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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Distributed Coordination of Asymmetric Compartmental Systems Under Time-Varying Inputs and Its Applications
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Distributed Coordination of Asymmetric Compartmental Systems Under Time-Varying Inputs and Its Applications

机译:时变输入下非对称隔室系统的分布式协调及其应用

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In this paper, we present new distributed coordination for a set-point regulation of asymmetric compartmental systems under periodically time-varying external inputs. The feature of the proposed coordination is to adjust system parameters, which is directly related to interflow rate among compartments and outflow rate to environment. In contrast to symmetric compartmental systems, there is a difficulty in analysis resulted from a property of compartmental matrix in the asymmetric cases; however, we solve the problem by designing an appropriate coordination range of the system parameters. In order to compensate the time-varying effect in the inputs, we assume that the structure of the inputs is a finite Fourier series, and show that the coordination of the system parameters should have the same structure with the same frequencies. The remainder of the coordination is to determine coefficients of the Fourier series of the system parameters. We develop a distributed update law for obtaining the coefficients. We apply the distributed coordination to water irrigation systems and water distribution systems, and show the effectiveness of the proposed distributed coordination schemes through numerical simulations.
机译:在本文中,我们提出了在周期性时变外部输入下非对称隔室系统设定点调节的新分布式协调。所提出的协调的特征是调整系统参数,该参数与隔室之间的内流率和对环境的外流率直接相关。与对称隔室系统相反,在非对称情况下,由于隔室矩阵的性质导致分析困难;但是,我们通过设计适当的系统参数协调范围来解决该问题。为了补偿输入中的时变效应,我们假定输入的结构是有限的傅里叶级数,并表明系统参数的协调应具有相同的结构和相同的频率。协调的其余部分是确定系统参数的傅里叶级数的系数。我们开发了用于获取系数的分布式更新定律。我们将分布式协调应用于水灌溉系统和供水系统,并通过数值模拟证明了所提出的分布式协调方案的有效性。

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