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Manoharan, N.
- The High Efficiency Renewable PV Inverter Topology
Abstract Views :210 |
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Authors
Affiliations
1 EEE, AMET University, Kanathur, Chennai, 603112, IN
2 TEJAS Research Centre of Excellence, AMET University, Chennai, 603112, IN
3 AMET University, Chennai, 603112, IN
4 Department of ECE, Bharath University, Chennai, IN
1 EEE, AMET University, Kanathur, Chennai, 603112, IN
2 TEJAS Research Centre of Excellence, AMET University, Chennai, 603112, IN
3 AMET University, Chennai, 603112, IN
4 Department of ECE, Bharath University, Chennai, IN
Source
Indian Journal of Science and Technology, Vol 8, No 14 (2015), Pagination:Abstract
The recent trend in photovoltaic inverter is to use topologies with the absence of transformers to acquire higher efficiency. This gives very low ground leakage current. After the elimination of transformer in a grid/Load connected Photovoltaic (PV) system, a galvanic connection exists between the grid/Load and the PV array. The different inverter topology that generates no varying common-mode voltage is proposed to avoid leakage currents, this proposes a new topology with six switches and two diodes that generates no varying common-mode voltage and exhibits high efficiencyKeywords
Ground Leakage Current, H-Bridge, Photovoltaic Inverter, Transformer Less Topology- Design and Analysis of an Effective Channel Distribution Approach for Agricultural Commodities using MongoDB
Abstract Views :169 |
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Authors
Affiliations
1 School of Computer Science and Engineering, VIT University, Vellore – 632014, Tamil Nadu, IN
2 Computer Science, P. A. College, Manomaniam Sundaranar University, Tirunelveli – 627012, Tamil Nadu, IN
1 School of Computer Science and Engineering, VIT University, Vellore – 632014, Tamil Nadu, IN
2 Computer Science, P. A. College, Manomaniam Sundaranar University, Tirunelveli – 627012, Tamil Nadu, IN
Source
Indian Journal of Science and Technology, Vol 9, No 47 (2016), Pagination:Abstract
Objectives The farmers are getting far less cost for their farming products since they didn’t know where to offer for the best cost. This issue could be settled by this paper. Methods/Statistical Analysis: We worked with Historical Data of various agricultural commodities production, demands and pricing at different locations using MongoDB, a NoSQL database tool. A Module where the Buyers of Agricultural Commodities would enter their need and the costs they offer, for commodities. Demand qualities and Current Price datasets are created. The calculations for each of the Farmer Module and Buyer Module were composed and executed to satisfy the point of guaranteeing that the farmers can offer his wares at the ideal cost. Findings: Making a Module, where the Buyers of Agricultural Commodities would enter their need and the costs they will offer, store these points of interest and in light of these subtle elements, Demand qualities, and Current Price datasets are created. Farmer modules were created with the available agricultural commodities and their cost, a location of availability. The calculations for each of the Farmer Module and Buyer Module were composed and executed effectively. The calculations were tried for different situations and the normal results were figured it out. Examine the information and the farmer’s need (i.e) estimation called as horticulture yield investigation, and in this way discover the different valuable examples and making sense of the best methodologies at the agriculturists to cost and offer their yields in various locales at various times of the year. To satisfy the point of guaranteeing that the rancher can offer his wares at the most ideal cost. Applications/Improvements: This application could be moved to the cloud with MongoDB server and the farmers and purchasers will be given a separate login id. Total system may be available in web.Keywords
Agriculture Business, Agricultural Commodities, Big Data, NoSQL, MongoDB.- Load Frequency Control of Nonlinear Power System Employing Firefly Algorithm
Abstract Views :188 |
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Authors
Affiliations
1 Department of Electrical Engineering, Sathyabama University, Chennai – 600119, Tamil Nadu, IN
2 Department of Electrical Engineering, SRM University, Chennai – 603203, Tamil Nadu, IN
1 Department of Electrical Engineering, Sathyabama University, Chennai – 600119, Tamil Nadu, IN
2 Department of Electrical Engineering, SRM University, Chennai – 603203, Tamil Nadu, IN