A New Approach for Modeling the System Dynamics

§ National Institute of Technology Calicut National Institute of Technology Calicut

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A New Approach for Modeling the System Dynamics

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Abstract

This paper addresses the development of an average value based model for the processing system. The continuous observation of that process variable, fixation of its average value on real time basis, mathematical model development of above average value as base factor are the basic steps of this method, which subsequently leads to time based dynamics. The validation of the models developed by this method is done through experiments. The method is tested by taking two types of systems: one a biological system and second an electrical distribution system. The process variables selected are the angular displacement for biological system and rms value of current for electrical systems. The simulated results of the model agree with that of experimental reading in both cases within tolerable limits.

References

10 Cites in Article
  1. E Ortjohann,W Sinsukthavorn,A Mohd,N Hamsic,A Schmelter,D Morton (2007). Modeling/Simulation of Power Distribution in Hybrid Power Systems Using Dynamic-RMS Technique.
  2. Hengchen Junqiu,Adly Girgis (1993). Dynamic Modeling and Parameter Estimation of a radial and Loop type Distribution system network.
  3. Robert Keefe,Richard Schaulz,B Navin,Bhatt Improved Representation of generator and Load dynamics in the study of voltage limited power Exoskeleton for Enhancing Strength and Endurance During Walking.
  4. T Hayashi,H Kawamoto,Y Sankai (2005). Control method of robot suit HAL working as operator's muscle using biological and dynamical information.
  5. K Yamamoto,M Ishii,H Noborisaka,K Hyodo (2004). Stand alone wearable power assisting suit - sensing and control systems.
  6. Jin,Zhang,Rencheng Ho Dimo,Jincuan Wang,Zhang (2003). Kinematic and dynamic performance of prosthetic knee joint using six-bar mechanism.
  7. Takahiko Nakamura,Kazunari Saito,Zhidong Wang,Kazuhiro Kosuge (2005). Realizing a Posture-Based Wearable Antigravity Muscles Support System for Lower Extremities.
  8. T Nakamura,K Saito,Zhidong Wang,K Kosuge (2005). Control of model-based wearable anti-gravity muscles support system for standing up motion.
  9. Sai Sunil K Agarwal,Abbas Banala,Fattah,P John,Vijaya Scholz,Krishnamoorthy A Gravity Balancing Passive Exoskeleton for the Human Leg.
  10. Akrod Unknown Title.

Funding

No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

Ethical Approval

No ethics committee approval was required for this article type.

Data Availability

Not applicable for this article.

How to Cite This Article

T.S.Sirish, Sujalakshmy .V, Dr.K.S.Sivanandan. 1970. "A New Approach for Modeling the System Dynamics". Global Journal of Research in Engineering - F: Electrical & Electronic GJRE-F Volume 12 (GJRE Volume 12 Issue F1).

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Journal Specifications

Crossref Journal DOI 10.17406/gjre

Print ISSN 0975-5861

e-ISSN 2249-4596

Keywords
Classification
GJRE-F Classification FOR Code: 090699
Version of record

v1.2

Language
English
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A New Approach for Modeling the System Dynamics

T.S.Sirish
T.S.Sirish National Institute of Technology Calicut
Sujalakshmy .V
Sujalakshmy .V
Dr.K.S.Sivanandan
Dr.K.S.Sivanandan