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Controllability and Energy-Optimal Control of Time-Variant Fractional Systems

机译:时变分数系统的可控性和能量最优控制

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Time-variant fractional models are used to describe many applications, e.g. lithium-ion batteries. For such models, neither a controllability criterion for fractional pseudo state space equations nor the energy-optimal control function are available so far. To overcome this limitation, in this paper a reachability and controllability definition for time-variant fractional pseudo state space systems is formulated and the analytical solution of the energy-optimal control problem is derived. In this context, a fractional Gramian-Matrix appears. The fact that the fractional pseudo state must be interpreted differently than the state of a regular system is central to this paper. The reason for the difference in the interpretation is that the fractional pseudo state additionally depends on an initialization procedure.
机译:时变分数模型用于描述许多应用,例如锂离子电池。对于此类模型,到目前为止,分数分数伪状态空间方程的可控性准则和能量最优控制函数均不可用。为了克服这一限制,本文提出了时变分数伪状态空间系统的可达性和可控制性定义,并得出了能量最优控制问题的解析解。在这种情况下,出现了分数格拉姆矩阵。对于分数伪状态,必须与常规系统的状态进行不同的解释,这一事实是本文的重点。解释上的差异的原因是分数伪状态还取决于初始化过程。

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