Thin film based real-time object tracking
Budget: ₹37,500 – ₹75,000 INR
Thin film based real-time object tracking Phase 1: Problem Statement & To Find Recommended Solution:
A) Sensor Selection
Define Sensor Working Principle
Define Sensor Ranges
Define Sensor Parameters
Define Sensor Environment Conditions
B) Boundary Conditions(Based on Material & Design)
Selection of Boundary Conditions
Define Boundary Conditions
Boundary Conditions Calculations
Conclude Final Boundary Conditions
Calculate Boundary Conditions Values
Recheck Boundary Conditions Values
C) Tool Selection
FDTD Simulation
Physics Simulation
Multi Domain Simulation
2D & 3D Simulation
D) Simulation Parameters
Setup the Model Environment in Specified
E) Simulation Tool
Create Geometrical Objects in Simulation Tool
Specify Material in Simulation Tool
Define Physics in Simulation Tool
Define Boundary Conditions in Simulation Tool
F) Model Selection
Model Selection Based on Fabrication Method
2D Model to 3D Model Conversion Calculations
G) Error Calculations
To Calculate Maximum error Probability
To Calculate error Tolerance
To Calculate Closed Environment error Values
To Calculate Open Environment error Values
Final Deliverable: Proof of concept testing of preliminary design using simulation
A) Sensor Selection
Define Sensor Working Principle
Define Sensor Ranges
Define Sensor Parameters
Define Sensor Environment Conditions
B) Boundary Conditions(Based on Material & Design)
Selection of Boundary Conditions
Define Boundary Conditions
Boundary Conditions Calculations
Conclude Final Boundary Conditions
Calculate Boundary Conditions Values
Recheck Boundary Conditions Values
C) Tool Selection
FDTD Simulation
Physics Simulation
Multi Domain Simulation
2D & 3D Simulation
D) Simulation Parameters
Setup the Model Environment in Specified
E) Simulation Tool
Create Geometrical Objects in Simulation Tool
Specify Material in Simulation Tool
Define Physics in Simulation Tool
Define Boundary Conditions in Simulation Tool
F) Model Selection
Model Selection Based on Fabrication Method
2D Model to 3D Model Conversion Calculations
G) Error Calculations
To Calculate Maximum error Probability
To Calculate error Tolerance
To Calculate Closed Environment error Values
To Calculate Open Environment error Values
Final Deliverable: Proof of concept testing of preliminary design using simulation