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Multiresolution Network Temporal and Spatial Scheduling Model of Scenic Spot

机译:景区多分辨率网络时空调度模型

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Tourism is one of pillar industries of the world economy. Low-carbon tourism will be the mainstream direction of the scenic spots' development, and theωpath of low-carbon tourism development is to develop economy and protect environment simultaneously. However, as the tourists' quantity is increasing, the loads of scenic spots are out of control. And the instantaneous overload in some spots caused the image phenomenon of full capacity of the whole scenic spot. Therefore, realizing the real-time schedule becomes the primary purpose of scenic spot’s management. This paper divides the tourism distribution system into several logically related subsystems and constructs a temporal and spatial multiresolution network scheduling model according to the regularity of scenic spots’ overload phenomenon in time and space. It also defines dynamic distribution probability and equivalent dynamic demand to realize the real-time prediction. We define gravitational function between fields and takes it as the utility of schedule, after resolving the transportation model of each resolution, it achieves hierarchical balance between demand and capacity of the system. The last part of the paper analyzes the time complexity of constructing a multiresolution distribution system.
机译:旅游业是世界经济的支柱产业之一。低碳旅游将成为风景名胜区发展的主流方向,低碳旅游的发展路径是发展经济,同时保护环境。但是,随着游客数量的增加,风景名胜区的负荷已无法控制。局部景点的瞬时超载导致整个景区的满负荷成像现象。因此,实现实时调度成为景区管理的主要目的。本文将旅游分布系统分为几个逻辑相关的子系统,并根据景点时空超载现象的规律性构建时空多分辨率网络调度模型。它还定义了动态分布概率和等效的动态需求,以实现实时预测。我们定义了场之间的引力函数,并将其作为计划的效用,在解决了每种分辨率的运输模型之后,它实现了系统需求与能力之间的等级平衡。本文的最后一部分分析了构建多分辨率分配系统的时间复杂性。

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