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Facilitating static firm frequency response with aggregated networks of commercial food refrigeration systems

机译:利用商用食品制冷系统聚合网络促进静态频率响应

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Aggregated electrical loads from massive numbers of distributed retail refrigeration systems could have a significant role in frequency balancing services. To date, no study has realised effective engineering applications of static firm frequency response to these aggregated networks. Here, the authors present a novel and validated approach that enables large scale control of distributed retail refrigeration assets. The authors show a validated model that simulates the operation of retail refrigerators comprising centralised compressor packs feeding multiple in-store display cases. The model was used to determine an optimal control strategy that both minimised the engineering risk to the pack during shut down and potential impacts to food safety. The authors show that following a load shedding frequency response trigger the pack should be allowed to maintain operation but with increased suction pressure set-point. This reduces compressor load whilst enabling a continuous flow of refrigerant to food cases. In addition, the authors simulated an aggregated response of up to three hundred compressor packs (over 2 MW capacity), with refrigeration cases on hysteresis and modulation control. Hysteresis control, compared to modulation, led to undesired load oscillations when the system recovers after a frequency balancing event. Transient responses of the system during the event showed significant fluctuations of active power when compressor network responds to both primary and secondary parts of a frequency balancing event. Enabling frequency response within this system is demonstrated by linking the aggregated refrigeration loads with a simplified power grid model that simulates a power loss incident.
机译:来自大量分布式零售制冷系统的聚集电负载可能在频率平衡服务中具有重要作用。迄今为止,没有研究已经实现了对这些聚合网络的静态频率响应的有效工程应用。在这里,作者提出了一种新颖且经过验证的方法,可以实现分布式零售制冷资产的大规模控制。作者展示了一种验证的模型,用于模拟零售冰箱的操作,包括馈送多个店内显示壳体的集中式压缩机包。该模型用于确定最佳控制策略,以便在关闭和对食品安全的潜在影响时最小化对包装的工程风险。作者表明,在负载脱落频率响应触发后,应允许包装保持操作,但随着吸入压力设定点增加。这减少了压缩机负荷,同时使制冷剂连续流入食品盒。此外,作者还模拟了多达三百个压缩机包(超过2 MW容量)的聚集响应,具有制冷函数滞后和调制控制。滞后控制与调制相比,当系统在频率平衡事件之后恢复时,导致了不需要的负载振荡。当压缩机网络响应频率平衡事件的主要和次要部分时,系统期间系统的瞬态响应显示出显着的有效功率波动。通过将聚合的制冷负载与模拟功率丢失事件的简化电网模型连接,通过将聚合的制冷负载连接,通过模拟电源网格模型来说明该系统内的启用频率响应。

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