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Two-layer structure predictive control of target tracking mode for dual time-scale system

机译:双重时间尺度系统目标跟踪模式的双层结构预测控制

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In the dual time-scale system, the time for the fast and slow model to reach steady-state values is inconsistent. Based on the "point" model strategy of integral variables, this paper compares and analyzes the slow model variables with the integral variables and designs a two-layer structure predictive controller for the dual time-scale system under the model truncation. The steady-state optimization layer uses the step response characteristics of slow model variables to derive the multi-step controlled variable prediction values after the truncation point. Based on the improved displacement matrix, the error correction coefficient is modified by introducing an error compensation factor in the dynamic control layer to reduce the accumulated error of model truncation. Under the truncated dual time-scale system model, the improved strategy proposed in the paper can not only maintain the amount of calculation of the predictive control but also solve the problem that the steady-state target calculation is not accurate enough due to model mismatch. Finally, the elfectiveness of the improvement strategy is verified by simulation comparison.
机译:在双时间尺度系统中,快速和慢速模型到达稳态值的时间不一致。基于积分变量的“点”模型策略,本文将慢模型变量与积分变量进行比较,并为模型截断下的双时间尺度系统设计了双层结构预测控制器。稳态优化层使用慢速模型变量的阶梯响应特性来导出截断点之后的多步控制可变预测值。基于改进的位移矩阵,通过在动态控制层中引入误差补偿因子来修改纠错系数,以减少模型截断的累积误差。在截短的双时间级系统模型下,本文提出的改进策略不仅可以维持预测控制的计算量,而且还解决了由于模型不匹配而稳态目标计算不够准确的问题。最后,通过模拟比较验证了改进策略的elfective。

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