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A non-sinusoidal trajectory profile is proposed for the oscillating hydrofoil in the energy generators instead of conventional sinusoidal plunging/pitching motions to seek better energy extraction performance.
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Its main objective is to achieve better energy extraction.
Nonlinear spring is utilized to improve the adaptation and energy extraction performance of the power generator.
Using the proposed heat extraction method in batch mode, 85% of the total heat is removed from the HSZ while this is just over 50% for the continuous mode indicating the better energy storage performance of the batch mode.
Compared to the energy efficiency performance achieved by the traditional energy efficient transmission [6-8], the proposed algorithm can achieve better energy efficiency performance.
Meanwhile, ADCNC-MAC using an asynchronously scheduled duty cycle achieves a better energy consumption performance.
When the first dead node appears, the less remaining energy of other nodes means the better energy balancing performance.
However, exemplary buildings demonstrate the feasibility of much better energy performance at no additional first cost.
For a fixed building mix, the reduction of supply radius may lead to better energy performance.
It is shown in this article that small-buffered systems exhibit better energy performance compared to non-buffered deterministic schedulers.
Experimental results show that the ensemble template algorithm proposed in this paper exhibits better extraction performance.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com