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首页> 外文期刊>Power Electronics, IET >Model, design and implementation of a low-cost HIL for power converter and microgrid emulation using DSP
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Model, design and implementation of a low-cost HIL for power converter and microgrid emulation using DSP

机译:使用DSP的用于电源转换器和微电网仿真的低成本HIL的模型,设计和实现

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In this study, the authors propose a method to implement a low-cost hardware-in-the-loop (HIL) system for power converters and microgrids design, test and analysis. This approach uses a digital signal processor (DSP) Texas Instruments as the HIL core. All the differential equations of the power converters are solved in real-time by the DSP and displayed in the digital-to-analogue outputs. Three different converters are modelled in this study: boost converter, single-phase inverter connected to the grid and three-phase inverter connected to the grid. Experimental results are obtained and compared to the HIL response. These results were made triggering the real converter and the HIL with the same open-loop pulse width modulation signal, showing high fidelity between the digital models over the real systems. In a second moment, a microgrid is modelled in the proposed HIL and tested with a closed-loop controller. The experiments show that the proposed hardware supports time steps as low as 1 mu s or 1 MHz update rate, depending on the model. The proposed technique has the potential to reduce testing time and cost, once commercial HIL devices such as Typhoon, dSPACE and RTDS have a significant cost, not affordable or available to all the research community
机译:在这项研究中,作者提出了一种实现低成本的硬件在环(HIL)系统的方法,用于电源转换器和微电网的设计,测试和分析。这种方法使用数字信号处理器(DSP)Texas Instruments作为HIL内核。 DSP实时求解功率转换器的所有微分方程,并显示在数模输出中。本研究对三种不同的转换器进行了建模:升压转换器,连接到电网的单相逆变器和连接到电网的三相逆变器。获得实验结果并将其与HIL响应进行比较。这些结果是通过使用相同的开环脉宽调制信号触发实数转换器和HIL的结果,显示了实系统上数字模型之间的高保真度。第二,在建议的HIL中对微电网进行建模,并使用闭环控制器进行测试。实验表明,根据模型的不同,所建议的硬件支持低至1μs或1 MHz更新速率的时间步长。一旦商业HIL设备(如台风,dSPACE和RTDS)的成本很高,而不是所有研究团体都负担得起或无法获得,该提议的技术就有可能减少测试时间和降低成本。

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