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Dynamic modeling of DC nanogrid local branch using enhanced PV and third order battery models

机译:使用增强型PV和三阶电池模型对DC纳米网格本地分支进行动态建模

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Distributed generation via residential branches connected to DC buses are going increased considered an open energy system. These residential branches DC buses have a lot of different shapes forming several types. One of these types is using photovoltaic PV and battery storage system (BSS) connected to main DC bus or multi-terminal DC (MTDC) buses. Recently, this is named DC nanogrid interconnected together forming DC microgrid. In this regard, this paper presents a type of these nanogrid local branch systems (NG-LBS) for residential PV and BSS in detailed modeling and implementing a new assemblage by using enhanced photovoltaic diode model (EPVDM) array, coupled to DC-DC boost converter and maximum power point tracking (MPPT). A novel technique for MPPT is polynomial computational method (PCM) has been used. The BSS has been presented in detailed dynamic model through lead acid battery type by applying third order thevenin equivalent circuit connected in parallel with the single terminal DC (STDC) home load bus. The dynamic behavior for NG-LBS has been shown via dynamic PV with boost converter and PCM MPPT and integrated with the dynamical third order lead acid BSS for charging, discharging and constant charge cases at different radiations and loads.
机译:考虑到开放式能源系统,通过连接到直流母线的住宅分支的分布式发电正在增加。这些住宅分支直流母线具有许多不同的形状,形成几种类型。这些类型之一是使用连接到主DC总线或多端子DC(MTDC)总线的光伏PV和电池存储系统(BSS)。最近,这被称为互连在一起的DC纳米网格,形成DC微网格。在这方面,本文介绍了一种用于住宅光伏和BSS的纳米网格局部分支系统(NG-LBS)的详细建模,并通过使用增强型光伏二极管模型(EPVDM)阵列并结合DC-DC升压实现了新的组合转换器和最大功率点跟踪(MPPT)。用于MPPT的一种新技术是多项式计算方法(PCM)。通过应用与单端DC(STDC)家庭负载总线并联的三阶戴维宁等效电路,已通过铅酸电池类型以详细的动态模型介绍了BSS。 NG-LBS的动态行为已通过带有升压转换器和PCM MPPT的动态PV进行了展示,并与动态三阶铅酸BSS集成在一起,可在不同的辐射和负载下进行充电,放电和恒定充电。

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