基于ArcGIS Engine的航道綜合監(jiān)控系統(tǒng)的研究
發(fā)布時間:2018-06-27 22:13
本文選題:ArcGIs + Engine。 參考:《大連海事大學(xué)》2015年碩士論文
【摘要】:近些年來內(nèi)河航運(yùn)迅猛發(fā)展,生產(chǎn)力水平不斷提升,但與此同時出現(xiàn)的問題是內(nèi)河航道狀況日漸復(fù)雜,船舶通航密度日趨增大。在這樣的情況下如何加強(qiáng)對航道的自然環(huán)境、通航船舶、水位狀況和相關(guān)助航設(shè)備的監(jiān)管,讓航道管理更加規(guī)范、科學(xué)、及時有效已成為內(nèi)河航道管理的一個重要研究課題。航道綜合監(jiān)控系統(tǒng)是一個以GIS為基礎(chǔ)平臺,集船舶監(jiān)控、水位監(jiān)控、航標(biāo)監(jiān)控于一身的綜合監(jiān)控系統(tǒng),能幫助管理人員有效的監(jiān)控航道狀況,在遇到相應(yīng)的問題時可以及時的去解決。組件式GIS技術(shù)是把地圖的視覺化效果、地理分析功能與一般的數(shù)據(jù)庫操作集成在一起的一項技術(shù)。ArcGIS Engine是ESRI的基于COM(組件對象模型)技術(shù)的GIS控件,是一組完備的并將ArcObjects打包的嵌入式GIS組件庫和工具庫,可用來創(chuàng)建新的或者擴(kuò)展已有的桌面應(yīng)用程序。ArcGIS Engine是組件式技術(shù)應(yīng)用于GIS領(lǐng)域的最新產(chǎn)品,它為開發(fā)人員提供了一種新的部署策略。因此,本文基于ArcGIS Engine組件和VS2008平臺,以實(shí)現(xiàn)快速、準(zhǔn)確的航道綜合監(jiān)控為目標(biāo),總結(jié)航道通航狀態(tài)下航道監(jiān)控與管理的各種需求,進(jìn)行系統(tǒng)的框架設(shè)計,功能設(shè)計和主要功能模塊的開發(fā),最終提高航道綜合監(jiān)控的能力。論文完成的主要工作如下:(1)詳細(xì)分析了ArcGIS Engine的相關(guān)技術(shù)及功能特點(diǎn),結(jié)合C#技術(shù),提出基于ArcGIS Engine構(gòu)建航道綜合監(jiān)控系統(tǒng)的整體框架。(2)給出了航道綜合監(jiān)控系統(tǒng)的功能設(shè)計,包括海圖顯示與控制基本功能、輔助功能控制、船舶監(jiān)控、航標(biāo)監(jiān)控、水位監(jiān)控等主要功能;完成了航道綜合監(jiān)控系統(tǒng)的數(shù)據(jù)庫設(shè)計。(3)基于C#語言和VS2008開發(fā)平臺,利用ArcGIS Engine組件,開發(fā)實(shí)現(xiàn)了電子海圖顯示控制、船舶監(jiān)控、航標(biāo)監(jiān)控、水位監(jiān)控等功能。
[Abstract]:In recent years, inland river navigation has developed rapidly, and the productivity level has been improved constantly. However, at the same time, the situation of inland waterway is becoming more and more complicated, and the vessel traffic density is increasing day by day. Under such circumstances, how to strengthen the supervision of natural environment, navigation vessels, water level and related navigational aids, and make waterway management more standardized, scientific, timely and effective has become an important research topic of inland waterway management. Integrated waterway monitoring system is an integrated monitoring system based on GIS, which integrates ship monitoring, water level monitoring and navigation mark monitoring. It can help managers to monitor the waterway condition effectively. In the face of the corresponding problems can be solved in time. The component GIS technology is a technology that integrates the map visualization effect with the general database operation. ArcGIS engine is a GIS control based on com (component object Model) technology of ESRI. Is a complete set of embedded GIS component libraries and tool libraries that package ArcObjects to create new or extend existing desktop applications. ArcGIS engine is the latest product of component technology applied in the field of GIS. It provides a new deployment strategy for developers. Therefore, based on ArcGIS engine component and VS2008 platform, aiming at realizing fast and accurate integrated monitoring of waterway, this paper summarizes all kinds of requirements of waterway monitoring and management under navigable condition, and designs the system frame. Function design and the development of main function module, finally improve the ability of integrated monitoring of waterway. The main work of this paper is as follows: (1) the related technology and functional characteristics of ArcGIS engine are analyzed in detail, and combined with C # technology, the whole frame of integrated waterway monitoring system based on ArcGIS engine is put forward. (2) the function design of integrated waterway monitoring system is given. Including the basic functions of chart display and control, auxiliary function control, ship monitoring, navigation mark monitoring, water level monitoring and other main functions, completed the waterway integrated monitoring system database design. (3) based on C # language and VS2008 development platform, Using ArcGIS engine module, the functions of electronic chart display control, ship monitoring, navigation mark monitoring, water level monitoring and so on are developed.
【學(xué)位授予單位】:大連海事大學(xué)
【學(xué)位級別】:碩士
【學(xué)位授予年份】:2015
【分類號】:U69-39
【引證文獻(xiàn)】
相關(guān)會議論文 前1條
1 張圣麗;鄒漢平;陳曉玲;;長江航道GIS數(shù)據(jù)規(guī)范化研究[A];中國測繪學(xué)會2010年學(xué)術(shù)年會論文集[C];2010年
,本文編號:2075452
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