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Petri Nets Modeling for Two-Cell Chopper Control Using DSPACE 1104

机译:使用DSPACE 1104使用DSPACE 1104的Petri网模型

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A two-cell power chopper system will be studied in this paper. The topology of this chopper is based on a combination of two cell switching interconnected via a flying capacitor. The system is a particular hybrid dynamical one which induces new and difficult control problems. In this paper, such problem is tackled by a new control concept based on Petri Nets modeling. The main advantage of this control is to use a discrete event algorithm for both current tracking and capacitor voltage balancing with the ability to drive directly the chopper switching components, by respecting the tolerance errors of load current and capacitor voltage. Simulation and experiment tests are carried out to verify the feasibility and effectiveness of the proposed control. The obtained results show that; the proposed controller presents good performances, in terms of both current tracking and voltage balancing compared to conventional existing controls according to the variation of the tolerance errors.
机译:本文将研究双电池功率斩波器系统。该斩波器的拓扑基于通过飞行电容器互连的两个单元切换的组合。该系统是特定的混合动态动态,诱导新的和困难的控制问题。在本文中,基于Petri网建模的新控制概念解决了此问题。该控制的主要优点是通过尊重负载电流和电容器电压的公差误差来使用用于电流跟踪和电容器电压平衡的离散事件算法,其次通过直接驱动斩波器开关组件。进行仿真和实验测试,以验证所提出的控制的可行性和有效性。获得的结果表明;根据公差误差的变化,所提出的控制器在电流跟踪和电压平衡方面提出了良好的性能。

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