With the development of EMC technology, EMC assessment has become increasingly important in EMC design. Although numerous EMC assessment models are available today, few of them can provide a tradeoff between efficienc...With the development of EMC technology, EMC assessment has become increasingly important in EMC design. Although numerous EMC assessment models are available today, few of them can provide a tradeoff between efficiency and accuracy for the specific case of military vehicular communication systems. Face to this situation, a modified four-level assessment model is proposed in the paper. First, the development of EMC assessment technology is briefly reviewed, and the theoretical mechanism of EMI environment is introduced. Then, the architecture of the proposed model is outlined, and the assessment methods are explored. To demonstrate the application of it, an example involving a communication system in a military vehicle is presented. From the physical layer to the signal layer, a hierarchical assessment on the entire system is successfully performed based on the proposed model, and we can make a qualitative EMC assessment on the EMC performance of the system. Based on a comparison with the traditional model, we conclude that the proposed model is more accurate, more efficient and less time-consuming, which is suitable for the EMC assessment on militaryvehicular communication systems. We hope that the proposed model will serve as a useful reference for system-level EMC assessments for other systems.展开更多
为解决商用车在行驶过程中,传统的液压助力转向系统阻力较大且效率较低,并且在长期使用后保养不当容易泄露,可能引起事故等问题,对电动辅助转向电机控制算法和设计进行了研究。电动辅助转向电机选择永磁同步电机,通过应用模糊PID(Propor...为解决商用车在行驶过程中,传统的液压助力转向系统阻力较大且效率较低,并且在长期使用后保养不当容易泄露,可能引起事故等问题,对电动辅助转向电机控制算法和设计进行了研究。电动辅助转向电机选择永磁同步电机,通过应用模糊PID(Proportional Integral Derivative)算法可以精确,快速地调制到参考值。同时采用拓展卡尔曼滤波器可以估算永磁同步电机的转子位置,减小控制器的体积及成本。在驱动系统中,由于大电流耦合路径多样严重影响电机控制系统的电磁兼容性能,所以电机控制时采用驱动系统EMC(Electro Magnetic Compatibility)设计。实验结果表明,基于模糊PID算法以及拓展卡尔曼滤波器的永磁同步电机控制可以应用于商用车电动辅助转向电机控制中。展开更多
基金supported by the National Moon Exploration Program of China (No. TY3Q20110020)in part supported by the 13th Five-Year Community Technology Research Program of National Equipment Development Department of China (No.41409020301)the National Natural Science Foundation of China (50971094)
文摘With the development of EMC technology, EMC assessment has become increasingly important in EMC design. Although numerous EMC assessment models are available today, few of them can provide a tradeoff between efficiency and accuracy for the specific case of military vehicular communication systems. Face to this situation, a modified four-level assessment model is proposed in the paper. First, the development of EMC assessment technology is briefly reviewed, and the theoretical mechanism of EMI environment is introduced. Then, the architecture of the proposed model is outlined, and the assessment methods are explored. To demonstrate the application of it, an example involving a communication system in a military vehicle is presented. From the physical layer to the signal layer, a hierarchical assessment on the entire system is successfully performed based on the proposed model, and we can make a qualitative EMC assessment on the EMC performance of the system. Based on a comparison with the traditional model, we conclude that the proposed model is more accurate, more efficient and less time-consuming, which is suitable for the EMC assessment on militaryvehicular communication systems. We hope that the proposed model will serve as a useful reference for system-level EMC assessments for other systems.
文摘为解决商用车在行驶过程中,传统的液压助力转向系统阻力较大且效率较低,并且在长期使用后保养不当容易泄露,可能引起事故等问题,对电动辅助转向电机控制算法和设计进行了研究。电动辅助转向电机选择永磁同步电机,通过应用模糊PID(Proportional Integral Derivative)算法可以精确,快速地调制到参考值。同时采用拓展卡尔曼滤波器可以估算永磁同步电机的转子位置,减小控制器的体积及成本。在驱动系统中,由于大电流耦合路径多样严重影响电机控制系统的电磁兼容性能,所以电机控制时采用驱动系统EMC(Electro Magnetic Compatibility)设计。实验结果表明,基于模糊PID算法以及拓展卡尔曼滤波器的永磁同步电机控制可以应用于商用车电动辅助转向电机控制中。