Protected: Battery Design & Modelling

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Introduction of Cells

1
History of Battery
00:15:00 hr
2
Types of ESS
00:22:00 hr
3
Why Li-Ion Cells
00:10:00 hr
4
Li-Ion Cell Working
00:09:00 hr
5
Battery Terminologies
00:21:00 hr
6
Li – Ion Chemistry
00:32:00 hr
7
Cell Types _ Form Factor
00:16:30 hr
8
Lithium Cell _ Materials
00:16:21 hr
9
Lithium Cell _ Failures
00:11:43 hr

Equivalent Cell Model

1
Open Circuit Voltage & SOC
00:39:00 hr
2
Linear Polarization
00:52:00 hr
3
Finding RC Value
00:10:39 hr
4
Hysteresis Voltage
00:28:32 hr
5
Equivalent Self Correcting Voltage
00:11:12 hr
6
Cell Testing Coulombic Efficiency
00:43:36 hr
7
Temperature and OCV
00:34:27 hr
8
Cell Dynamic Testing
00:33:25 hr
9
Battery Design
10
Model Simulation
00:41:00 hr

Physics Based Model

1
Physics Based Modelling – Intro
0:09:02
2
Charge Continuity
0:41:02
3
Mass Continuity Eqn
0:48:31
4
Thermal Energy and Potential
0:20:27
5
Thermodynamics Law and Gibbs Free Energy
0:38:34
6
Electro Chemical Potential
0:26:01
7
Absolute Activity
00:18:06
8
Binary Electrolyte Behaviour
0:19:42
9
Electrolyte Mass Continuation Eqn Pt1
0:48:42
10
Electrolyte Mass Continuation Eqn Pt2
0:35:39
11
Boundary Conditions
0:28:32

Battery Pack Design

1
Cell Operating Condition and Life
1:22:15
2
Improving Cell Life
1:12:13
3
Battery Calculation Basics
0:39:40
4
Energy Consumption Pt01
0:44:50
5
Energy Consumption Pt02
0:32:27
6
Drive Cycle
0:26:23
7
Average Consumption
0:30:50
8
Cell Arrangement
0:37:18
9
Cell Bonding
0:38:14
10
Cell Arrangement Pt 2
1:11:12
11
Cell Arrangement Pt 03
0:37:24
12
Enclosure Modelling
0:36:16
13
LID MODELLING
0:25:47

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