工业系统中用于超级电容器存储装置的电力电子变换器的研究

M. Vorobyov
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引用次数: 2

摘要

如今,能源消耗最小化是非常重要的。这可以通过使用可再生能源或最小化能源消耗来实现。在工业中,许多系统如数控机床或工业机器人都可以再生能源。再生的能量在击穿变阻器时耗散。要使用再生能源,通常使用快速能量存储设备,如飞轮或超级电容器。比较了工业直流电网中具有非线性负载的超级电容充放电界面变换器的两种拓扑结构。这些拓扑是ζ -sep、buck和boost。这两种拓扑都显示了适当的结果。降压和升压拓扑更便宜,产生更少的电流波纹。Zeta-sepic产生更大的电流波纹,但更好地稳定电网电压。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research of power electronics converters for supercapacitor storage devices used in industrial systems
Nowadays energy consumption minimization is very important. It can be done using renewable energy sources or by minimization of energy consumption. In industry case a lot of systems as CNC machines or industrial robots can regenerate energy. Regenerated energy is dissipated in breaking rheostats. To use regenerated energy usually use fast energy storage devices like flywheels or supercapacitors. In this paper are compared two topologies of interface converters for supercapacitor chargerging discharging in industrial DC grid with nonlinear load. These topologies are zeta-sepic and buck and boost. Both topologies are shown appropriate results. Buck and boost topology cheaper and produce less current ripples. Zeta-sepic produces larger current ripples, but better stabilizes grid voltage.
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