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Agent-based control of distributed electricity generation with micro combined heat and power-Cross-sectoral learning for process and infrastructure engineers

机译:基于代理的分布式发电与微热电联产控制-过程和基础架构工程师的跨行业学习

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摘要

For the distributed control of an electricity infrastructure incorporating clusters of residential combined heat and power units (micro-CHP or μCHP) a multi-agent system approach is considered. The network formed by households generating electricity with μCHP units and the facilitating energy supplier can be regarded as an electricity production system, analogous to a (flexible) manufacturing system. Next, the system boundary is extended by allowing the trade of electricity between networks of households and their supplier. A methodology for designing an agent-based system for manufacturing control is applied to both cases, resulting in a conceptual design for a control system for the energy infrastructure. Because of the analogy between production systems and infrastructures process systems engineering (PSE) approaches for optimisation and control can be applied to infrastructure system operations. At the same time we believe research on socio-technical infrastructure systems will be a valuable contribution to PSE management strategies.
机译:对于包含住宅热电联产机组(微型CHP或μCHP)的电力基础设施的分布式控制,考虑采用多主体系统方法。由具有μCHP单元的家庭和便利的能源供应商组成的网络可以被视为电力生产系统,类似于(灵活的)制造系统。接下来,通过允许家庭网络与其供应商之间的电力交易来扩展系统边界。在两种情况下均采用了用于设计基于代理的制造控制系统的方法,从而得出了用于能源基础设施的控制系统的概念设计。由于生产系统和基础结构之间存在类比,因此可以将用于优化和控制的过程系统工程(PSE)方法应用于基础结构系统操作。同时,我们认为对社会技术基础设施系统的研究将对PSE管理策略做出宝贵的贡献。

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