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Minimizing Up-Front Data Transmission on Web Based Vector GIS

机译:最小化基于Web的矢量GIS上的前端数据传输

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In conventional Web Geographic Information System(GIS), there are serious drawbacks of high waiting time and low accessibility because the subsequent query has to wait until all the spatial data has been completely transmitted. In addressing these problems, this paper proposes a progressive transmission method which can reduce waiting time and increase accessibility. The proposed method has the following steps. First, significant vertices of geographic objects are selected into based on an algorithm, Priority_Order_Estimation(POE). Second, the selected vertices are inserted the data structure, Priority_Orde_Queue(POQ). This allows a client to view, to request and occasionally to reject spatial data, rather than waiting for the whole map to arrive. Third, the transmission steps are processed progressively, where significant vertices of POQ are sent from server to client one by one. In the final step, if necessary, the entire spatial data set of SENDOBJSP, which is a transmission structure, is transmitted so that the original map is accurately displayed. The performance of the system proposed here has been evaluated according to the factors such as system response time and client storage space. For the comparisons, the total transmission method, layer transmission method and the proposed four-step transmission method were used. Compared with the conventional Web-based GIS, the system response time is twenty-two percent shorter and client storage space is reduced by about twenty-one percent. As a result, performance improvement, fast response time and less client storage usage, is achieved. Therefore, the proposed method can make a significant contribution in support of Web-based Vector GIS applications such as Environmental Management, Map On Demand Service and Assessment and Planning System.
机译:在常规的Web地理信息系统(GIS)中,存在严重的缺点,即等待时间长且可访问性差,因为后续查询必须等待直到所有空间数据都已完全传输为止。为了解决这些问题,本文提出了一种渐进传输方法,可以减少等待时间并增加可访问性。所提出的方法具有以下步骤。首先,根据算法Priority_Order_Estimation(POE)选择地理对象的重要顶点。其次,将选定的顶点插入数据结构Priority_Orde_Queue(POQ)。这使客户可以查看,请求并偶尔拒绝空间数据,而不必等待整个地图到达。第三,传输步骤是逐步进行的,其中POQ的重要顶点从服务器一一发送到客户端。在最后一步中,如有必要,将传输结构SENDOBJSP的整个空间数据集传输出去,以便准确显示原始地图。已根据系统响应时间和客户端存储空间等因素对此处提出的系统的性能进行了评估。为了进行比较,使用了总传输方法,层传输方法和建议的四步传输方法。与传统的基于Web的GIS相比,系统响应时间缩短了22%,客户端存储空间减少了约21%。结果,实现了性能改进,快速响应时间和更少的客户端存储使用。因此,所提出的方法可以为支持基于Web的矢量GIS应用程序做出重要贡献,例如环境管理,按需地图服务以及评估和计划系统。

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