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It also determines the operating modes of the chargers (i.e., charging, discharging, or idle) using a decision making algorithm to increase the State Of Charges (SOCs) and decrease the charging costs only based on the current conditions of the distribution network.
When the frequency deviation is negative, an EV will increase the discharging power or decrease the charging power to elevate system frequency.
Depending on the application requirements, it is possible to use high-charging current in order to decrease the charging time.
By increasing the initial pressure from 2.45 to 3.2 MPa (at 282.15 K), it is also possible to decrease the charging time by a factor of 3. Finally, it appears that the capacity of pressure to increase CO2-hydrate phase-change temperature can also improve system efficiency by decreasing thermal losses.
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At low temperature, when the phonon scattering is inactive and negligible, electron mobility can be improved by decreasing the charged impurity density.
More importantly, stronger interfacial dipoles can also decrease the charge accumulation within the bulk photovoltaic layer.
We observe that stronger interfacial dipoles can significantly decrease the charge extraction time and consequently increase the charge extraction efficiency.
Furthermore, MWCNT electrodes increase polymer permeability and decrease the charge trapping phenomenon involved in the oxidation and reduction of the polypyrrolic skeleton of the Ru II) functionalized polymers.
The tightly bound structure with FCNTs could enhance electronic conductivity, decrease the charge transfer resistance, and increase the lithium diffusion coefficient, thus improving rate capability of TiO2 remarkably.
PANI incorporation in LiV3O8 could decrease the charge transfer resistance, increase the lithium diffusion coefficient during the lithiation process and improve the electrochemical reversibility.
According to impedance analysis, the etching step can decrease the charge transfer resistance and Warburg impedance, thus improving the pseudocapacitive property.
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