Search alternatives:
greater decrease » greatest decrease (Expand Search), greater increase (Expand Search), greater disease (Expand Search)
lower decrease » larger decrease (Expand Search), linear decrease (Expand Search), teer decrease (Expand Search)
nn decrease » _ decrease (Expand Search), a decrease (Expand Search), gy decreased (Expand Search)
greater decrease » greatest decrease (Expand Search), greater increase (Expand Search), greater disease (Expand Search)
lower decrease » larger decrease (Expand Search), linear decrease (Expand Search), teer decrease (Expand Search)
nn decrease » _ decrease (Expand Search), a decrease (Expand Search), gy decreased (Expand Search)
-
3541
Orthogonal experiment scheme and results.
Published 2024“…The <i>T</i><sub>max</sub> of the battery module decreased by 6.84% from 40.94°C to 38.14°C and temperature mean square deviation decreased (<i>TSD</i>) by 62.13% from 1.69 to 0.64. …”
-
3542
Design variables and range of values.
Published 2024“…The <i>T</i><sub>max</sub> of the battery module decreased by 6.84% from 40.94°C to 38.14°C and temperature mean square deviation decreased (<i>TSD</i>) by 62.13% from 1.69 to 0.64. …”
-
3543
Comparison of precision of various proxy models.
Published 2024“…The <i>T</i><sub>max</sub> of the battery module decreased by 6.84% from 40.94°C to 38.14°C and temperature mean square deviation decreased (<i>TSD</i>) by 62.13% from 1.69 to 0.64. …”
-
3544
Comparison between actual and predicted values.
Published 2024“…The <i>T</i><sub>max</sub> of the battery module decreased by 6.84% from 40.94°C to 38.14°C and temperature mean square deviation decreased (<i>TSD</i>) by 62.13% from 1.69 to 0.64. …”
-
3545
Sample points and numerical simulation results.
Published 2024“…The <i>T</i><sub>max</sub> of the battery module decreased by 6.84% from 40.94°C to 38.14°C and temperature mean square deviation decreased (<i>TSD</i>) by 62.13% from 1.69 to 0.64. …”
-
3546
Three-dimensional heat transfer model parameters.
Published 2024“…The <i>T</i><sub>max</sub> of the battery module decreased by 6.84% from 40.94°C to 38.14°C and temperature mean square deviation decreased (<i>TSD</i>) by 62.13% from 1.69 to 0.64. …”
-
3547
Optimal Latin square sampling distribution.
Published 2024“…The <i>T</i><sub>max</sub> of the battery module decreased by 6.84% from 40.94°C to 38.14°C and temperature mean square deviation decreased (<i>TSD</i>) by 62.13% from 1.69 to 0.64. …”
-
3548
2C discharge rate grid independence test.
Published 2024“…The <i>T</i><sub>max</sub> of the battery module decreased by 6.84% from 40.94°C to 38.14°C and temperature mean square deviation decreased (<i>TSD</i>) by 62.13% from 1.69 to 0.64. …”
-
3549
Feasibility diagram of design points.
Published 2024“…The <i>T</i><sub>max</sub> of the battery module decreased by 6.84% from 40.94°C to 38.14°C and temperature mean square deviation decreased (<i>TSD</i>) by 62.13% from 1.69 to 0.64. …”
-
3550
Related parameters of square LIBs.
Published 2024“…The <i>T</i><sub>max</sub> of the battery module decreased by 6.84% from 40.94°C to 38.14°C and temperature mean square deviation decreased (<i>TSD</i>) by 62.13% from 1.69 to 0.64. …”
-
3551
Multi objective optimization design process.
Published 2024“…The <i>T</i><sub>max</sub> of the battery module decreased by 6.84% from 40.94°C to 38.14°C and temperature mean square deviation decreased (<i>TSD</i>) by 62.13% from 1.69 to 0.64. …”
-
3552
Battery pack model.
Published 2024“…The <i>T</i><sub>max</sub> of the battery module decreased by 6.84% from 40.94°C to 38.14°C and temperature mean square deviation decreased (<i>TSD</i>) by 62.13% from 1.69 to 0.64. …”
-
3553
Value ranges of three representative points.
Published 2025“…<div><p>Capturing congestion propagation among different facilities at intersections in dynamic stochastic traffic environments poses significant challenges, particularly under oversaturated conditions. …”
-
3554
Signalized intersection in Kunshan.
Published 2025“…<div><p>Capturing congestion propagation among different facilities at intersections in dynamic stochastic traffic environments poses significant challenges, particularly under oversaturated conditions. …”
-
3555
Dynamic system state in demand scenarios 2.
Published 2025“…<div><p>Capturing congestion propagation among different facilities at intersections in dynamic stochastic traffic environments poses significant challenges, particularly under oversaturated conditions. …”
-
3556
Survey data of the intersection.
Published 2025“…<div><p>Capturing congestion propagation among different facilities at intersections in dynamic stochastic traffic environments poses significant challenges, particularly under oversaturated conditions. …”
-
3557
The main notations used in this paper.
Published 2025“…<div><p>Capturing congestion propagation among different facilities at intersections in dynamic stochastic traffic environments poses significant challenges, particularly under oversaturated conditions. …”
-
3558
Feedback elimination for feedback queue.
Published 2025“…<div><p>Capturing congestion propagation among different facilities at intersections in dynamic stochastic traffic environments poses significant challenges, particularly under oversaturated conditions. …”
-
3559
A typical cross signalized intersection.
Published 2025“…<div><p>Capturing congestion propagation among different facilities at intersections in dynamic stochastic traffic environments poses significant challenges, particularly under oversaturated conditions. …”
-
3560
Four signal stages for the intersection.
Published 2025“…<div><p>Capturing congestion propagation among different facilities at intersections in dynamic stochastic traffic environments poses significant challenges, particularly under oversaturated conditions. …”