Low power experimental prototype of a controlled three-phase inverter using D.S.P (TMS320F2812) for a hydraulic energy conversion chain application

Chirine Benzazah, Loubna Lazrak, Soukaina El Daoudi, M. A. Lafkih
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Abstract

This paper deals with a part implementation of the distributed generation chain system based on hydraulic power source operated in low power and controlled by DSP F2812. The experimental part of the chain includes a controlled two-level three-phase inverter connected, via an LC filter, to a load. This latter consists of a balanced three-phase resistive without neutral point joint, for this reason, the implementation requires fewer sensors as measuring devices. The proposed control strategy uses just two regulation loops; one of them is for the AC output voltages and the other one is for the input inductor currents of LC filter. This strategy was developed on Matlab-Simulink and implemented in eZdsp TMS320F2812 DSP board from spectrum digital. To confirm the efficiency and robustness of the chain part implementation, the experimental results using the implemented inverter was compared with a compact industrial module 7MBR15SA120 inverter mounting with the same control interface and measurement cards. The experimental waveforms comparison prove that there is a good match between the two practice prototypes, validate the theoretical study as well as the simulation results obtained and confirm the effectiveness of the proposed control strategy.
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采用D.S.P (TMS320F2812)的低功耗可控三相逆变器实验样机用于液压能量转换链的应用
本文介绍了基于液压电源的分布式发电链系统的部分实现,该系统采用DSP F2812控制,以低功率运行。该链的实验部分包括一个受控的两电平三相逆变器,通过LC滤波器连接到负载。后者由无中性点连接的平衡三相电阻组成,因此,该实现需要较少的传感器作为测量设备。所提出的控制策略仅使用两个调节回路;其中一个为交流输出电压,另一个为LC滤波器的电感输入电流。该策略在Matlab-Simulink上开发,并从频谱数字的角度在eZdsp TMS320F2812 DSP板上实现。为了验证链条部分实现的有效性和鲁棒性,将实现的逆变器与具有相同控制接口和测量卡的紧凑型工业模块7MBR15SA120逆变器安装的实验结果进行了比较。实验波形对比表明,两种实际样机具有较好的匹配性,验证了理论研究和仿真结果,验证了所提控制策略的有效性。
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来源期刊
International Journal of Systems, Control and Communications
International Journal of Systems, Control and Communications Engineering-Control and Systems Engineering
CiteScore
1.50
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0.00%
发文量
26
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