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Smart Grid Communication Technologies
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作者 Dmitry Baimel saad tapuchi Nina Baimel 《Journal of Power and Energy Engineering》 2016年第8期1-8,共8页
The smart grid is a new generation of standard power distribution grid. The communication infrastructure is critical for the successful operation of the modern smart grids. The use of communication technologies ensure... The smart grid is a new generation of standard power distribution grid. The communication infrastructure is critical for the successful operation of the modern smart grids. The use of communication technologies ensures the reduction of energy consumption, optimal operation of the smart grid and coordination between all smart grids’ components from generation to the end users. This paper presents an overview of existing communication technologies such as ZigBee, WLAN, cellular communication, WiMAX, Power Line Communication (PLC), their implementation in smart grids, advantages and disadvantages. Moreover, the paper shows comparison of communication infrastructure between the legacy grid and the smart grid and smart grid communication standards. The paper also presents research challenges and future trends in communication systems for smart grid application. 展开更多
关键词 Smart Grid Communication Technologies Research Challenges
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New Improved Maximum Power Point Tracking Algorithm for Partially Shaded PV Systems 被引量:1
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作者 Dmitry Baimel saad tapuchi Nina Baimel 《Journal of Power and Energy Engineering》 2017年第9期55-63,共9页
The paper presents new MPPT algorithm for partial shading of series connected PV cells/modules. In the shaded condition, there is a problem of decrease in the total output power of the PV system. The proposed algorith... The paper presents new MPPT algorithm for partial shading of series connected PV cells/modules. In the shaded condition, there is a problem of decrease in the total output power of the PV system. The proposed algorithm aims to reduce this problem by active bypassing of the shaded cells. The algorithm senses the irradiance of each cell and performs calculation in order to decide if to actively bypass the shaded cell or not. Extensive simulation results proved that algorithm works and increases the output power under partial shading conditions. Furthermore, the algorithm becomes more efficient when the number of cells is increased. 展开更多
关键词 MPPT ALGORITHM PARTIAL SHADING Simulation
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A New Type of Capacitive Machine
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作者 Arie Shenkman saad tapuchi Dmitry Baimel 《Energy and Power Engineering》 2015年第2期31-40,共10页
The paper proposes a new type of the synchronous capacitive machine operated on a principle of the electric field effect. The proposed machine has smaller size and lighter weight than the standard electromagnetic sync... The paper proposes a new type of the synchronous capacitive machine operated on a principle of the electric field effect. The proposed machine has smaller size and lighter weight than the standard electromagnetic synchronous machines with the same rated parameters. Another important advantage is a simple structure of the machine, which simplifies the production process and reduces the costs of the motor. The paper also presents extensive simulation results of the proposed capacitive machine. The simulation results show that the proposed machine is able to reach the same power output as the electromagnetic machines. 展开更多
关键词 Capacitive MACHINE ELECTRIC FIELD TORQUE SYNCHRONOUS MACHINE
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Equal Switching Distribution Method for Multi-Level Cascaded Inverters
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作者 saad tapuchi Raul Rabinovici +2 位作者 Dmitry Baimel Nina Baimel Svetlana Bronstein 《Energy and Power Engineering》 2013年第9期560-569,共10页
The paper proposes a new method of equal switching distribution that can be applied to cascaded multi-level inverters. This method is based on the fact that in the cascaded multilevel inverters, the output phase volta... The paper proposes a new method of equal switching distribution that can be applied to cascaded multi-level inverters. This method is based on the fact that in the cascaded multilevel inverters, the output phase voltage is the sum of voltage waveforms produced by all cascaded cells. By periodically exchanging cells’ voltage waveforms, the proposed method ensures equal average switchings distribution between all cascaded cells. This method is applied to the 13-level inverter, which consists of three cascaded 5-level H-bridge cells per phase. However, the proposed method can be extended to any desired number of voltage levels and applied to any type of cascaded multi-level inverter. Extensive simulation results of the tested 13-level inverter with the equal switching distribution are presented. Moreover, the proposed method is compared to the standard control approaches and its advantages are shown. 展开更多
关键词 Switchings Cascaded INVERTER MULTI-LEVEL PWM
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