地震地质 ›› 2020, Vol. 42 ›› Issue (3): 748-761.DOI: 10.3969/j.issn.0253-4967.2020.03.014

• • 上一篇    下一篇

基于模板匹配的地震应急制图方法

徐敬海1), 周海军1), 聂高众2), 安基文2)   

  1. 1)南京工业大学测绘科学与技术学院, 南京 211816;
    2)中国地震局地质研究所, 北京 100029
  • 收稿日期:2019-09-18 修回日期:2019-12-24 出版日期:2020-06-20 发布日期:2020-09-10
  • 作者简介:徐敬海, 男, 1977年生, 2006年于武汉大学获得摄影测量与遥感专业博士学位, 教授, 主要从事地震应急、 空间技术减灾集成与工程应用研究, 电话: 025-58139462, E-mail: xu_jing_hai@163.com。
  • 基金资助:
    国家重点研发计划项目(2018YFC0704300, 2018YFC1504503)、 江苏省建设系统科技项目(2018JH011)和江苏省研究生科研与实践创新计划项目(KYCX20_1089)共同资助

RESEARCH ON EARTHQUAKE EMERGENCY MAPPING METHOD BASED ON TEMPLATE MATCH

XU Jing-hai1), ZHOU Hai-jun1), NIE Gao-zhong2), AN Ji-wen2)   

  1. 1)College of Geomatics Engineering, Nanjing University of Technology, Nanjing 211816, China;
    2)Institute of Geology, China Earthquake Administration, Beijing 100029, China
  • Received:2019-09-18 Revised:2019-12-24 Online:2020-06-20 Published:2020-09-10

摘要: 震后各类应急图件可为有效开展应急指挥与救援提供参考和依据, 地震应急制图具有快速性、 动态性、 表现方法多样等特点。 文中引入受众理论, 系统研究了地震应急制图的对象及制图内容, 将地震应急制图对象划分为地震应急指挥决策人员、 辅助决策技术人员、 应急救援人员和普通公众, 论述了不同受众对地震应急图件的需求及这些图件的表达方法, 并在此基础上研究了基于地震应急制图模板匹配的快速制图方法。 该方法在震前根据不同受众需求, 设计不同的地震应急制图模板及对应的数据库结构, 震后在GIS与专业模型的支持下, 根据灾情信息动态更新制图模板, 实现快速地震应急制图。 文中设计了地震应急制图模板库体系, 包括制图对象层、 地图模板层、 模板图层和具体地图元素层等及相应的地震应急制图通用模板。 最后, 应用ArcEngine开发了地震应急制图系统, 通过案例展示了系统的制图应用, 可为震后快速、 系统地生成各类地震应急图件提供支撑。

关键词: 地震应急, 应急制图, 模板匹配, 应急响应, 制图系统

Abstract: After an earthquake, earthquake emergency response and rescue are important ways to mitigate earthquake-induced losses. Various earthquake emergency maps can provide effective references and guidance to those actions. Currently, related studies include the investigation on symbols of emergency maps, remote sensing emergency mapping and GIS-based mapping methods. However, the existing studies overlook the characteristics of rapidity, dynamicity and variety of presentation methods in making earthquake emergency maps. In this paper, a map template matching method is used to quickly make earthquake emergency maps considering their characteristics. We take investigations on the service objects(users)of the earthquake emergency maps to understand the needs of making earthquake emergency maps. The audience theory in mass media field and map information transmission theory are adopted to classify the users of the earthquake emergency maps into four categories: earthquake emergency commanders, technical staffs for decision-making, earthquake emergency rescuers, and the public. The components of different types of users are described and then their diverse demands in earthquake emergency maps are analyzed, such as the needs of on-field disaster information maps, earthquake information maps, physical geography and social economic maps. Following those needs, we introduce the representation methods of the earthquake emergency maps according to their formats(vector or raster)and contents, such as point symbolization method, kilometer grid method, line symbolization method and range method. Then, we study the rapid plotting method of earthquake emergency map based on map template matching method. The core steps of the method include: 1)before earthquake, the templates of different earthquake emergency maps are designed, prepared and connect the earthquake emergency features with their related spatial database. The map layout and map elements are stored in the templates. 2)After earthquake, the earthquake emergency features will be generated from seismic models(such as attenuation model of earthquake magnitude and seismic intensity)or the information obtained from field investigation. 3)Corresponding earthquake emergency map template is selected in accordance with the generated seismic features. And the features are used to update related features inside the selected template. 4)Minor adjustments are made such as to the map scale and some map annotations to finally generate the formal earthquake emergency map. Architecture of template system of the earthquake emergency maps is designed, including map user level, map template level, template layer level and map element level. Regrading to the architecture, the general map template of earthquake emergency is presented which includes four main regions: title region, main picture region, auxiliary region and annotation region. The main picture region is the essential, which lays geographic background maps and earthquake emergency features. Finally, an earthquake emergency mapping system is developed. Based on the system, a case study is presented, which demonstrates making a simulated seismic intensity influence map. From three aspects, the case presents the application of the template-matching method including: generating earthquake emergency features, substituting the features inside the template with the generated features, and revising map annotations. Therefore, the map template matching method is verified so that it can be used to quickly generate various earthquake emergency maps.

Key words: earthquake emergency, emergency mapping, template match, emergency response, mapping system

中图分类号: