Research on rapid modeling method and simulation platform of the gas-steam combined cycle system

T. Xu, Yang Hou, X. Tian, S. Chai, Chong-ming Song, Jia-song Luo, Yujie Quo, Xin-lei Wang
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Abstract

Aiming at the gas-steam combined cycle system models with complex algorithm structures, the single algorithm simulation software cannot build a friendly man-machine interface. Existing hybrid programming methods that combine MATLAB tools and the foreground interface are restricted by the algebraic loop structure in models and are not able to be applied. A distributed modeling and simulation platform with self-defined interfaces is proposed, which utilizes database as a medium to realize data storage and interaction between the server and clients. And implementation in the gas-steam combined cycle system showed that the proposed platform gave full play to advantages of rapid prototyping's fast iteration, complex control computing capability and the environment-friendly clients' interface. The proposed platform holds effective real-time simulation, strong confidentiality, flexibility, and versatility, which satisfies mass data's simulation and storage need for multiple clients.
燃气-蒸汽联合循环系统快速建模方法及仿真平台研究
针对算法结构复杂的燃气-蒸汽联合循环系统模型,单一算法仿真软件无法建立友好的人机界面。现有的将MATLAB工具与前景界面相结合的混合规划方法受模型代数环结构的限制,无法应用。提出了一种具有自定义接口的分布式建模与仿真平台,该平台以数据库为媒介,实现数据存储和客户端与服务器之间的交互。在燃气-蒸汽联合循环系统中的应用表明,该平台充分发挥了快速成型迭代快、复杂控制计算能力强、客户端界面友好等优点。该平台具有实时性强、保密性强、灵活性强、通用性强等特点,能够满足多客户端海量数据的仿真和存储需求。
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