Geological data information cluster mechanism and interface aggregation system
A technology of interface aggregation and clustering, which is applied in the direction of electrical digital data processing, special data processing applications, instruments, etc., can solve the problems of restricting the potential value of geological data information, poor geological data information service channels, and limited fields, etc., to improve Social influence and public service capabilities, reducing social investment waste, and improving value-added effects
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Embodiment 1
[0028] Such as figure 1 Shown is the inheritance and coupling relationship diagram of the "push-pull transfer" class system of the geological data information cluster mechanism and interface aggregation system of the present invention. The present invention is divided into four modes of "push-pull transfer" around the cluster mechanism and interface aggregation system as follows:
[0029] 1. Pull mode
[0030] According to the cluster registry, with the group as the processing unit, CPU multi-core parallel technology is adopted for multi-protocols (such as http, https, ftp, file, etc.) for touch discovery and information capture. A three-dimensional dictionary is established by combining hash key values composed of archive timestamps to form a distributed cluster networking form or architectural mapping tree. Among them, the file protocol forcibly points to the protected .\App_Data\xmlpublish path to support the publishing pool (private land).
[0031] The point of the pre...
Embodiment 2
[0049] The present invention adopts the framework idea of facing user groups, facing data resources, and facing collaborative services. On the basis of referring to the OGC international open standard, the multivariate heterogeneous geological data information with spatial positioning characteristics is described in a unified manner, making it easy to integrate, Sharing and publishing; relying on efficient parallel computing cutting-edge theory, the node networking model is mapped into a network or tree-like "group" system with loosely coupled (elastic) characteristics, and each independent group or derived group is controlled by a "push-pull" "Transfer" interface aggregator constitutes to present the browser's access situation to the node group (Browser vs Nodes) to the outside world. The workflow is divided into four main stages in chronological order: format formulation, model design, test evaluation, and deployment and operation. The breakdown is as follows:
[0050] 1....
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