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An integrated Building-to-Grid model for evaluation of energy arbitrage value of Thermal Storage

机译:用于评估蓄热器能源套利价值的集成的“建筑到电网”模型

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Thermal Electric Storage (TES) has emerged as a promising technology for enhancing the flexibility of the built environment to participate in active Demand Side Management (DSM). These devices allow the decoupling of intra-day scheduling of electric power demand from the time of thermal energy end-use. Therefore, if enabled with communication with the grid, these devices can facilitate load shifting and energy arbitrage. This study evaluates the energy arbitrage value of smart TES devices in residential buildings across Ireland. A Building-to-Grid (B2G) model has been developed which integrates the buildings thermal dynamics and end-use constraints with the power systems economic dispatch model. The thermal behavior of the houses and the TES space heater and hot water tank is modeled through linear state space models for three different mid-flat archetypes. The optimization results show the load shifting and arbitrage potential of TES and its impacts on wind curtailment considering various penetration levels of these devices.
机译:蓄热(TES)已成为一种有前途的技术,可增强建筑环境的灵活性以参与主动的需求侧管理(DSM)。这些设备允许从热能最终使用之日起将电力需求的日内调度解耦。因此,如果启用与电网的通信,这些设备可以促进负载转移和能源套利。这项研究评估了智能TES设备在爱尔兰住宅建筑中的能源套利价值。已经开发了一个建筑物到电网(B2G)模型,该模型将建筑物的热力学和最终用途约束与电力系统的经济调度模型集成在一起。通过线性状态空间模型对三种不同的中扁平原型,对房屋,TES空间加热器和热水箱的热行为进行建模。优化结果表明,考虑到这些设备的不同穿透水平,TES的负载转移和套利潜力及其对限电的影响。

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