The Experts below are selected from a list of 315 Experts worldwide ranked by ideXlab platform
P Chandrasekar - One of the best experts on this subject based on the ideXlab platform.
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renewable Energy Source water pumping systems a literature review
Renewable & Sustainable Energy Reviews, 2013Co-Authors: C Gopal, M Mohanraj, P Chandramohan, P ChandrasekarAbstract:The research developments with renewable Energy Source water pumping systems (RESWPSs) are reviewed in this paper. The reported investigations are categorized into five major groups as follows: (i) solar photovoltaic water pumping systems (SPWPSs), (ii) solar thermal water pumping systems (STWPSs), (iii) wind Energy water pumping systems (WEWPSs), (iv) biomass water pumping systems (BWPSs) and (v) hybrid renewable Energy water pumping systems (HREWPSs). More than a hundred published articles related to RESWPSs are briefly reviewed. Additionally, the limitations with RESWPSs and further research needs are described. This paper concludes that renewable Energy Sources (RESs) play a vital role in reducing the consumption of conventional Energy Sources and its environmental impacts for water pumping applications.
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Renewable Energy Source water pumping systems—A literature review
Renewable and Sustainable Energy Reviews, 2013Co-Authors: C Gopal, M Mohanraj, P Chandramohan, P ChandrasekarAbstract:The research developments with renewable Energy Source water pumping systems (RESWPSs) are reviewed in this paper. The reported investigations are categorized into five major groups as follows: (i) solar photovoltaic water pumping systems (SPWPSs), (ii) solar thermal water pumping systems (STWPSs), (iii) wind Energy water pumping systems (WEWPSs), (iv) biomass water pumping systems (BWPSs) and (v) hybrid renewable Energy water pumping systems (HREWPSs). More than a hundred published articles related to RESWPSs are briefly reviewed. Additionally, the limitations with RESWPSs and further research needs are described. This paper concludes that renewable Energy Sources (RESs) play a vital role in reducing the consumption of conventional Energy Sources and its environmental impacts for water pumping applications.
C Gopal - One of the best experts on this subject based on the ideXlab platform.
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renewable Energy Source water pumping systems a literature review
Renewable & Sustainable Energy Reviews, 2013Co-Authors: C Gopal, M Mohanraj, P Chandramohan, P ChandrasekarAbstract:The research developments with renewable Energy Source water pumping systems (RESWPSs) are reviewed in this paper. The reported investigations are categorized into five major groups as follows: (i) solar photovoltaic water pumping systems (SPWPSs), (ii) solar thermal water pumping systems (STWPSs), (iii) wind Energy water pumping systems (WEWPSs), (iv) biomass water pumping systems (BWPSs) and (v) hybrid renewable Energy water pumping systems (HREWPSs). More than a hundred published articles related to RESWPSs are briefly reviewed. Additionally, the limitations with RESWPSs and further research needs are described. This paper concludes that renewable Energy Sources (RESs) play a vital role in reducing the consumption of conventional Energy Sources and its environmental impacts for water pumping applications.
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Renewable Energy Source water pumping systems—A literature review
Renewable and Sustainable Energy Reviews, 2013Co-Authors: C Gopal, M Mohanraj, P Chandramohan, P ChandrasekarAbstract:The research developments with renewable Energy Source water pumping systems (RESWPSs) are reviewed in this paper. The reported investigations are categorized into five major groups as follows: (i) solar photovoltaic water pumping systems (SPWPSs), (ii) solar thermal water pumping systems (STWPSs), (iii) wind Energy water pumping systems (WEWPSs), (iv) biomass water pumping systems (BWPSs) and (v) hybrid renewable Energy water pumping systems (HREWPSs). More than a hundred published articles related to RESWPSs are briefly reviewed. Additionally, the limitations with RESWPSs and further research needs are described. This paper concludes that renewable Energy Sources (RESs) play a vital role in reducing the consumption of conventional Energy Sources and its environmental impacts for water pumping applications.
P Chandramohan - One of the best experts on this subject based on the ideXlab platform.
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renewable Energy Source water pumping systems a literature review
Renewable & Sustainable Energy Reviews, 2013Co-Authors: C Gopal, M Mohanraj, P Chandramohan, P ChandrasekarAbstract:The research developments with renewable Energy Source water pumping systems (RESWPSs) are reviewed in this paper. The reported investigations are categorized into five major groups as follows: (i) solar photovoltaic water pumping systems (SPWPSs), (ii) solar thermal water pumping systems (STWPSs), (iii) wind Energy water pumping systems (WEWPSs), (iv) biomass water pumping systems (BWPSs) and (v) hybrid renewable Energy water pumping systems (HREWPSs). More than a hundred published articles related to RESWPSs are briefly reviewed. Additionally, the limitations with RESWPSs and further research needs are described. This paper concludes that renewable Energy Sources (RESs) play a vital role in reducing the consumption of conventional Energy Sources and its environmental impacts for water pumping applications.
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Renewable Energy Source water pumping systems—A literature review
Renewable and Sustainable Energy Reviews, 2013Co-Authors: C Gopal, M Mohanraj, P Chandramohan, P ChandrasekarAbstract:The research developments with renewable Energy Source water pumping systems (RESWPSs) are reviewed in this paper. The reported investigations are categorized into five major groups as follows: (i) solar photovoltaic water pumping systems (SPWPSs), (ii) solar thermal water pumping systems (STWPSs), (iii) wind Energy water pumping systems (WEWPSs), (iv) biomass water pumping systems (BWPSs) and (v) hybrid renewable Energy water pumping systems (HREWPSs). More than a hundred published articles related to RESWPSs are briefly reviewed. Additionally, the limitations with RESWPSs and further research needs are described. This paper concludes that renewable Energy Sources (RESs) play a vital role in reducing the consumption of conventional Energy Sources and its environmental impacts for water pumping applications.
M Mohanraj - One of the best experts on this subject based on the ideXlab platform.
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renewable Energy Source water pumping systems a literature review
Renewable & Sustainable Energy Reviews, 2013Co-Authors: C Gopal, M Mohanraj, P Chandramohan, P ChandrasekarAbstract:The research developments with renewable Energy Source water pumping systems (RESWPSs) are reviewed in this paper. The reported investigations are categorized into five major groups as follows: (i) solar photovoltaic water pumping systems (SPWPSs), (ii) solar thermal water pumping systems (STWPSs), (iii) wind Energy water pumping systems (WEWPSs), (iv) biomass water pumping systems (BWPSs) and (v) hybrid renewable Energy water pumping systems (HREWPSs). More than a hundred published articles related to RESWPSs are briefly reviewed. Additionally, the limitations with RESWPSs and further research needs are described. This paper concludes that renewable Energy Sources (RESs) play a vital role in reducing the consumption of conventional Energy Sources and its environmental impacts for water pumping applications.
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Renewable Energy Source water pumping systems—A literature review
Renewable and Sustainable Energy Reviews, 2013Co-Authors: C Gopal, M Mohanraj, P Chandramohan, P ChandrasekarAbstract:The research developments with renewable Energy Source water pumping systems (RESWPSs) are reviewed in this paper. The reported investigations are categorized into five major groups as follows: (i) solar photovoltaic water pumping systems (SPWPSs), (ii) solar thermal water pumping systems (STWPSs), (iii) wind Energy water pumping systems (WEWPSs), (iv) biomass water pumping systems (BWPSs) and (v) hybrid renewable Energy water pumping systems (HREWPSs). More than a hundred published articles related to RESWPSs are briefly reviewed. Additionally, the limitations with RESWPSs and further research needs are described. This paper concludes that renewable Energy Sources (RESs) play a vital role in reducing the consumption of conventional Energy Sources and its environmental impacts for water pumping applications.
Alon Kuperman - One of the best experts on this subject based on the ideXlab platform.
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dc active power filter based hybrid Energy Source for pulsed power loads
IEEE Journal of Emerging and Selected Topics in Power Electronics, 2015Co-Authors: V Yuhimenko, Chaim Lerman, Alon KupermanAbstract:In this paper, design of a capacitor semiactive hybrid Source for powering pulsed power loads based on dc power filter principle is presented. The system consists of an Energy Source connected directly to a load, supported by a bidirectional buck–boost dc–dc converter interfaced supercapacitor (SC). The converter is controlled such that the SC supplies the dynamic component of the load power, leaving the Energy Source to supply a near-constant power to satisfy average load demand. The control algorithm is adopted from the power filter theory, allowing to reduce the stress of an Energy rich Source despite operating under a high-power demanding load. Moreover, the SC-load voltage matching is not required and the control algorithm does not require load current sensing. Instead, Energy Source current of a much lower amplitude is necessary. The SC sizing methodology is proposed, and topology issues aiming to minimize the SC are discussed as well. Compared with a passive hybrid, the proposed system utilizes much lower capacitance at the expense of additional power electronics. Experimental results are presented to demonstrate the feasibility of the approach.
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design of a semiactive battery ultracapacitor hybrid Energy Source
IEEE Transactions on Power Electronics, 2013Co-Authors: Alon Kuperman, Ilan Aharon, S Malki, A KaraAbstract:Design of a battery-ultracapacitor semiactive hybrid for powering pulsed current loads is presented in this paper. The semiactive hybrid Energy Source consists of an ultracapacitor assisted Li-Ion battery, connected to the load via a dc-dc converter. The system is controlled such that the battery is supplying a near-constant current to satisfy the average load demand while the ultracapacitor supplies the dynamic component of the load current. The control algorithm is based on a well-known capacitance-emulating approach. As a result, a high-Energy battery can be used despite the high-power load demand spikes. In addition, the battery-load voltage matching is not required and the control algorithm does not require load current sensing. It is shown that the proposed system performance is equivalent to the performance of a passive hybrid, employing a very high nonfeasible capacitance. Moreover, it is revealed that the battery current is independent of the capacitor size, which affects the load voltage ripple only. Extended simulation and experimental results are presented to demonstrate the feasibility of the approach.