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FPGA-based level-shift PWM for an asymmetric multilevel trinary inverter

机译:基于FPGA的水平移位PWM用于不对称多级横跨逆变器

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This paper deals with the design and development of conventional Level-shifted PWM techniques in a field programmable gate array (FPGA) for asymmetrical converters in a Trinary Hybrid Multilevel Inverter topology. Each modulation technique has been implemented in FPGA through a 32-bit single precision floating point architecture in accordance to IEEE-754 standard. Portability to other devices is ensured using VHDL. Embedded Block RAMs minimize FPGA resource usage, saving general logic resources, increasing overall speed and reducing power consumption. A comparison is presented in terms of resource consumption. An Asymmetric Cascaded Multilevel Inverter of single-phase nine-level is developed using Nexys 2 FPGA Card Board with Spartan-3E 1200. Experimental results are based on a two H-Bridged hardware prototype.
机译:本文涉及在横跨混合多级逆变器拓扑中的非对称转换器的现场可编程门阵列(FPGA)中传统水平移位PWM技术的设计和开发。根据IEEE-754标准,通过32位单精度浮点架构在FPGA中实现了每个调制技术。使用VHDL确保对其他设备的可移植性。嵌入式块RAM可最大限度地减少FPGA资源使用,节省一般逻辑资源,提高整体速度和降低功耗。在资源消耗方面提出了比较。使用Nexys 2 FPGA卡板开发了单相9级的非对称级联多级逆变器,具有斯巴达-3E 1200.实验结果基于两个H桥接硬件原型。

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