首页> 外文会议>UKSim-AMSS International Conference on Computer Modelling and Simulation >Simulation of a New Proposed Voltage-Base Self-Intervention Technique with Increment and Decrement Voltage Conduction Method to Optimize the Renewable Energy Sources DC Output
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Simulation of a New Proposed Voltage-Base Self-Intervention Technique with Increment and Decrement Voltage Conduction Method to Optimize the Renewable Energy Sources DC Output

机译:提出了一种新的基于电压的自干预技术,该方法采用递增和递减电压传导方法来优化可再生能源的直流输出

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A simple Voltage-Base Self-Intervention technique is introduced in this paper to perform the switching between the connected distributed generation renewable energy sources. The Voltage-Base Self-Intervention technique fetch maximum power from either the solar photovoltaic or wind energy systems under inhomogeneous climate conditions and output stable voltage for DC -- AC inverter and DC -- DC Boost Converter. In order to fetch the maximum power, the proposed Voltage-Base Self-Intervention technique is composed with the voltage quantification and the increment and decrement hierarchical voltage management and control strategy algorithm. The voltage quantification and the increment and decrement hierarchical voltage management and control strategy algorithm is developed to ensure the DC bus voltage from the solar and wind renewable energy sources can be measured efficiently and effectively during the voltage conduction to perform the Voltage -- Base Self - Intervention. To validate the performances of the proposed Voltage-Base Self-Intervention technique for solar -- wind renewable energy sources, PROTEUS simulations are presented in this paper. Simulation results shows that the proposed technique effectively perform the Voltage -- Base Self -- Intervention between the distributed generations solar -- wind renewable energy sources during the voltage conduction.
机译:本文介绍了一种简单的基于电压的自我干预技术,以在连接的分布式发电可再生能源之间进行切换。基于电压的自我干预技术可在不均匀的气候条件下从太阳能光伏或风能系统获取最大功率,并为DC-AC逆变器和DC-DC Boost转换器输出稳定的电压。为了获取最大功率,提出的基于电压的自干预技术由电压量化,增量和减量分层电压管理和控制策略算法组成。开发了电压量化和增量和递减分层电压管理和控制策略算法,以确保在电压传导过程中能有效地测量来自太阳能和风能可再生能源的直流母线电压,从而进行电压-基自调整。干涉。为了验证所提出的用于太阳能-风能可再生能源的基于电压的自我干预技术的性能,本文提供了PROTEUS模拟。仿真结果表明,所提出的技术在电压传导过程中有效地实现了分布式发电太阳能风能可再生能源之间的电压基础自干预。

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