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首页> 外文期刊>Journal of power electronics >Verification of an Autonomous Decentralized UPS System with Fast Transient Response Using a FPGA-Based Hardware Controller
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Verification of an Autonomous Decentralized UPS System with Fast Transient Response Using a FPGA-Based Hardware Controller

机译:使用基于FPGA的硬件控制器验证具有快速瞬态响应的自主分散式UPS系统

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This paper proposes an autonomous decentralized control for a parallel connected uninterruptible power supply (UPS) system based on a fast power detection method using a FPGA based hardware controller for a single phase system. Each UPS unit detects only its output voltage and current without communications signal exchange and a quasi dq transformation method is applied to detect the phase and amplitude of the output voltage and the output current for the single phase system. Fast power detection can be achieved based on a quasi dq transformation, which results in arnrealization of very fast transient response under rapid load change. In the proposed method, the entire control system is implemented in one FPGA chip. Complicated calculations are assigned to hardware calculation logic, and the parallel processing circuit makes it possible to realize minimized calculation time. Also, an Nios II CPU core is implemented in the same FPGA chip, and the software can be applied for non-time critical calculations. Applying this control system, an autonomous decentralized UPS system with very fast transient response is realized. Feasibility and stable operation are confirmed by means of an experimental setup with three UPSs connected in parallel. Also, rapid load change is applied and excellent performance of the system is confirmed in terms of transient response and stability.
机译:本文针对单相系统,使用基于FPGA的硬件控制器,基于快速功率检测方法,提出了一种用于并联连接不间断电源(UPS)系统的自治分散控制。每个UPS单元仅检测其输出电压和电流,而无需进行通信信号交换,并且采用准dq转换方法来检测单相系统的输出电压和输出电流的相位和幅度。可以基于准dq变换实现快速的功率检测,这可以在负载快速变化的情况下实现非常快速的瞬态响应。在提出的方法中,整个控制系统在一个FPGA芯片中实现。复杂的计算被分配给硬件计算逻辑,并且并行处理电路可以实现最小化的计算时间。同样,Nios II CPU内核在同一FPGA芯片中实现,该软件可用于非时间关键型计算。应用该控制系统,可以实现具有非常快速的瞬态响应的自主分散式UPS系统。通过将三个UPS并联连接的实验装置,确认了可行性和稳定运行。而且,应用了快速的负载变化,并在瞬态响应和稳定性方面证实了系统的出色性能。

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