Software and information simulation complex of multi-node integrated and autonomous power and heat supply systems

Viktor Denysov, V. Babak
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Abstract

A software and information complex for modeling multi-node integrated and autonomous power and heat supply systems is proposed. The main difference of the proposed software and information complex is the possibility of a detailed consideration of the influence of economic and technological parameters contained in the power system of individual power units and nodes. These parameters can be presented both in the form of matrices on the sheets of the software and information complex, and in the form of separate attached files available for automated input by the software and information complex. The main advantages of the complex, which distinguish it from the known ones, include versatility, which makes it possible to study various models of energy systems in a short time. This versatility is ensured by the fact that the complex is developed using a combination of standard Microsoft Excel software and SolverStudio – an add-in for Excel 2007 and later versions on Windows, which allows you to explore a variety of optimization models using a large list of optimization modeling languages. With the SolverStudio add-in in the information package, the user can develop, edit, save, and debug an optimization model in an Excel workbook. The connection of source data, sets, parameters, constants and variables used in the model is conveniently organized. After editing the parameters and source data, the model is launched. Simulation results can be displayed both on model sheets and displayed as separate files. Another advantage of the software and information complex is the ability to conveniently compare many models, due to the fact that each of the worksheets can have its own model. The developed software and information complex makes it possible to calculate in detail the energy, technological and economic indicators of the optimal use of power system components, to determine the permissible limits of the operating parameters of power units of autonomous and integrated power systems. The results of these calculations make it possible to select appropriate measures for the future renewal of technologies for the production of electric and thermal energy. The ease of use and editing of both individual parameters and program texts used in modeling the development of power systems improves the quality of the resulting development scenarios. The proposed software and information complex can be used to study the prospects for short-term and long-term development of Ukraine, as well as the energy system integrated with the power systems of neighboring ENTSO-E member countries, which is relevant in these conditions. Keywords: software, information, complex, multi-node, integrated, autonomous, power, systems.
多节点集成自主供电供热系统的软件与信息仿真综合体
提出了一种用于多节点集成自主供电供热系统建模的软件和信息综合体。所提出的软件和信息综合体的主要区别在于可以详细考虑单个发电机组和节点的电力系统中包含的经济和技术参数的影响。这些参数既可以在软件和信息复合体的表格上以矩阵的形式表示,也可以以单独的附加文件的形式表示,供软件和信息复合体自动输入。该复合物与已知复合物的主要优势在于其通用性,这使得在短时间内研究各种能源系统模型成为可能。这种多功能性是通过使用标准的Microsoft Excel软件和SolverStudio(用于Excel 2007和Windows上的更高版本的插件)的组合开发的事实来确保的,SolverStudio允许您使用大量的优化建模语言来探索各种优化模型。使用信息包中的SolverStudio外接程序,用户可以在Excel工作簿中开发、编辑、保存和调试优化模型。模型中使用的源数据、集、参数、常量和变量的连接方便地组织起来。编辑完参数和源数据后,启动模型。仿真结果既可以显示在模型表上,也可以显示为单独的文件。软件和信息复合体的另一个优点是能够方便地比较许多模型,因为每个工作表都可以有自己的模型。已开发的软件和信息复合体,可以详细计算电力系统部件最佳使用的能源、技术和经济指标,确定自主和综合电力系统的动力单元运行参数的允许极限。这些计算的结果使我们能够为将来更新生产电能和热能的技术选择适当的措施。在电力系统建模开发中使用的单个参数和程序文本的易用性和编辑性提高了最终开发场景的质量。拟议的软件和信息综合体可用于研究乌克兰短期和长期发展的前景,以及与邻近ENTSO-E成员国电力系统集成的能源系统,这在这些条件下是相关的。关键词:软件、信息、复杂、多节点、集成、自治、动力、系统
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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