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121.
针对扫描点云杂乱无序的特点,讨论了点云数据预处理的问题,提出了一种新的基于点云切片的数据预处理迭代算法.通过对点云最小包围盒进行均匀分割及分割后点云的密度分析,对密度过大的分割块进行迭代分割,建立了3个方向的点云切片和截面线.结果不仅大大减少了点云数据量,并且在点云密度过大的区域很好地保持了模型的原始特征,同时将原始的无序数据点集转化为具有层列结构的有序组织形式,确定了各点之间的相互关系,为后续曲线曲面拟合做了很好的准备. 相似文献
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把握快递行业未来发展方向,梳理了大数据技术在快递行业的应用场景并分析了大数据技术对快递行业的影响。分析结果表明,大数据技术能帮助快递企业进行最优配送方案推荐、实时监控车辆设备、解构行业数据、分析市场格局等,从而帮助行业提升配送效率、降低配送成本。未来,快递行业将充分利用大数据技术加强对物流数据的收集、分析与业务应用。在大数据技术影响下,快递企业将呈现四大发展趋势:(1)时效进一步提升,成本继续降低;(2)从快递向物流上下游串联;(3)从国内向国际网络不断外扩;(4)先进的数据分析技术向其他行业外溢。 相似文献
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Chen Chen 《Maritime Policy and Management》2018,45(7):944-961
Ports and cities are intrinsically linked. Port city, which serves as a link between the local and global economy, is an integration of both urban and port systems. Constrained by different regional structures, port cities have developed various formulations over time. Using a two-stage data envelopment analysis (DEA) approach, this paper proposes a new method for measuring the sustainable development of different port city systems. While the previous empirical studies often separate the port system and the urban system, this paper assesses the two systems in an integrated way. Moreover, this paper develops a systematic methodology for measurement of sustainability. Twenty world-leading container port cities are selected for this study using contemporary data. The DEA results display their relative differences in levels of sustainable development, which reveal the effectiveness of the prevailing policies in them. Eventually, recommendations are drawn for other port cities by referring to the best practices. 相似文献
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《运输规划与技术》2012,35(8):868-880
ABSTRACTAnalysis of elevator traffic in high rise buildings is critical to the performance evaluation of elevator group control systems (EGCS). Elevator dispatching methods or parking algorithms in an EGCS can be designed or modified according to analyses of traffic flow. However, interpretation of traffic flow based solely on numerical data may not be explicit and transparent for EGCS experts as well as for other non-expert building administration. In this study, we present a model for visualization and analysis of elevator traffic. First, we present an alternative approach for traffic analysis which we call route visualization. In the proposed approach, we initially decompose elevator traffic into its component parts and investigate each component independently. Then, using superposition of components we obtain a reconstructed model of overall traffic. This modeling approach provides component-based traffic analysis and representation of routes with intensities through data visualization. In the second part we introduce a multi-dimensional analysis of time parameters in ECGS. This approach provides a comparative analysis of several control algorithms such as dispatch or park algorithms for different combinations of traffic components. 相似文献
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Ehab I. Diab Ahmed M. El-Geneidy 《Transportation Research Part A: Policy and Practice》2012,46(3):614-625
Transit agencies implement many strategies in order to provide an attractive transportation service. This article aims to evaluate the impacts of implementing a combination of strategies, designed to improve the bus transit service, on running time and passenger satisfaction. These strategies include using smart card fare collection, introducing limited-stop bus service, implementing reserved bus lanes, using articulated buses, and implementing transit signal priority (TSP). This study uses stop-level data collected from the Société de transport de Montréal (STM)’s automatic vehicle location (AVL) and automatic passenger count (APC) systems, in Montréal, Canada. The combination of these strategies has lead to a 10.5% decline in running time along the limited stop service compared to the regular service. The regular route running time has increased by 1% on average compared to the initial time period. The study also shows that riders are generally satisfied with the service improvements. They tend to overestimate the savings associated with the implementation of this combination of strategies by 3.5-6.0 min and by 2.5-4.1 min for both the regular route and the limited stop service, respectively. This study helps transit planners and policy makers to better understand the effects of implementing a combination of strategies to improve running time and passenger’s perception of these changes in service. 相似文献