EEE 400 PROGRESS REPORT PRESENTATION 2 ND TERM

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EEE 400 PROGRESS REPORT PRESENTATION (2 ND TERM) Presentation title 36 points Arial bold

EEE 400 PROGRESS REPORT PRESENTATION (2 ND TERM) Presentation title 36 points Arial bold Centered Presented by: Presenters’ Name (28 points Arial bold) Department of Electrical & Electronic Engineering INDEPENDENT UNIVERSITY, BANGLADESH Supervisor: Prof. Md. Abdur Razzak Presenters’ short name Short Title Page 1/18

Outline q Background, Motivation and Objectives Ø Existing systems and related works (literature review)

Outline q Background, Motivation and Objectives Ø Existing systems and related works (literature review) Ø Problems and challenges in the existing systems Ø Possible solutions q q q q Problem Statement and Research Methodology Proposed System Theory / Design / Mathematical Modeling Simulation Results and Analysis Addressing Engineering Activities Summary Presenters’ short name Short Title Page 2/18

Background and Motivation Use a page or 2 to state the background of this

Background and Motivation Use a page or 2 to state the background of this project and why you are motivated to pursue this project (preferably either pictorial or using block diagram) Presenters’ short name Short Title Page 3/18

Background and Motivation (contd. . ) Use a page or 2 to state the

Background and Motivation (contd. . ) Use a page or 2 to state the background of this project and why you are motivated to pursue this project (preferably either pictorial or using block diagram) Presenters’ short name Short Title Page 4/18

Background and Motivation (Literature Review) Sl 1. Reference (Journal / Conference papers Outcome M.

Background and Motivation (Literature Review) Sl 1. Reference (Journal / Conference papers Outcome M. A. Razzak and Bing Zeng, “A Constant Current Immittance Conversion Circuit”, IEEE International Conference on Circuits and Systems, 14 -18 December, 2011, Sydney, Australia, pp. 746 -751. Provide constant current for dynamic load i. e. the load power will not be changed even when the load changes. 2. Limitations / Problems / Challenging issues It requires more components which make the project complex as well as costly. Stability of the system will also be challenging. Possible Solution Should be provided a simple topology which will make the system less complex, low cost as well as stable and robust. example 3. Presenters’ short name Short Title Page 5/18

Background and Motivation (Literature Review) Sl 4. Reference (Journal / Conference papers Outcome M.

Background and Motivation (Literature Review) Sl 4. Reference (Journal / Conference papers Outcome M. A. Razzak and Bing Zeng, “A Constant Current Immittance Conversion Circuit”, IEEE International Conference on Circuits and Systems, 14 -18 December, 2011, Sydney, Australia, pp. 746 -751. Provide constant current for dynamic load i. e. the load power will not be changed even when the load changes. 5. Limitations / Problems / Challenging issues It requires more components which make the project complex as well as costly. Stability of the system will also be challenging. Proposed Solution Should be provided a simple topology which will make the system less complex, low cost as well as stable and robust. example 6. Presenters’ short name Short Title Page 6/18

Problem Statement & Objectives After literature review, the following major problems are discovered and

Problem Statement & Objectives After literature review, the following major problems are discovered and needed to be addressed: q Xx The objective(s) of the proposed system is/are: q Xx Presenters’ short name Short Title Page 7/18

Research Methodology example Review Literature Presenters’ short name Design using PSIM Simulation Making Hardware

Research Methodology example Review Literature Presenters’ short name Design using PSIM Simulation Making Hardware Prototype Short Title Perform Experiment Analyze Results Page 8/18

Proposed System example Presenters’ short name Short Title Page 9/18

Proposed System example Presenters’ short name Short Title Page 9/18

Theory / Design / Mathematical Modeling q Xx Presenters’ short name Short Title Page

Theory / Design / Mathematical Modeling q Xx Presenters’ short name Short Title Page 10/18

Theory / Design / Mathematical Modelling (contd. . ) q Xx Presenters’ short name

Theory / Design / Mathematical Modelling (contd. . ) q Xx Presenters’ short name Short Title Page 11/18

Simulation / experiment q Xx Presenters’ short name Short Title Page 12/18

Simulation / experiment q Xx Presenters’ short name Short Title Page 12/18

Results and Analysis q Xx Presenters’ short name Short Title Page 13/18

Results and Analysis q Xx Presenters’ short name Short Title Page 13/18

Results and Analysis (contd. ) q Xx Presenters’ short name Short Title Page 14/18

Results and Analysis (contd. ) q Xx Presenters’ short name Short Title Page 14/18

Addressing complex engineering problems Complex Engineering Problems WP 1 Depth of knowledge required (WK

Addressing complex engineering problems Complex Engineering Problems WP 1 Depth of knowledge required (WK 3 -WK 5, WK 8) WP 2 Range of conflicting requirements Addressing the complex engineering problems in the project WP 3 Depth of analysis required WP 4 Familiarity of issues WP 5 Extent of applicable codes WP 6 Extent of stakeholder involvement WP 7 Interdependence Presenters’ short name Short Title Page 15/18

Addressing Complex Engineering Activities Addressing the complex engineering activities in the project EA 1

Addressing Complex Engineering Activities Addressing the complex engineering activities in the project EA 1 Range of resources EA 2 Level of interactions EA 3 Innovation EA 4 Consequences to society / environment EA 5 Familiarity Presenters’ short name Short Title Page 16/18

Summary q xx Presenters’ short name Short Title Page 17/18

Summary q xx Presenters’ short name Short Title Page 17/18

Any questions, comments or suggestions? Presenters’ short name Short Title Page 18/18

Any questions, comments or suggestions? Presenters’ short name Short Title Page 18/18