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Modeling and Simulation of Cyber-Physical Electrical Energy Systems With SystemC-AMS

机译:系统 - AMS网络 - 物理电能系统的建模与仿真

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Modern cyber-physical electrical energy systems (CPEES) are characterized by wider adoption of sustainable energy sources and by an increased attention to optimization, with the goal of reducing pollution and wastes. This imposes a need for instruments supporting the design flow, to simulate and validate the behavior of system components and to apply additional optimization and exploration steps. Additionally, each system might be tested with a number of management policies, to evaluate their economic impact. It is thus evident that simulation is a key ingredient in the design flow of CPEES. This paper proposes a framework for CPEES modeling and simulation, that relies on the open-source standard SystemC-AMS. The paper formalizes the information and energy flow in a generic CPEES, by focusing on both AC and DC components, and by including support for mechanical and physical models that represent multiple energy sources and loads. Experimental results, applied to a complex CPEES case study, will prove the effectiveness of the proposed solution, in terms of accuracy, speed up w.r.t. the current state-of-the-art Matlab/Simulink, and support for the design flow.
机译:现代网络 - 物理电气能源系统(CPEE)的特点是通过可持续的能源采用宽,并通过增加优化,实现减少污染和废物。这对支持设计流的仪器施加了需要模拟和验证系统组件的行为,并应用额外的优化和探索步骤。此外,每个系统可能会通过多种管理政策进行测试,以评估其经济影响。因此,显而易见的是,模拟是CPEES设计流程中的关键成分。本文提出了一种框架,依赖于开源标准Systemc-AMS。本文通过专注于AC和DC组件,将通用CPEE中的信息和能量流正式,并包括支持代表多个能源和负载的机械和物理模型。实验结果适用于复杂的CPEES案例研究,将证明所提出的解决方案的有效性,即准确性,加速W.r.t.目前最先进的MATLAB / SIMULINK,以及支持设计流程。

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