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State space identification of bilinear continuous-time canonical systems via batch scheme Hartley modulating functions approach

机译:通过批量方案Hartley调制功能方法的双线性连续时间规范系统的状态空间识别

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This paper deals with the state space identification of bilinear continuous-time dynamic systems represented in canonical forms based on the evaluation of input and noise corrupted output batch data. Bilinear continuous-time canonical forms are an important class of nonlinear systems which may be found in a wide variety of applications and they are suitable for solving analysis and synthesis problems of dynamic systems. The batch scheme Hartley modulating functions (1942) identification method starts from a priori knowledge of the bilinear system structure with unknown parameters. The unknown system parameters can then be estimated by shifting a batch data one step forward at each sampling time applying a frequency weighted least squares algorithm. Simulation studies are considered to examine the performance of the algorithm.
机译:本文根据输入和噪声损坏的输出批量数据的评估,涉及规范形式代表的双线性连续动态系统的状态空间识别。 双线性连续时间规范形式是一类重要的非线性系统,可以在各种应用中找到,它们适用于求解动态系统的分析和合成问题。 批量方案Hartley调制功能(1942)识别方法从具有未知参数的双线性系统结构的先验知识开始。 然后可以通过在应用频率加权最小二乘算法的每个采样时间向前转向上一步来估计未知的系统参数。 仿真研究被认为是检查算法的性能。

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