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Increasing Energy Flexibility of Manufacturing Systems through Flexible Compressed Air Generation

机译:通过灵活的压缩空气产生提高制造系统的能源灵活性

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A continuing increase in energy supply from variable renewable energy (VRE) sources requires new strategies to match energy supply and demand. Demand response (DR) strategies focus on flexibilizing energy demand. In this context, manufacturing systems can be designed and controlled to achieve a better fit between energy demand and volatile supply. To maximize energy flexibility, not only manufacturing processes but also auxiliary systems such as compressed air (CA) supply offer opportunities for DR actions. Nonetheless, dynamic behavior and dependencies between manufacturing processes, auxiliary services and resulting overall energy demand requires an integrated approach. This paper presents a method to control production systems and CA supply to increase energy flexibility while maintaining manufacturing system throughput and considering dynamic system dependencies. A production system with several processes, buffers and CA supply system is modeled and simulated in a mixed continuous-time and discrete-event environment. Energy control strategies are implemented and their effectiveness is evaluated. A case study is used to demonstrate that VRE integration can be improved through process and CA supply control without compromising throughput. A focus is set on CA supply and its influence on energy flexibility: the effect of increased CA system volume and additional compressor capacity is investigated.
机译:可变可再生能源(VRE)来源的能源供应持续增加,需要采取新的策略来匹配能源供需。需求响应(DR)策略专注于灵活化能源需求。在这种情况下,可以设计和控制制造系统,以更好地适应能源需求和波动性供应。为了最大程度地提高能源灵活性,不仅制造过程而且辅助系统(例如压缩空气(CA))的供应都为DR行动提供了机会。但是,动态行为以及制造过程,辅助服务以及由此产生的总体能源需求之间的依赖性要求采用集成方法。本文提出了一种控制生产系统和CA供应的方法,以提高能源灵活性,同时保持制造系统的吞吐量并考虑动态系统依赖性。在混合的连续时间和离散事件环境中,对具有多个流程,缓冲区和CA供应系统的生产系统进行建模和仿真。实施能源控制策略并评估其有效性。通过案例研究证明,可以通过过程和CA供应控制来改善VRE集成,而不会影响吞吐量。重点放在CA供应及其对能源灵活性的影响上:研究了CA系统体积增加和压缩机容量增加的影响。

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