Optimization and Estimation of Transfer Function Model of Milk Evaporation Process
Vijaya N. Aher1, Ganesh S. Sable2, Minakshi R. Rajput3

1Vijaya N. Aher*, Department of Electronics and Telecommunication, Maharashtra Institute of Technology, Aurangabad (MH), India.
2Ganesh S. Sable, Department of Electronics and Telecommunication, Maharashtra Institute of Technology, Aurangabad (MH), India.
3Minakshi R. Rajput, Department of Electronics and Telecommunication, P.E.S. College of Engineering, Aurangabad (MH), India. 

Manuscript received on June 10 2021. | Revised Manuscript received on June 14, 2021. | Manuscript published on June 30, 2021. | PP: 308-314 | Volume-10 Issue-5, June 2021. | Retrieval Number: 100.1/ijeat.E28000610521 | DOI: 10.35940/ijeat.E2800.0610521
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Abstract: Development of Mathematical model has significant role in many applications such as estimation of relations between input and output variables. The relations can be deterministic or behavioral. From the point of view of control actions to be estimated for a particular application, behavioral model is considered to be of utmost importance. This also amounts the prediction of process behavior in time, frequency and complex domains. Here in this paper, attempts have been made to develop behavioral model of milk evaporation used in dairy industry which is of prominent importance in India because of its agriculture based economy. Besides India, there are also many milk producing countries in the world and their economy is dependent on milk producing animals. It is also imperative that excess milk production to be converted in its preservable form and evaporated milk has special significance in this context. The Milk evaporation is a complex process and its output control variables depend on many of its input manipulation variables. Because of its complex nature and many variables involved in it poses a challenge real life MIMO problem. In this paper, MIMO model of Milk evaporation model is estimated and described. 
Keywords: Milk Evaporation, Mathematical Modeling, Deterministic Modeling, Behavioral Modeling, Transfer function, Process Dynamics, Material Balance, Energy Balance, Process Behavior.