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Removing the algebraic loops of a bond graph model

机译:删除键图模型的代数环

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摘要

A general straightforward procedure solving the problem of algebraic loops in a bond graph model of a linear time invariant (LTI) multi-input multi-output (MIMO) system is presented. This procedure is based on a proposed junction structure and an R-field. This junction structure allows interactions only between the state variables and the dissipation field and inputs, and between the dissipation field and the co-energy variables. This junction structure decouples the elements of the dissipation field, thereby removing the algebraic loops. The outputs are only functions of the co-energy variables and the inputs. In order to obtain a physical meaning for the proposed bond graph model, the initial R-field of this bond graph is transformed to a dissipative field of 1-port resistors, transformers, and gyrators. The proposed bond graph does not have algebraic loops and allows predefined integral (BGI) or derivative (BGD) causality assignments to be realized.
机译:提出了一种解决线性时不变(LTI)多输入多输出(MIMO)系统的键图模型中代数环问题的简单方法。此过程基于拟议的结结构和R场。这种结结构仅允许状态变量与耗散场和输入之间以及耗散场与协能变量之间进行交互。这种结结构使耗散场的元素解耦,从而消除了代数环。输出仅是协能变量和输入的函数。为了获得所提出的键合图模型的物理意义,该键合图的初始R场被转换为1端口电阻器,变压器和回转器的耗散场。所提出的键图没有代数环,并允许实现预定义的积分(BGI)或导数(BGD)因果关系分配。

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