The Experts below are selected from a list of 54 Experts worldwide ranked by ideXlab platform
Atanu Banerjee - One of the best experts on this subject based on the ideXlab platform.
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A new approach for the stability analysis of high-frequency series resonant inverter-fitted induction heater
Ain Shams Engineering Journal, 2019Co-Authors: Kaushik Neogi, Moumita Sadhu, Niladri Das, Pradip Kumar Sadhu, Agamani Chakraborty, Ankur Ganguly, Atanu BanerjeeAbstract:Abstract This paper presents a new approach for the stability analysis of a high-frequency series resonant inverter (HFSRI) in induction heating system. Here the mathematical analysis of HFSRI is described and the stability analysis is obtained by using MATLAB. The analytical method likely gradient method is also used to get stability of high frequency series resonant inverter. So the stability of high-frequency series resonant inverter is obtained and compared between MATLAB simulation output and gradient method output. From this simulation analysis and analytical analysis, the required specifications can be gratified so the appropriate influence of Forward Path Gain and the feedback coefficient of the system are investigated. Hence, the system reliability of proposed topology is checked from the stability analysis of high frequency inverter circuit which is the heart of the induction heating system. More system stability indicates the higher reliability of the system.
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A new approach for the stability analysis of high-frequency series resonant inverter-fitted induction heater
Elsevier, 2019Co-Authors: Kaushik Neogi, Moumita Sadhu, Niladri Das, Pradip Kumar Sadhu, Agamani Chakraborty, Ankur Ganguly, Atanu BanerjeeAbstract:This paper presents a new approach for the stability analysis of a high-frequency series resonant inverter (HFSRI) in induction heating system. Here the mathematical analysis of HFSRI is described and the stability analysis is obtained by using MATLAB. The analytical method likely gradient method is also used to get stability of high frequency series resonant inverter. So the stability of high-frequency series resonant inverter is obtained and compared between MATLAB simulation output and gradient method output. From this simulation analysis and analytical analysis, the required specifications can be gratified so the appropriate influence of Forward Path Gain and the feedback coefficient of the system are investigated. Hence, the system reliability of proposed topology is checked from the stability analysis of high frequency inverter circuit which is the heart of the induction heating system. More system stability indicates the higher reliability of the system. Keywords: Induction heating, HFSRI, MATLAB, Gradient method, Stabilit
Kaushik Neogi - One of the best experts on this subject based on the ideXlab platform.
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A new approach for the stability analysis of high-frequency series resonant inverter-fitted induction heater
Ain Shams Engineering Journal, 2019Co-Authors: Kaushik Neogi, Moumita Sadhu, Niladri Das, Pradip Kumar Sadhu, Agamani Chakraborty, Ankur Ganguly, Atanu BanerjeeAbstract:Abstract This paper presents a new approach for the stability analysis of a high-frequency series resonant inverter (HFSRI) in induction heating system. Here the mathematical analysis of HFSRI is described and the stability analysis is obtained by using MATLAB. The analytical method likely gradient method is also used to get stability of high frequency series resonant inverter. So the stability of high-frequency series resonant inverter is obtained and compared between MATLAB simulation output and gradient method output. From this simulation analysis and analytical analysis, the required specifications can be gratified so the appropriate influence of Forward Path Gain and the feedback coefficient of the system are investigated. Hence, the system reliability of proposed topology is checked from the stability analysis of high frequency inverter circuit which is the heart of the induction heating system. More system stability indicates the higher reliability of the system.
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A new approach for the stability analysis of high-frequency series resonant inverter-fitted induction heater
Elsevier, 2019Co-Authors: Kaushik Neogi, Moumita Sadhu, Niladri Das, Pradip Kumar Sadhu, Agamani Chakraborty, Ankur Ganguly, Atanu BanerjeeAbstract:This paper presents a new approach for the stability analysis of a high-frequency series resonant inverter (HFSRI) in induction heating system. Here the mathematical analysis of HFSRI is described and the stability analysis is obtained by using MATLAB. The analytical method likely gradient method is also used to get stability of high frequency series resonant inverter. So the stability of high-frequency series resonant inverter is obtained and compared between MATLAB simulation output and gradient method output. From this simulation analysis and analytical analysis, the required specifications can be gratified so the appropriate influence of Forward Path Gain and the feedback coefficient of the system are investigated. Hence, the system reliability of proposed topology is checked from the stability analysis of high frequency inverter circuit which is the heart of the induction heating system. More system stability indicates the higher reliability of the system. Keywords: Induction heating, HFSRI, MATLAB, Gradient method, Stabilit
Niladri Das - One of the best experts on this subject based on the ideXlab platform.
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A new approach for the stability analysis of high-frequency series resonant inverter-fitted induction heater
Ain Shams Engineering Journal, 2019Co-Authors: Kaushik Neogi, Moumita Sadhu, Niladri Das, Pradip Kumar Sadhu, Agamani Chakraborty, Ankur Ganguly, Atanu BanerjeeAbstract:Abstract This paper presents a new approach for the stability analysis of a high-frequency series resonant inverter (HFSRI) in induction heating system. Here the mathematical analysis of HFSRI is described and the stability analysis is obtained by using MATLAB. The analytical method likely gradient method is also used to get stability of high frequency series resonant inverter. So the stability of high-frequency series resonant inverter is obtained and compared between MATLAB simulation output and gradient method output. From this simulation analysis and analytical analysis, the required specifications can be gratified so the appropriate influence of Forward Path Gain and the feedback coefficient of the system are investigated. Hence, the system reliability of proposed topology is checked from the stability analysis of high frequency inverter circuit which is the heart of the induction heating system. More system stability indicates the higher reliability of the system.
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A new approach for the stability analysis of high-frequency series resonant inverter-fitted induction heater
Elsevier, 2019Co-Authors: Kaushik Neogi, Moumita Sadhu, Niladri Das, Pradip Kumar Sadhu, Agamani Chakraborty, Ankur Ganguly, Atanu BanerjeeAbstract:This paper presents a new approach for the stability analysis of a high-frequency series resonant inverter (HFSRI) in induction heating system. Here the mathematical analysis of HFSRI is described and the stability analysis is obtained by using MATLAB. The analytical method likely gradient method is also used to get stability of high frequency series resonant inverter. So the stability of high-frequency series resonant inverter is obtained and compared between MATLAB simulation output and gradient method output. From this simulation analysis and analytical analysis, the required specifications can be gratified so the appropriate influence of Forward Path Gain and the feedback coefficient of the system are investigated. Hence, the system reliability of proposed topology is checked from the stability analysis of high frequency inverter circuit which is the heart of the induction heating system. More system stability indicates the higher reliability of the system. Keywords: Induction heating, HFSRI, MATLAB, Gradient method, Stabilit
Ankur Ganguly - One of the best experts on this subject based on the ideXlab platform.
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A new approach for the stability analysis of high-frequency series resonant inverter-fitted induction heater
Ain Shams Engineering Journal, 2019Co-Authors: Kaushik Neogi, Moumita Sadhu, Niladri Das, Pradip Kumar Sadhu, Agamani Chakraborty, Ankur Ganguly, Atanu BanerjeeAbstract:Abstract This paper presents a new approach for the stability analysis of a high-frequency series resonant inverter (HFSRI) in induction heating system. Here the mathematical analysis of HFSRI is described and the stability analysis is obtained by using MATLAB. The analytical method likely gradient method is also used to get stability of high frequency series resonant inverter. So the stability of high-frequency series resonant inverter is obtained and compared between MATLAB simulation output and gradient method output. From this simulation analysis and analytical analysis, the required specifications can be gratified so the appropriate influence of Forward Path Gain and the feedback coefficient of the system are investigated. Hence, the system reliability of proposed topology is checked from the stability analysis of high frequency inverter circuit which is the heart of the induction heating system. More system stability indicates the higher reliability of the system.
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A new approach for the stability analysis of high-frequency series resonant inverter-fitted induction heater
Elsevier, 2019Co-Authors: Kaushik Neogi, Moumita Sadhu, Niladri Das, Pradip Kumar Sadhu, Agamani Chakraborty, Ankur Ganguly, Atanu BanerjeeAbstract:This paper presents a new approach for the stability analysis of a high-frequency series resonant inverter (HFSRI) in induction heating system. Here the mathematical analysis of HFSRI is described and the stability analysis is obtained by using MATLAB. The analytical method likely gradient method is also used to get stability of high frequency series resonant inverter. So the stability of high-frequency series resonant inverter is obtained and compared between MATLAB simulation output and gradient method output. From this simulation analysis and analytical analysis, the required specifications can be gratified so the appropriate influence of Forward Path Gain and the feedback coefficient of the system are investigated. Hence, the system reliability of proposed topology is checked from the stability analysis of high frequency inverter circuit which is the heart of the induction heating system. More system stability indicates the higher reliability of the system. Keywords: Induction heating, HFSRI, MATLAB, Gradient method, Stabilit
Agamani Chakraborty - One of the best experts on this subject based on the ideXlab platform.
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A new approach for the stability analysis of high-frequency series resonant inverter-fitted induction heater
Ain Shams Engineering Journal, 2019Co-Authors: Kaushik Neogi, Moumita Sadhu, Niladri Das, Pradip Kumar Sadhu, Agamani Chakraborty, Ankur Ganguly, Atanu BanerjeeAbstract:Abstract This paper presents a new approach for the stability analysis of a high-frequency series resonant inverter (HFSRI) in induction heating system. Here the mathematical analysis of HFSRI is described and the stability analysis is obtained by using MATLAB. The analytical method likely gradient method is also used to get stability of high frequency series resonant inverter. So the stability of high-frequency series resonant inverter is obtained and compared between MATLAB simulation output and gradient method output. From this simulation analysis and analytical analysis, the required specifications can be gratified so the appropriate influence of Forward Path Gain and the feedback coefficient of the system are investigated. Hence, the system reliability of proposed topology is checked from the stability analysis of high frequency inverter circuit which is the heart of the induction heating system. More system stability indicates the higher reliability of the system.
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A new approach for the stability analysis of high-frequency series resonant inverter-fitted induction heater
Elsevier, 2019Co-Authors: Kaushik Neogi, Moumita Sadhu, Niladri Das, Pradip Kumar Sadhu, Agamani Chakraborty, Ankur Ganguly, Atanu BanerjeeAbstract:This paper presents a new approach for the stability analysis of a high-frequency series resonant inverter (HFSRI) in induction heating system. Here the mathematical analysis of HFSRI is described and the stability analysis is obtained by using MATLAB. The analytical method likely gradient method is also used to get stability of high frequency series resonant inverter. So the stability of high-frequency series resonant inverter is obtained and compared between MATLAB simulation output and gradient method output. From this simulation analysis and analytical analysis, the required specifications can be gratified so the appropriate influence of Forward Path Gain and the feedback coefficient of the system are investigated. Hence, the system reliability of proposed topology is checked from the stability analysis of high frequency inverter circuit which is the heart of the induction heating system. More system stability indicates the higher reliability of the system. Keywords: Induction heating, HFSRI, MATLAB, Gradient method, Stabilit