为提高FM信号发生器的频率准确度和稳定度,并使其相关技术参数可调,设计了一种基于FPGA和直接数字频率合成(DDS)技术的产生方法。系统通过上位机设置FM信号的调制参数,通过PCIE接口将上位机设置的FM信号控制字传给FPGA,FPGA内部通过控制...为提高FM信号发生器的频率准确度和稳定度,并使其相关技术参数可调,设计了一种基于FPGA和直接数字频率合成(DDS)技术的产生方法。系统通过上位机设置FM信号的调制参数,通过PCIE接口将上位机设置的FM信号控制字传给FPGA,FPGA内部通过控制DDS核来实现FM信号的产生。测试结果表明,FM信号的频率精度高且稳定性好,最高输出载波频率达40 MHz,幅度精度能达到5 m V。该FM信号发生器在软件无线电、雷达目标特征识别和雷达距离探测等领域具有广阔的应用空间。展开更多
A high-performance digital servo system built on the platform of a field programmable gate array (FPGA),a fully digitized hardware design scheme of a direct torque control (DTC) and a low speed permanent magnet synchr...A high-performance digital servo system built on the platform of a field programmable gate array (FPGA),a fully digitized hardware design scheme of a direct torque control (DTC) and a low speed permanent magnet synchronous motor (PMSM) is proposed. The DTC strategy of PMSM is described with Verilog hardware description language and is employed on-chip FPGA in accordance with the electronic design automation design methodology. Due to large torque ripples in low speed PMSM,the hysteresis controller in a conventional PMSM DTC was replaced by a fuzzy controller. This FPGA scheme integrates the direct torque controller strategy,the time speed measurement algorithm,the fuzzy regulating technique and the space vector pulse width modulation principle. Experimental results indicate the fuzzy controller can provide a controllable speed at 20 r min-1 and torque at 330 N m with satisfactory dynamic and static performance. Furthermore,the results show that this new control strategy decreases the torque ripple drastically and enhances control performance.展开更多
文摘为提高FM信号发生器的频率准确度和稳定度,并使其相关技术参数可调,设计了一种基于FPGA和直接数字频率合成(DDS)技术的产生方法。系统通过上位机设置FM信号的调制参数,通过PCIE接口将上位机设置的FM信号控制字传给FPGA,FPGA内部通过控制DDS核来实现FM信号的产生。测试结果表明,FM信号的频率精度高且稳定性好,最高输出载波频率达40 MHz,幅度精度能达到5 m V。该FM信号发生器在软件无线电、雷达目标特征识别和雷达距离探测等领域具有广阔的应用空间。
基金the Natural Science Foundation of Hubei Province (No.2005ABA301)
文摘A high-performance digital servo system built on the platform of a field programmable gate array (FPGA),a fully digitized hardware design scheme of a direct torque control (DTC) and a low speed permanent magnet synchronous motor (PMSM) is proposed. The DTC strategy of PMSM is described with Verilog hardware description language and is employed on-chip FPGA in accordance with the electronic design automation design methodology. Due to large torque ripples in low speed PMSM,the hysteresis controller in a conventional PMSM DTC was replaced by a fuzzy controller. This FPGA scheme integrates the direct torque controller strategy,the time speed measurement algorithm,the fuzzy regulating technique and the space vector pulse width modulation principle. Experimental results indicate the fuzzy controller can provide a controllable speed at 20 r min-1 and torque at 330 N m with satisfactory dynamic and static performance. Furthermore,the results show that this new control strategy decreases the torque ripple drastically and enhances control performance.