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首页> 外文期刊>Advances in Science, Technology and Engineering Systems >Three port converters used as interface in photovoltaic energy systems
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Three port converters used as interface in photovoltaic energy systems

机译:三端口转换器用作光伏能源系统的接口

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The aim of this paper is to derive and study a full-bridge three-port converter. Based on the standard design of full-bridge converter, we have modeled and derived a three port converter. The three port converter can be used in renewable energy scenarios, such as solar cells or wind turbines connected to the input port. The input can be taken from two-ports simultaneously or from one port at a time. In order to balance the power mismatch between the input port and load port, the batteries are attached to the third port, to ensure there are no discrepancies in the power generated at the input and power demand at the load. In order to ensure isolation and reduced voltage stress on the switches, a high frequency transformer is also used in the design. The overall design contains four switches, and four diodes. MOSFETs are the strongest candidate for the switches owing to their high switching speed, lower losses and high resistance to higher voltage. Moreover, a buck-boost structure is modeled in order to ensure that it can work for a wide variety of different applications by adjusting the duty cycle of the switches properly. To minimize the switching losses in the converter, Zero-Voltage Switching (ZVS) is also achievable in the modeled system.
机译:本文的目的是推导和研究全桥三端口转换器。基于全桥转换器的标准设计,我们对三端口转换器进行了建模和推导。三端口转换器可用于可再生能源场景,例如连接到输入端口的太阳能电池或风力涡轮机。输入可以同时从两个端口获取,也可以一次从一个端口获取。为了平衡输入端口和负载端口之间的功率不匹配,将电池连接到第三个端口,以确保输入端产生的功率与负载的需求功率之间没有差异。为了确保隔离并降低开关上的电压应力,设计中还使用了高频变压器。整体设计包含四个开关和四个二极管。由于MOSFET的高开关速度,较低的损耗以及对较高电压的高抵抗力,因此它们是开关的最强候选者。此外,对降压-升压结构进行了建模,以通过适当调整开关的占空比来确保它可以用于各种不同的应用。为了使转换器中的开关损耗最小,在建模系统中也可实现零电压开关(ZVS)。

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