This work is pivoted on the implementation of Monte Carlo simulation technique in the thermal decomposition of biomass. Evaluation of kinetic parameters and their effect on the biomass pyrolysis is investigated through proposed integral scheme. Activation energy modeling relies upon the pairing of random points generated through the MATLAB program. The numerical solution of the multireaction model is based on the ratio of numbers of pair points (x i , y i ) and the points (i) generated. Thermoanalytical data of chir pine waste are obtained at different heating rates of 5, 10, and 15 °C min −1 . The scheme involves the inverse formulation of kinetic model; thus, the kinetic parameters can be more precisely computed than the hit-and trail-methodologies. Rather than speculating the behavior through regression analysis, the experimental thermogravimetric plane provides more correct information. So, the conversion of biomass is converted into the area of curve bounded by the experimental data. For experimental purpose, nitrogen is employed as the purge gas to sterilize the furnace at the volumetric rate of 200 mL min −1 . The relevant regime of temperature follows a non-isothermal profile for temperature range of 300−900 K.
The unwanted data obtained through the medical image fusion is the main problem in biomedical applications, guided-image surgical and radiology. The Stationary Wavelet Transform (SWT) denoted the various advantages over conventional representation of imaging approach. In this research article we introduced innovative multi-modality fusion technique for medical image fusion based upon the SWT. In our approach it disintegrates of source images into approximation layers (coarse layer) and detail layers through the Stationary Wavelet Transform scheme, then applying of the Fuzzy Local Information C-means Clustering (FLICM) and Local contrast fusion approach to overcome the blurring effect, sensitiveness and conserve the quality evaluation in the distinguish layers. The demonstration shows that it preserves more detailed information in the source images and it enhances the more quality features and edge preserved of the final fused image obtained through the reconstruction procedure by recursive initial steps. The different methodologies with other techniques to evaluate performance such as mutual information, edge based similarity and blind image quality. This shows that in both the objective and subjective analysis our methodology results attained more supercilious performance.
Examination is important of examining the quality of a candidate's knowledge at each phase. It test the expertise and skills of the students in any area. Hence, conducting exam at each phase may lead to some issues such as time and other resources while creating the test papers not automatically .So a computing method make the problem simpler which generates question paper automatically. Question paper generator system is implemented by considering these problems , by which paper can be generated easily . The method is based on the concept of fuzzy logic which helps in generating question paper each time with user defined complexity phase. Paper can be generated at any time. We have make use of random function so that unique paper get generated every time. Security is also maintained using MYSQL tool.
The global energy consumption is still rising and the demand to increase the power capacity for the production, distribution. The power electronics has main role in last decades. There will be incredible applications of power electronics in the area of the industrial, residential, commercial, transportation, aeronautics, military and electric utility systems. Power electronics will have increasing impact not only in global industrial automation and high efficiency energy systems, but also on energy conservation, renewable energy systems, and electric vehicles. In this paper we will discuss global energy resources, power electronics-based drives & renewable energy resources, and their consumption. The importance of power electronics in energy efficiency improvement, renewable energy systems, electric vehicles and energy storage will be discussed. The Characteristics of power electronics interface is subject to requirements related not only to the renewable energy source itself but also to its effects on the power-system operation, especially where the intermittent energy source constitutes a significant part of the total system capacity It will then review several applications before concluding. Keywords: Power Electronics, Global Energy Resources, Energy Consumption, Energy Storage. I.INTRODUCTION The increasing number of renewable energy sources and power electronics-based technologies using power devices to convert efficiently electric power into the optimum characteristics. To improving the energy efficiency and performance of various equipment, power electronics contributes to the realization of both a prosperous and comfortable way of life and a sustainable society [1]. It is an emerging technology is multidisciplinary in its nature and the design and analysis of power electronics circuits include the applications of circuit theory, electronics, control theory, electromagnetics, semiconductor devices, microprocessors, numerical methods, signal processing, computer simulation, heat transfer, electromagnetic compatibility, and artificial intelligence. In classical power systems, large power generation plants produce most of the power, which is then transferred towards large consumption centers over long distance transmission lines. The system control centers monitor and regulate the power system continuously to ensure the quality of the power, namely frequency and voltage. However, now the overall power system is changing, many dispersed generation (DG) units, including both renewable and non-renewable sources such as wind turbines, wave generators, photovoltaic (PV) generators, small hydro, fuel cells and gas/steam powered Combined Heat and Power (CHP) stations, are being developed [2], [3] and installed. Energy is a critical need in every human endeavor. The capabilities and flexibility of modern electronics must be brought to bear to meet the challenges of reliable, efficient energy. It is essential to consider how electronic circuits and systems can be applied to the challenges of energy convers...
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