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Hardware-Simulator Development and Implementation for Hydraulic Turbine Generation Systems in a District Heating System

机译:地区供热系统中液压涡轮发电系统的硬件模拟器开发与实现

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This paper presents not only a hardware-simulator development for hydraulic turbine generation systems (HTGS) in a district heating system (DHS) but also its control strategies and sequence. Generally, a DHS uses a differential pressure control valve (DPCV) to supply high-pressure-high-temperature fluids for customers depending on distance. However, long-term exposure of the DPCV to fluids increases the probability of cavitation and leads to heat loss in an event of cavitation. Therefore, a HTGS was introduced to solve this problem. It performs differential pressure control of the fluids, replaces the DPCV, and converts excess energy wasted by the DPCV to electrical energy. In this paper, the development of a hardware-simulator for HTGSs with a back-to-back converter, which uses two-level topologies, is proposed; moreover, control strategies and sequence used in this design are presented. The performance and validity of the proposed hardware-simulator and its control strategies are demonstrated by experimental results.
机译:本文不仅提供了区内加热系统(DHS)的液压涡轮发电系统(HTG)的硬件模拟器开发,还提供了其控制策略和序列。通常,DHS使用压差控制阀(DPCV)来根据距离为客户提供高压高温流体。然而,DPCV对流体的长期暴露增加了空化的概率并导致空化的热量损失。因此,引入了HTGS来解决这个问题。它执行流体的差压控制,取代DPCV,并将通过DPCV浪费的多余能量转换为电能。在本文中,提出了使用双层转换器的HTGSS的硬件模拟器的开发;此外,提出了这种设计中使用的控制策略和序列。实验结果证明了所提出的硬件模拟器及其控制策略的性能和有效性。

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