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An IoT Based Approach for Energy Flexible Control of Production Systems

机译:基于物联网的生产系统能量柔性控制方法

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Due to the increasing amount of renewable energy on the energy market resulting in a higher volatility of energy supply, manufacturing companies have an enhanced awareness of their energy demand in order to benefit from alternating prices. Energy flexibility is an opportunity to adapt manufacturing systems to the changing circumstances. The idea of energy flexibility follows the approach of synchronizing energy demand with supply, e.g. to exploit alternating weather conditions. This paper presents an energy-aware demand side management (DSM) approach to control manufacturing systems on the component level. The developed closed loop control is based on an algorithm fed with manufacturing, energy and environmental data and is realized at an Internet of Things (IoT) platform. Based on machine tool models the energy demand of a hypothetical factory is simulated. Taking on-site power generation data into account, the aim of the developed energy-aware control loop is to reduce the appearing residual power that must be balanced with grid-supplied power.
机译:由于能源市场上可再生能源的数量增加,导致能源供应的波动性增加,制造公司对能源需求的意识增强,以便从交替的价格中受益。能源灵活性是使制造系统适应不断变化的环境的机会。能源灵活性的思想遵循使能源需求与供应同步的方法,例如:利用交替的天气条件。本文提出了一种能源感知需求侧管理(DSM)方法,以在组件级别上控制制造系统。所开发的闭环控制基于馈入制造,能源和环境数据的算法,并在物联网(IoT)平台上实现。基于机床模型,模拟了假设工厂的能源需求。考虑到现场发电数据,开发的节能控制回路的目的是减少出现的剩余功率,该剩余功率必须与电网提供的功率进行平衡。

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