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An on-line active energy flow split strategy for battery-ultracapacitor energized PMSM driving system

机译:电池-超级电容器激励的PMSM驱动系统的在线有功流分配策略

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In recent years, hybrid energy storage system (HESS) has been studied a lot. Due to the complementary characteristics embraced by each component in the HESS, it is believed that the power supply quality can be improved. Frequently discussed HESS refers to battery-ultracapacitor hybridization, which can be promisingly used as the power supply for Electric Vehicles (EV) where a power train that drives PMSM is generally involved. In this paper, an on-line energy flow split strategy (EFSS) is proposed to timely tune the amount of energy supplements from battery and ultracapacitor respectively. Major contribution of this paper is an EFSS considering the relationship between HESS and PMSM under the influence of SVPWM (Space Vector Pulse Width Modulation) of inverter is proposed, which fits directly into real engineering applications. The proposed EFSS is synthesized with PMSM control algorithm into a TMS320 F28335 based DSP test platform to verify the effectiveness of proposed EFSS. Experiment results show that the proposed EFSS can work well with real PMSM driving system under the presence of load variations.
机译:近年来,对混合储能系统(HESS)进行了很多研究。由于HESS中每个组件所具有的互补特性,可以相信可以改善电源质量。经常讨论的HESS是指电池-超级电容器的混合,可以有望用作电动汽车(EV)的电源,而电动汽车(EV)通常涉及驱动PMSM的动力总成。本文提出了一种在线能量流分配策略(EFSS),以适时调整电池和超级电容器分别补充的能量。本文的主要贡献是提出了一种EFSS,它考虑了逆变器的SVPWM(空间矢量脉冲宽度调制)的影响下HESS和PMSM之间的关系,直接适用于实际工程应用。利用PMSM控制算法将提出的EFSS合成到基于TMS320 F28335的DSP测试平台中,以验证提出的EFSS的有效性。实验结果表明,在负载变化的情况下,提出的EFSS可以与实际的PMSM驱动系统很好地配合使用。

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