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Passivity-Based Control applied to DC hybrid power source using fuel cell and supercapacitors

机译:基于无源性的控制应用于使用燃料电池和超级电容器的直流混合电源

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摘要

Nowadays, energy management becomes an absolute necessity. To reduce systems consumption, the idea is to recover energy when it is possible and to reuse it when the system is in need. Energy can be saved in peak power unit (electric double layer capacitors called supercapacitors). Those latter can absorb or supply power peaks.rnThis paper deals with the conception of hybrid power sources using fuel cell as main source, a DC link and supercapacitors as transient power source. The whole system is modeled in state space equations. The energy management is reached using Passivity-Based Control (PBC). PBC is a very powerful nonlinear technique dealing with important system information like the system's total energy. Stability proof and simulation results are given. In this proposed control laws only few measurement are needed (two or three depending on the presented solutions one or two).
机译:如今,能源管理已成为绝对必要。为了减少系统消耗,其想法是在可能的情况下回收能量,并在需要系统时重新使用能量。可以在峰值功率单元(称为超级电容器的双电层电容器)中节省能量。后者可以吸收或提供功率峰值。本文讨论了以燃料电池为主电源,直流母线和超级电容器为暂态电源的混合动力源的概念。整个系统以状态空间方程建模。使用基于被动性的控制(PBC)可以实现能源管理。 PBC是一种非常强大的非线性技术,用于处理重要的系统信息,例如系统的总能量。给出了稳定性证明和仿真结果。在此提出的控制定律中,只需要很少的测量(根据提出的解决方案是一到两个,就需要两个或三个)。

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