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This surprising result was verified under several working conditions.
A kinetic model was proposed and verified under periodic conditions.
The validity of the proposed scheme is verified under different wind power generation levels.
Its behaviour was then verified under a ML model (using the eval command in Ngene software).
Finally, the proposed strategy and the corresponding algorithm are verified under the PSCAD/EMTDC platform.
The stable behavior was verified under static load and cyclic load.
However, these solutions have, until now, never been verified under controlled laboratory conditions.
The proposed method was verified under the experimental results as well.
Finally, accuracy of the constitutive model is verified under various loading conditions.
Furthermore, the energy-conserving characteristic hold for the SFDTD scheme is verified under long-term simulation.
The proposed EAS was subjected to the thorough testing and its functionality was verified under impact and quasi-static loading.
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