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Synopsis of

Standard Format for Preparing the Synopsis




                         A Thesis

                    to be submitted by

             Ph.D / M.S Student’s Name

               for the award of the degree of

        Doctor of Philosophy/Master of Science




    Department of Electrical Engineering
 Indian Institute of Technology Madras, India
                       Month, Year
1. Introduction

       Outline, briefly, the technological / engineering / scientific relevance or significance

of the research work to be reported in the thesis in this section. Introduction can at the best

occupy one page, preferably one paragraph occupying half a page. Be precise and include

only relevant background material in the introduction. Provide information on past works by

way of giving appropriate references. For the cover page, the title of the synopsis must be the

same as the title of the thesis. Use “times roman” 20 font, bold faced and centered paragraph

style. For typing the name of the student and the name of the degree, use font size 14, bold

faced type and centered paragraph style. For typing the department name, use 18 point size,

bold faced and centered paragraph style. Use the correct emblem. Do not use an emblem with

double circles! Use “times roman” font size 12, double line
                                                                                                                  Source

spacing and justified paragraph style for normal text. Every figure

(diagram, table and graph too) must be embedded along with the
                                                                                                    Detector
text and appear immediately after the first time the figure is
                                                                                            Fig. 1 PPG sensor head
referred to in the text. Each figure (diagram, table and graph) must be given a number and a

proper title. Use IEEE notation (examples are given here). Each figure must be referred in the

text. Make the figure legible and provide enough information so that the figure is “self

contained”. Provide legible legends that correctly describe the axes of a graph. Fig. 1 is an

example showing a photograph. Fig. 2 is an example showing a circuit schematic. Use SI

                    2
                                                        CF
          +VR              A
                                                               Clock
                                                                               D-flip-fop


                                                                                                  Digital LPF




                               R1
                                                                                                                Digital




                    1 S1
                                                                                                                output




                    2 S2       R2                B
                                                     OA      voi                            y
                                                                   OC        D Q
          -VR              C
                    1       Differential Resistive
                                   Sensor


                         Fig. 2 Proposed sigma-delta resistance to digital converter


                                                                                                                           2/5
Table 1 Error in reconstructed PPG                                                                                     (a)
 for a chosen number of Fourier coefficients.
    No. of                           NRMSE
  Coefficients                   dB          %
       1                       -17.60      13.19
       2                       -27.96       4.00
       3                       -33.89       2.02
       4                       -44.42       0.60                                                                              (b)
       5                       -44.59       0.59
       6                       -44.82       0.57
       7                       -45.85       0.51
       8                       -45.90       0.51
       9                       -45.96       0.50
      10                       -46.28       0.49                          Fig. 3 (a) Sample PPG chosen.(b) PPG extracted with only
                                                                                        the first 7 Fourier coefficients.


symbols, units and notations. If more than one curve is presented in a graph make sure each

one is correctly identified. You can use this document which is a word template to type in or

format your synopsis. Fig. 3 is another example showing the depiction of a waveform. The

example of a table is given in Table 1. Fig. 4 is an example of a graph.

         The synopsis can have at the maximum 16 pages, including the cover page and

should be printed on both sides of the paper. The paper must be A4 size with the following

margins: Top and bottom margins must be 2.4 cm each. Left margin should be 3.0 cm and

right margin is 2.1 cm. If there are colour illustrations either print the page in colour or make

the illustrations “black and white friendly”. You should also provide a soft copy.

                     0.3


                                γ = RB /R0
                     0.2




                     0.1
          Output V




                                  γ=5        γ = 10      γ = 20
                     0.0

                                                                                                  Maximum
                                                                                         γ
                                                                                                Nonlinearity (%)
                     -0.1
                                                                                        1            0.000
                                                                                        2            0.009
                     -0.2                                    γ=2                        5            0.011
                                                                                        10           0.036
                                                    γ=1                                 20           0.028
                     -0.3
                        -1.0        -0.8     -0.6     -0.4     -0.2      0.0     0.2      0.4      0.6     0.8     1.0
                                                                      Input kx
                               Fig. 4 Simulated Output of the single active sensor Wheatstone bridge – with
                                                  the proposed feedback compensation


                                                                                                                               3/5
2. Motivation

        Develop further on the background material provided in the introduction and bring the

state of art in the chosen area of research. Should clearly indicate the existing drawbacks and

why further research is required to eliminate the drawbacks. Emphasize, based on the current

status, the importance of the research problem identified. You can enumerate those technical

challenges one has to address to solve the problem(s) posed herein to place emphasis on the

quality of the research work. Maximum one page, preferably half a page be allotted to this

section.

3. Objective(s) and Scope

        State clearly the questions for which answers are sought through this research. Define

the conceptual, analytical, experimental and/or methodological boundaries within which the

exercise has been carried out. Maximum one page, preferably half a page can be allotted to

this section.

4. Description of the research work

        In this section, give brief, but sufficient details regarding (a) the research problem(s)

(b) the solution methodologies adopted or invented and brief details of simulation studies and

/ or experiments conducted. Provide interpretation of the results. You may have subsections

(4.1, 4.2 …) here. Restrict the sections to less than 10 pages.

5. Conclusions

        Highlight major (and not all) conclusions. Clearly bring out not only advantages

arising out of the work to be presented in the thesis but also give limitations of the work. If

there are no conclusions to be drawn, then enumerate the contributions of the work and

change the title of this section to Summary of the work. If you follow meticulously all the

instructions given herein you will realize a “good synopsis”. Please note if the synopsis is

written well, a prospective examiner will not hesitate to say “yes” to review the proposed


                                                                                             4/5
thesis. It is recommended that you write the synopsis after writing the thesis (at least the first

draft).

6. List of Publications based on the research work

          List the publications arising out of the research work. Give complete details. Use

IEEE format (vide reference section for examples). List only published or accepted papers.

You may include papers under review. Do not include “papers under preparation”. List

International Journal publications first, followed by National Journal articles, International

Conference articles and lastly articles presented in National Conferences. Patents arising out

of the work can be included here.

7. References

    List the references in the same order as they are referred to in the synopsis make sure all

references listed here are properly referred in the text. Restrict the number of references to

less than ten. Use IEEE format. The font for references should be times roman 10 with single

line spacing and paragraph formatting to be used is “hanging” with Justified. Examples are

given below. Please note that reference [1] is a book, [2] is a patent, [3] is a journal article,

[4] is an article published in a conference proceedings and [5] is a web page.

[1] E. O. Doebelin, “Measurement Systems – Application and Design”, 5th ed., McGraw-Hill, New York,
    2004.
[2] J. K. Gustafsson, “Analog-digital converter for a resistance bridge”, Patent U. S. 3960010, June 1, 1976.
[3] B. Wang, T. Kajita, T. Sun and G. C. Temes, “High-Accuracy Circuits for On-chip Capacitive Ratio
    Testing and Sensor Readout”, IEEE Trans. Instrum. & Meas., Feb. 1998, vol.47, no.1, pp. 16-20.
[4] V. J. Kumar, N. M. Mohan and V. G. K. Murti, “Digital Converter for Push-pull type Resistive
    Transducers”, Proc. IEEE IMTC 2005, Ottawa, Canada, May 17-19, 2005, pp.422-425.
[5] Data Sheet, PIC16F87XA, “28/40/44-Pin Enhanced Flash Microcontrollers”, Microchip Technology Inc.,
    2003. http://ww1.microchip.com/downloads/en/DeviceDoc/39582b.pdf


8. Proposed contents of the thesis

          In this section provide only the Chapter and Section titles of the proposed thesis.

Maximum one page only can be allotted for this section of the synopsis.




                                                                                                            5/5

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Synopsis format

  • 1. Synopsis of Standard Format for Preparing the Synopsis A Thesis to be submitted by Ph.D / M.S Student’s Name for the award of the degree of Doctor of Philosophy/Master of Science Department of Electrical Engineering Indian Institute of Technology Madras, India Month, Year
  • 2. 1. Introduction Outline, briefly, the technological / engineering / scientific relevance or significance of the research work to be reported in the thesis in this section. Introduction can at the best occupy one page, preferably one paragraph occupying half a page. Be precise and include only relevant background material in the introduction. Provide information on past works by way of giving appropriate references. For the cover page, the title of the synopsis must be the same as the title of the thesis. Use “times roman” 20 font, bold faced and centered paragraph style. For typing the name of the student and the name of the degree, use font size 14, bold faced type and centered paragraph style. For typing the department name, use 18 point size, bold faced and centered paragraph style. Use the correct emblem. Do not use an emblem with double circles! Use “times roman” font size 12, double line Source spacing and justified paragraph style for normal text. Every figure (diagram, table and graph too) must be embedded along with the Detector text and appear immediately after the first time the figure is Fig. 1 PPG sensor head referred to in the text. Each figure (diagram, table and graph) must be given a number and a proper title. Use IEEE notation (examples are given here). Each figure must be referred in the text. Make the figure legible and provide enough information so that the figure is “self contained”. Provide legible legends that correctly describe the axes of a graph. Fig. 1 is an example showing a photograph. Fig. 2 is an example showing a circuit schematic. Use SI 2 CF +VR A Clock D-flip-fop Digital LPF R1 Digital 1 S1 output 2 S2 R2 B OA voi y OC D Q -VR C 1 Differential Resistive Sensor Fig. 2 Proposed sigma-delta resistance to digital converter 2/5
  • 3. Table 1 Error in reconstructed PPG (a) for a chosen number of Fourier coefficients. No. of NRMSE Coefficients dB % 1 -17.60 13.19 2 -27.96 4.00 3 -33.89 2.02 4 -44.42 0.60 (b) 5 -44.59 0.59 6 -44.82 0.57 7 -45.85 0.51 8 -45.90 0.51 9 -45.96 0.50 10 -46.28 0.49 Fig. 3 (a) Sample PPG chosen.(b) PPG extracted with only the first 7 Fourier coefficients. symbols, units and notations. If more than one curve is presented in a graph make sure each one is correctly identified. You can use this document which is a word template to type in or format your synopsis. Fig. 3 is another example showing the depiction of a waveform. The example of a table is given in Table 1. Fig. 4 is an example of a graph. The synopsis can have at the maximum 16 pages, including the cover page and should be printed on both sides of the paper. The paper must be A4 size with the following margins: Top and bottom margins must be 2.4 cm each. Left margin should be 3.0 cm and right margin is 2.1 cm. If there are colour illustrations either print the page in colour or make the illustrations “black and white friendly”. You should also provide a soft copy. 0.3 γ = RB /R0 0.2 0.1 Output V γ=5 γ = 10 γ = 20 0.0 Maximum γ Nonlinearity (%) -0.1 1 0.000 2 0.009 -0.2 γ=2 5 0.011 10 0.036 γ=1 20 0.028 -0.3 -1.0 -0.8 -0.6 -0.4 -0.2 0.0 0.2 0.4 0.6 0.8 1.0 Input kx Fig. 4 Simulated Output of the single active sensor Wheatstone bridge – with the proposed feedback compensation 3/5
  • 4. 2. Motivation Develop further on the background material provided in the introduction and bring the state of art in the chosen area of research. Should clearly indicate the existing drawbacks and why further research is required to eliminate the drawbacks. Emphasize, based on the current status, the importance of the research problem identified. You can enumerate those technical challenges one has to address to solve the problem(s) posed herein to place emphasis on the quality of the research work. Maximum one page, preferably half a page be allotted to this section. 3. Objective(s) and Scope State clearly the questions for which answers are sought through this research. Define the conceptual, analytical, experimental and/or methodological boundaries within which the exercise has been carried out. Maximum one page, preferably half a page can be allotted to this section. 4. Description of the research work In this section, give brief, but sufficient details regarding (a) the research problem(s) (b) the solution methodologies adopted or invented and brief details of simulation studies and / or experiments conducted. Provide interpretation of the results. You may have subsections (4.1, 4.2 …) here. Restrict the sections to less than 10 pages. 5. Conclusions Highlight major (and not all) conclusions. Clearly bring out not only advantages arising out of the work to be presented in the thesis but also give limitations of the work. If there are no conclusions to be drawn, then enumerate the contributions of the work and change the title of this section to Summary of the work. If you follow meticulously all the instructions given herein you will realize a “good synopsis”. Please note if the synopsis is written well, a prospective examiner will not hesitate to say “yes” to review the proposed 4/5
  • 5. thesis. It is recommended that you write the synopsis after writing the thesis (at least the first draft). 6. List of Publications based on the research work List the publications arising out of the research work. Give complete details. Use IEEE format (vide reference section for examples). List only published or accepted papers. You may include papers under review. Do not include “papers under preparation”. List International Journal publications first, followed by National Journal articles, International Conference articles and lastly articles presented in National Conferences. Patents arising out of the work can be included here. 7. References List the references in the same order as they are referred to in the synopsis make sure all references listed here are properly referred in the text. Restrict the number of references to less than ten. Use IEEE format. The font for references should be times roman 10 with single line spacing and paragraph formatting to be used is “hanging” with Justified. Examples are given below. Please note that reference [1] is a book, [2] is a patent, [3] is a journal article, [4] is an article published in a conference proceedings and [5] is a web page. [1] E. O. Doebelin, “Measurement Systems – Application and Design”, 5th ed., McGraw-Hill, New York, 2004. [2] J. K. Gustafsson, “Analog-digital converter for a resistance bridge”, Patent U. S. 3960010, June 1, 1976. [3] B. Wang, T. Kajita, T. Sun and G. C. Temes, “High-Accuracy Circuits for On-chip Capacitive Ratio Testing and Sensor Readout”, IEEE Trans. Instrum. & Meas., Feb. 1998, vol.47, no.1, pp. 16-20. [4] V. J. Kumar, N. M. Mohan and V. G. K. Murti, “Digital Converter for Push-pull type Resistive Transducers”, Proc. IEEE IMTC 2005, Ottawa, Canada, May 17-19, 2005, pp.422-425. [5] Data Sheet, PIC16F87XA, “28/40/44-Pin Enhanced Flash Microcontrollers”, Microchip Technology Inc., 2003. http://ww1.microchip.com/downloads/en/DeviceDoc/39582b.pdf 8. Proposed contents of the thesis In this section provide only the Chapter and Section titles of the proposed thesis. Maximum one page only can be allotted for this section of the synopsis. 5/5