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Intertwined: Software-defined communication networks for multi-agent system-based Smart Grid control

机译:交织在一起:基于软件的通信网络,用于基于多代理系统的智能电网控制

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Facing current and future developments of the energy system, including the integration of large numbers of renewable energy sources and electric vehicles, live monitoring and control becomes essential for stable operation of the power grid. This transition to a Smart Grid requires coupling the power system with a reliable and real-time capable communication infrastructure. In response to this demand, we propose a combined approach for the control of power and communication systems, exploiting the opportunities of Software-Defined Networking (SDN). Due to its real-time capability, a Multi Agent System (MAS) is applied for controlling power flows, handling overloads and guaranteeing voltage stability in a decentralized manner. The MAS is supported by an Information and Communication Technologies (ICT) infrastructure, which follows the paradigms of SDN by applying a programmable controller platform with global network view to orchestrate traffic flows. To meet specific requirements of the MAS, we implement an SDN Northbound Interface, enabling control agents to communicate with the SDN controller directly. Thus, agents can advertise their demands to the controller, which translates them into corresponding forwarding rules and establishes them in the network. By applying fine grained prioritisation and integrating MAS and SDN controller, we showcase reliable and timely transmission of critical command messages, thereby ensuring power grid stability.
机译:面对能源系统当前和未来的发展,包括大量可再生能源和电动汽车的集成,实时监视和控制对于电网的稳定运行至关重要。向智能电网的过渡要求将电力系统与可靠且实时的通信基础设施耦合。为响应这一需求,我们提出了一种结合电源定义和通信系统控制的方法,以利用软件定义网络(SDN)的机会。由于具有实时功能,因此将多代理系统(MAS)用于分散控制功率流,处理过载并保证电压稳定性。 MAS由信息和通信技术(ICT)基础结构支持,该基础结构通过应用具有全局网络视图的可编程控制器平台来协调流量来遵循SDN的范例。为了满足MAS的特定要求,我们实现了SDN北向接口,使控制代理可以直接与SDN控制器进行通信。因此,代理可以将其需求通告给控制器,控制器将其转换为相应的转发规则并在网络中建立它们。通过应用细粒度的优先级并集成MAS和SDN控制器,我们展示了关键命令消息的可靠,及时的传输,从而确保了电网的稳定性。

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