naval combat system, the core of naval forces, also strives to increase the effectiveness of engagement by improving its real-time information processing capabilities. As part of that, it is considered to use the TPR-tree in the naval combat system's target indexing because spatio-temporal searches can be performed quickly even as the number of target information increases. However, because the TPR-tree is slow to process updates, there is a limitation to handling frequent updates. In this paper, we present a method for improving the update performance of TPR-tree by applying the bottom-up update scheme, previously proposed for R-tree, to the TPR-tree. In particular, we analyze the causes of overlaps occurring when applying the bottom-up updates and propose ways to limit the MBR expansion to solve it. Our experimental results show that the proposed technique improves the update performance of TPR-tree from 3.5 times to 12 times while maintaining search performance.

Policies of Trajectory Clustering in Index based on R-trees for Moving Objects (이동체를 위한 R-트리 기반 색인에서의 궤적 클러스터링 정책)

  • Ban ChaeHoon;Kim JinGon;Jun BongGi;Hong BongHee
    • The KIPS Transactions:PartD
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    • v.12D no.4 s.100
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    • pp.507-520
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    • 2005
  • The R-trees are usually used for an index of trajectories in moving-objects databases. However, they need to access a number of nodes to trace same trajectories because of considering only a spatial proximity. Overlaps and dead spaces should be minimized to enhance the performance of range queries in moving-objects indexes. Trajectories of moving-objects should be preserved to enhance the performance of the trajectory queries. In this paper, we propose the TP3DR-tree(Trajectory Preserved 3DR-tree) using clusters of trajectories for range and trajectory queries. The TP3DR-tree uses two split policies: one is a spatial splitting that splits the same trajectory by clustering and the other is a time splitting that increases space utilization. In addition, we use connecting information in non-leaf nodes to enhance the performance of combined-queries. Our experiments show that the new index outperforms the others in processing queries on various datasets.

A Group Update Technique based on a Buffer Node to Store a Vehicle Location Information (차량 위치 정보 저장을 위한 버퍼 노드 기반 그룹 갱신 기법)

  • Jung, Young-Jin;Ryu, Keun-Ho
    • Journal of KIISE:Databases
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    • v.33 no.1
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    • pp.1-11
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    • 2006
  • It is possible to track the moving vehicle as well as to develop the location based services actively according to the progress of wireless telecommunication and GPS, to the spread of network, and to the miniaturization of cellular phone. To provide these location based services, it is necessary for an index technique to store and search too much moving object data rapidly. However the existing indices require a lot of costs to insert the data because they store every position data into the index directly. To solve this problem in this paper, we propose a buffer node operation and design a GU-tree(Group Update tree). The proposed buffer node method reduces the input cost effectively since the operation stores the moving object location data in a group, the buffer node as the unit of a non-leaf node. hnd then we confirm the effect of the buffer node operation which reduces the insert cost and increase the search performance in a time slice query from the experiment to compare the operation with some existing indices. The proposed tufter node operation would be useful in the environment to update locations frequently such as a transportation vehicle management and a tour-guide system.

An Improved Split Algorithm for Indexing of Moving Object Trajectories (이동 객체 궤적의 색인을 위한 개선된 분할 알고리즘)

  • Jeon, Hyun-Jun;Park, Ju-Hyun;Park, Hee-Suk;Cho, Woo-Hyun
    • The KIPS Transactions:PartD
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    • v.16D no.2
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    • pp.161-168
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    • 2009
  • Recently, use of various position base servicesthat collect position information for moving object and utilize in real life is increasing by the development of wireless network technology. Accordingly, new index structures are required to efficiently retrieve the consecutive positions of moving objects. This paper addresses an improved trajectory split algorithm for the purpose of efficiently supporting spatio-temporal range queries using index structures that use Minimum Bounding Rectangles(MBR) as trajectory approximations. We consider volume of Extended Minimum Bounding Rectangles (EMBR) to be determined by average size of range queries. Also, Use a priority queue to speed up our process. This algorithm gives in general sub-optimal solutions with respect to search space. Our improved trajectory split algorithm is going to derive minimizing volume of EMBRs better than previously proposed split algorithm.

Efficient continuous query processing technique based on selectivity for EPC data with time and location (시공간 EPC 데이터 처리를 위한 선택률 기반 효율적인 연속질의 처리 기법)

  • Chu, Byung-Jo;Hong, Bong-Hee;Kim, Gi-Hong
    • Proceedings of the Korean Association of Geographic Inforamtion Studies Conference
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    • 2008.10a
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    • pp.100-105
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    • 2008
  • EPCglobal은 기업 간의 물류 활동 촉진과 글로벌 유통물류 시스템 구축을 위하여 EPCglobal Architecture Framework을 제시 하였다. EPCglobal Architecture Framework의 한 구성 요소인 EPCIS(Electronic Product Code Information Services)는 EPC, 시간, 위치와 같은 물류 관련 정보에 대해 저장 및 검색 서비스를 제공한다. EPCIS는 단발성 질의(poll)와 연속 질의(subscribe) 검색 서비스를 제공한다. EPCIS의 연속 질의는 시스템 자동화 및 재고 관리, 공급망 관리를 위해 다양한 응용에서 활용이 가능하다. 일반적으로 연속 질의 처리를 위해서는 등록된 연속 질의와 입력된 데이터를 순차적으로 비교하는 Sequential Matching 기법을 사용한다. Sequential Matching기법은 등록된 연속 질의 수가 증가 할 경우 많은 부하를 발생 시키고, 이로 인해 시스템 처리 지연이 발생한다. 본 논문에서는 EPCIS의 시공간 EPC 데이터의 연속질의 처리 성능 향상을 위해 선택률 기반 효율적인 연속질의 처리 기법을 제안한다. 13차원의 도메인을 여러 개의 질의 색인으로 구성하고, 등록된 질의 정보를 기반으로 선택률을 계산한다. 선택률에 의해 변경되는 동적 질의 실행 계획을 제안함으로써, EPCIS에서 시공간 EPC 데이터의 연속질의 처리에 대해 평균 60%의 성능이 향상이 가능하도록 하였다.

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A Cost Model for the Performance Prediction of the TPR-tree (TPR-tree의 성능 예측을 위한 비용 모델)

  • 최용진;정진완
    • Journal of KIISE:Databases
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    • v.31 no.3
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    • pp.252-260
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    • 2004
  • Recently, the TPR-tree has been proposed to support spatio-temporal queries for moving objects. Subsequently, various methods using the TPR-tree have been intensively studied. However, although the TPR-tree is one of the most popular access methods in spatio-temporal databases, any cost model for the TPR-tree has not yet been proposed. Existing cost models for the spatial index such as the R-tree do not accurately ostinato the number of disk accesses for spatio-temporal queries using the TPR-tree, because they do not consider the future locations of moving objects. In this paper, we propose a cost model of the TPR-tree for moving objects for the first time. Extensive experimental results show that our proposed method accurately estimates the number of disk accesses over various spatio-temporal queries.

Time Parameterized Interval Modeling for Tracing Tags in RFID Systems (RFID 시스템에서 태그의 위치 추적을 위한 시간 매개변수 간격 모델링 기법)

  • Ban, Chae-Hoon;Hong, Bong-Hee
    • Proceedings of the Korea Information Processing Society Conference
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    • 2005.05a
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    • pp.129-132
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    • 2005
  • RFID 시스템에서 태그의 위치를 추적하기 위해서 궤적은 모델링되고 색인되어야 한다. 궤적은 태그가 판독기의 인식영역으로 들어갈 때와 나갈 때 보고되는 두개의 시공간 위치를 연결한 선분으로 표현될 수 있다. 만약 태그가 판독기의 인식영역에 들어와 나가지 않으면 시공간 위치는 오직 태그가 인식영역에 들어올 때만 보고된다. 따라서 판독기에 머물고 있는 태그는 궤적을 표현할 수가 없으므로 질의 시 이러한 태그를 검색할 수 없다. 이러한 문제를 해결하기 위하여 이 논문에서는 태그의 궤적을 시간 매개변수 간격으로 정의한다. 시간 매개변수 간격은 시간에 따라 시간 축길이가 변하는 시간에 종속적인 선분으로 판독기에 머무는 객체의 궤적을 표현할 수 있다. 또한 RFID 시스템에서 사용되는 질의를 분류하고 효율적인 처리를 위해 태그의 식별자를 차원에 추가하는 방법을 제안한다.

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