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And then, the control process for AHV-VGI is divided into two subsystems.
In the proposed approach, the entire problem is first decomposed into two subsystems and evaluated sequentially.
We design a non-interactive controller to decouple the looper system into two subsystems.
Based on the control input matrix and output matrix, we decompose the system into two subsystems.
Firstly, state and output transformations are introduced to transform the original system into two subsystems.
To deal with unknown actuator parameters problem, we decompose the system into two subsystems.
A symplectic dimensionality reduction method is proposed to decouple the dynamic system into two subsystems approximately.
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The model is divided into six subsystems.
(ii) The system divided into three subsystems or phases.
The integrated design was broken into four subsystems: Water Management, Atmosphere Management, Waste Processing, and Food Supply.
The overall system is divided into three subsystems, containing the UG, PV and WES.
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