{"title":"METHODOLOGY FOR PLANNING THE LOCATION OF SWITCHING NODES OF IP-TELEPHONY NETWORKS","authors":"Sevinj Jebrayilova Sevinj Jebrayilova","doi":"10.36962/piretc28072023-32","DOIUrl":null,"url":null,"abstract":"The relevance of the topic is due to the high pace of development and implementation of new systems and processes in information structures and the lack of a methodology for determining the effectiveness of using new infocommunication technologies in them. Currently, there are no unified scientifically based methods for assessing the feasibility and effectiveness of using IP telephony technology. This is due to insufficient experience in the operation of telecommunication systems based on IP telephony technology and their significant difference from traditional telephone systems. It is indicated that for optimal planning of the location of switching nodes of IP-telephony networks, a methodology has been developed, consisting of the development of a mathematical basis for constructing the projected IP-telephony network, algorithmic implementation and estimation of the complexity of the implementation of this algorithm, which can be used in the design of real IP-telephony networks. The algorithmic implementation of the developed technique uses three arrays from among the nodes of the network, i.e. the first array contains labels with two values, the second array contains the distances - the current shortest distances from the specified vertex to the corresponding vertex, and the third array contains the vertex numbers. In turn, the algorithmic implementation depends on how the source vertex is found, how the set of unmarked vertices is stored, and how labels are updated. Keywords: Telecommunications network, IP-telephony technology, packet switching of flows, planning of the location of switching nodes, algorithmic implementation of the planning methodology, subscriber network, parameters of information systems, network parameters.","PeriodicalId":107886,"journal":{"name":"PIRETC-Proceeding of The International Research Education & Training Centre","volume":"7 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2023-10-02","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"PIRETC-Proceeding of The International Research Education & Training Centre","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.36962/piretc28072023-32","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
The relevance of the topic is due to the high pace of development and implementation of new systems and processes in information structures and the lack of a methodology for determining the effectiveness of using new infocommunication technologies in them. Currently, there are no unified scientifically based methods for assessing the feasibility and effectiveness of using IP telephony technology. This is due to insufficient experience in the operation of telecommunication systems based on IP telephony technology and their significant difference from traditional telephone systems. It is indicated that for optimal planning of the location of switching nodes of IP-telephony networks, a methodology has been developed, consisting of the development of a mathematical basis for constructing the projected IP-telephony network, algorithmic implementation and estimation of the complexity of the implementation of this algorithm, which can be used in the design of real IP-telephony networks. The algorithmic implementation of the developed technique uses three arrays from among the nodes of the network, i.e. the first array contains labels with two values, the second array contains the distances - the current shortest distances from the specified vertex to the corresponding vertex, and the third array contains the vertex numbers. In turn, the algorithmic implementation depends on how the source vertex is found, how the set of unmarked vertices is stored, and how labels are updated. Keywords: Telecommunications network, IP-telephony technology, packet switching of flows, planning of the location of switching nodes, algorithmic implementation of the planning methodology, subscriber network, parameters of information systems, network parameters.
本专题之所以具有现实意义,是因为信息结构中新系统和新流程的开发和实施速度很快,但却缺乏一种方法来确定在这些系统和流程中使用新信息通信技术的有效性。目前,还没有统一的科学方法来评估使用 IP 电话技术的可行性和有效性。这是因为基于 IP 电话技术的电信系统运行经验不足,而且与传统电话系统有很大区别。报告指出,为了优化 IP 电话网络交换节点的位置规划,已经开发出一种方法,包括开发构建预计 IP 电话网络的数学基础、算法实施和对该算法实施复杂性的估计,该方法可用于实际 IP 电话网络的设计。所开发技术的算法实现使用网络节点中的三个数组,即第一个数组包含两个值的标签,第二个数组包含距离--从指定顶点到相应顶点的当前最短距离,第三个数组包含顶点编号。反过来,算法的实现取决于如何找到源顶点、如何存储未标记顶点集以及如何更新标签。 关键词电信网络、IP 电话技术、数据流分组交换、交换节点位置规划、规划方法的算法实现、用户网络、信息系统参数、网络参数。