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面向智慧油田的移動智能終端IPsec協(xié)議的設計與實現

發(fā)布時間:2019-04-27 03:17
【摘要】:智慧油田是在數字油田的基礎上,結合現代物聯網和云計算技術,通過實時監(jiān)測、實時數據自動采集、實時分析解釋、實施決策與優(yōu)化的閉環(huán)管理,實現油田自動化生產和科學分析與決策,提高決策速度和準確度,從而達到油氣生產高效管理的目的。智慧油田系統(tǒng)是一套移動智能化解決方案,根據部署的大量移動智能終端和傳感器,形成一個巨大的物聯網,借助于云計算中心強大的運算能力,對采集數據實時分析后及時調整生產狀態(tài),對生產規(guī)劃做出決策支持。大量的數據實時傳輸和處理要求,和油田生產所處特殊行業(yè)的敏感性,決定了智慧油田對穩(wěn)健網絡連接的高度依賴。課題組根據當前因特網的發(fā)展現狀和智慧油田業(yè)務的實際需要,結合一些開源軟件的開發(fā)經驗,開發(fā)了一個功能完善、響應迅速和能保障網絡層連接安全性的IPv6協(xié)議棧。 本論文的實際工作是完成IPv6協(xié)議棧中的IPsec部分,替移動終端和網絡層的數據傳輸提供網絡層安全性保障。根據實際的業(yè)務需要和運行環(huán)境限制,將IPsec和協(xié)議棧中其他IP數據包處理模塊結合在一起,有利于加快數據包的處理速度和降低系統(tǒng)設計難度。論文的主要貢獻和工作計劃在下面幾點。 首先,分析了IPv6協(xié)議和IPsec協(xié)議體系。研究了IPv6網絡層協(xié)議中基本報頭和擴展報頭的結構,因為IPsec安全協(xié)議報文部分以擴展頭的形式插入在IP數據包中;同時分析了IPsec整個協(xié)議體系,重點研究了AH和ESP兩種安全協(xié)議,隧道模式和傳輸模式兩種運行模式,以及密鑰交換協(xié)議IKE和安全聯盟。 其次,論文提出了IPsec系統(tǒng)的模塊化設計方案,通過將IPsec系統(tǒng)各部分功能分類成相互之間關聯度低的功能模塊,從而降低系統(tǒng)各部分之間的耦合度,減少了系統(tǒng)開發(fā)的工作量,有利于將來的功能擴展和現有功能維護。 最后,根據前面的分析和設計,實現了IPsec系統(tǒng),并且對系統(tǒng)從功能和性能兩個方面進行了測試,測試結果表明系統(tǒng)實現達到了設計預期,可以投入實際使用。
[Abstract]:Intelligent oil field is a closed-loop management which combines modern Internet of things and cloud computing technology on the basis of digital oil field, through real-time monitoring, real-time data automatic acquisition, real-time analysis and interpretation, and decision-making and optimization. The automatic production, scientific analysis and decision-making of oil field are realized, the speed and accuracy of decision-making are improved, and the purpose of efficient management of oil-gas production is achieved. Intelligent oilfield system is a set of mobile intelligent solutions, according to the deployment of a large number of mobile intelligent terminals and sensors, form a huge Internet of things, with the help of the powerful computing power of cloud computing center, Adjust production status in time after real-time analysis of collected data, and make decision support to production planning. A large number of real-time data transmission and processing requirements and the sensitivity of the special industry in which oil fields are produced determine the high dependence of intelligent oil fields on robust network connectivity. According to the current development of the Internet and the actual needs of the intelligent oilfield business, combined with some open source software development experience, the team developed a IPv6 protocol stack, which has perfect function, rapid response and can guarantee the security of the network layer connection. The actual work of this paper is to complete the IPsec part of the IPv6 protocol stack, and provide the network layer security for the data transmission of mobile terminal and network layer. The combination of IPsec and other IP packet processing modules in the protocol stack is conducive to accelerating the processing speed of packets and reducing the difficulty of system design according to the actual business needs and operating environment constraints. The main contributions and work plans of the paper are as follows. Firstly, the IPv6 protocol and IPsec protocol system are analyzed. The structure of basic header and extended header in IPv6 network layer protocol is studied because the part of IPsec security protocol packet is inserted in IP packet in the form of extended header. At the same time, the whole protocol architecture of IPsec is analyzed, and two security protocols, AH and ESP, tunnel mode and transmission mode, key exchange protocol IKE and security alliance are studied in detail. Secondly, the paper puts forward the modular design scheme of IPsec system. By classifying the functions of each part of IPsec system into functional modules with low correlation degree between each other, the coupling degree of each part of the system is reduced and the workload of system development is reduced. It is conducive to future functional expansion and maintenance of existing functions. Finally, according to the previous analysis and design, the IPsec system is implemented, and the system is tested from two aspects: function and performance. The test results show that the system achieves the design expectation and can be put into practical use.
【學位授予單位】:北京郵電大學
【學位級別】:碩士
【學位授予年份】:2014
【分類號】:TP393.08;TP393.04

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