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Study of a Synchronization System for Distributed Inverters Conceived for FPGA Devices

机译:用于FPGA器件的分布式逆变器同步系统的研究

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In a multiple parallel-connected inverters system, limiting the circulating current phenomenon is mandatory since it may influence efficiency and reliability. In this paper, a new control method aimed at this purpose and conceived to be implemented on a Field Programmable Gate Array (FPGA) device is presented. Each of the inverters, connected in parallel, is conceived to be equipped with an FPGA that controls the Pulse-Width Modulation (PWM) waveform without intercommunication with the others. The hardware implemented is the same for every inverter; therefore, the addition of a new module does not require redesign, enhancing system modularity. The system has been simulated in a Simulink environment. To study its behavior and to improve the control method, simulations with two parallel-connected inverters have been firstly conducted, then additional simulations have been performed with increasing complexity to demonstrate the quality of the algorithm. The results prove the ability of the method proposed to limit the circulating currents to negligible values.
机译:在多个并联连接的逆变器系统中,限制循环电流现象是强制性的,因为它可能影响效率和可靠性。在本文中,呈现了一种目的,并在该目的上设想在现场可编程门阵列(FPGA)设备上实现的新控制方法。认为并联连接的每个逆变器配备有FPGA,该FPGA控制脉冲宽度调制(PWM)波形而无需与其他方式相互通信。每个逆变器所实现的硬件都是相同的;因此,添加新模块不需要重新设计,增强系统模块化。系统已在Simulink环境中进行模拟。为了研究其行为并改善控制方法,首先进行了具有两个平行连接逆变器的模拟,然后通过增加复杂性来执行额外的模拟来证明算法的质量。结果证明了所提出的方法将循环电流限制为可忽略的值。

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