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Variable speed heat pump design for frequency regulation through direct load control

机译:通过直接负载控制实现频率调节的变速热泵设计

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Frequency regulation becomes a non-trivial issue due to an increase in renewable resources and power electronics-based loads. Direct load control (DLC), a strategy of autonomous demand response, has been applied to mitigate operational burdens on generation units for frequency regulation. Variable speed heat pumps (VSHPs) have been regarded as promising devices that can respond to the DLC signal updated every 2 or 4 seconds. This paper presents a dynamic model of the VSHP that is simplified for real-time simulation studies but still sufficiently comprehensive to analyze its physical and operational characteristics. Furthermore, a variable speed drive (VSD)-controlled induction motor model is designed together with an indirect torque controller for the adjustment of the VSHP input power. In addition, based on experimental setup and data, a test room was modeled to estimate the effect of the DLC-enabled VSHP on indoor temperature. Simulation case studies performed in Matlab/Simulink verify that the VSHP can be well utilized as DLC-enabled loads for frequency regulation while ensuring residents' comfort and long-term device performance.
机译:由于可再生资源和基于电力电子设备的负载的增加,频率调节成为一个重要问题。直接负荷控制(DLC)是一种自主需求响应策略,已被用于减轻用于频率调节的发电机组的运行负担。变速热泵(VSHP)被认为是有前途的设备,可以响应每2或4秒更新的DLC信号。本文介绍了VSHP的动态模型,该模型已简化为实时仿真研究,但仍然足够全面,可以分析其物理和操作特性。此外,还设计了变速驱动器(VSD)控制的感应电动机模型以及间接扭矩控制器,用于调节VSHP输入功率。此外,根据实验设置和数据,对测试室进行了建模,以估算启用DLC的VSHP对室内温度的影响。在Matlab / Simulink中进行的仿真案例研究证明,VSHP可以很好地用作DLC支持的负载进行频率调节,同时确保居民的舒适度和长期设备性能。

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