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Port-Hamiltonian Modeling of Systems with Position-Dependent Mass

机译:地点捕获群体依赖质量的系统建模

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It is known that straightforward application of the classical Lagrangian and Hamiltonian formalism to systems with mass varying explicitly with position may lead to discrepancies in the formulation of the equations of motion. Systems with mass varying explicitly with position often arise from situations where the partitioning of a closed system of constant mass leads to open subsystems that exchange mass among themselves. One possible solution is to introduce additional non-conservative generalized forces that account for these effects. However, it remains unclear how to systematically interconnect the Lagrangian or Hamiltonian subsystems. In this paper, systems with mass varying explicitly with position and their properties are studied in the port-Hamiltonian modeling framework. The port-Hamiltonian formalism combines the classical Lagrangian and Hamiltonian approach with network modeling and is applicable to various engineering domains. One of the strong aspects of the port-Hamiltonian formalism is that power-preserving interconnections between port-Hamiltonian subsystems results in another port-Hamiltonian system with composite energy and interconnection structure. The motion of a heavy cable being deployed from a reel by the action of gravity is used as an example.
机译:众所周知,古典拉格朗日和哈密顿形式主义的直接应用于具有质量不同的系统,其具有位置的质量变化可能导致运动方程的制定中的差异。具有与位置明确明确变化的系统通常会从恒定质量的封闭系统的分区引线的情况下出现,以打开交换质量的开放子系统。一种可能的解决方案是引入额外的非保守普遍性的势力,该力占这些效果。但是,它仍然不清楚如何系统地互连拉格朗日或哈密顿子系统。在本文中,在Port-Hamiltonian建模框架中研究了具有位置和其性质的质量不同的系统。 Port-Hamiltonian形式主义与网络建模相结合了古典拉格朗日和哈密尔顿方法,适用于各种工程域。端口 - 汉密尔顿正式主义的强大方面之一是,端口 - 哈密顿子系统之间的功率保持互连导致另一个具有复合能量和互连结构的端口-hamiltonian系统。使用重力作用从卷轴展现的重型电缆的运动作为示例。

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