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The nature of building perimeters has more structural significance in tall buildings than in any other building type due to their very tallness, which means greater vulnerability to lateral forces, especially wind loads. Thus, it is quite desirable to concentrate as much lateral load resisting system components as possible on the perimeter of tall buildings to increase their structural depth, and, in turn, their resistance to lateral loads. One of the most typical exterior structures is the diagrid structures which provides both bending and shear rigidity. This paper presents a review on Seismic Behavior for High Rise Structure with Inclined Intersecting Members.
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Pawar Balkrishna Rameshwar, Dr. C.P. Pise and Prof. G. D. Lakade. "A Review of Seismic Behaviour for High Rise Structure with Inclined Intersecting Members." International Journal for Scientific Research and Development 8.10 (2020): 490-496.
This paper aims to give a general description of the basic features of a three phase to three phase matrix converter in terms of performance and of technological issues. This paper does not require to the reader a special knowledge of the matrix converter technology. It is worth noting that the three phase to three phase configuration is just one of the possible direct AC-AC converter topologies [1], which are not in the scope of the present report.
Aqhil Ahmed Mohamad, Prof. Sanjay Gothwal and Prof. Sanjay Jain. "Simulation of Three-Phase Matrix Converter." International Journal for Scientific Research and Development 8.10 (2020): 497-500.
In the last few years the wind power generation has been increased significantly. Due to development in renewable energy technologies and continued rise in prices of petroleum products hybrid renewable energy systems are gaining more importance for supplying the power to meet the today’s increasing energy demands either as a stand-alone system or as a grid connected system. In this work a model of stand-alone connected hybrid system consists of wind and solar photovoltaic cell system is studied and implemented in MATLAB/SIMULINK. The proposed system consists of a wind turbine, induction generator, a PV solar cell array, boost converter, an inverter and a battery storage system. A simple control technique has been proposed to track the operating point at which maximum power can be coerced from the solar/wind system under continuously changing environmental conditions. A relative study of hybrid model PV/wind system has been made.
Arvind Kumar Pal and Dr. Dolly Thankachan. "Standalone Hybrid Wind and Solar Photovoltaic Cell Power Generation." International Journal for Scientific Research and Development 8.10 (2020): 501-506.
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