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A general software package for modelling a contact-less electric-vehicles battery-charging public-station fed from on-grid photo-voltaic array

机译:通用软件包,用于建模从并网光伏阵列馈电的非接触式电动汽车充电公共站点

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The development and commercialization of hybrid electric vehicles (HEVs) and electric vehicles (EVs) are actively being realized due to environmental concerns and rising oil prices. But, EV technology with battery has faced many problems up to now. One of the most important problems is rapidly battery-charging from a clean and reliable source. So, this research proposes a convenient way to charge batteries of EVs and HEVs from a neat power supply. The paper introduces a public off-board battery-charging station fed from on-grid (OG) photovoltaic (PV) array. The proposed 100kW-contactless charging station is modelled, and simulated. It comprises two main sections: station-side (stationary) section and EV (moving) section. The first section includes PV panels, maximum power point tracking (MPPT)-converter, on-grid 3-level interface inverter, and high-frequency compensated resonant converter. The other section consists of the rectifier, switched mode power converter, and battery-charging controller. An inductive-coupled power (ICP) is transferred from the station to the batteries through an air-core transformer (ACT) with large air-gap. Its primary winding is placed on the station ground and the secondary winding is in the EV. Modelling of the ACTs accomplishes several requirements such as air-gap, have good tolerance to misalignment, light-weight, durable and cost effective as possible. Smart and intelligent controllers are proposed for MPPT, interface on-grid inverter and battery-charging converter. Simulation results are obtained using a Simulink/m-file software package helping in modelling of battery-charging public station.
机译:由于环境问题和油价上涨,混合动力电动汽车(HEV)和电动汽车(EV)的开发和商业化正在积极实现。但是,迄今为止,带电池的电动汽车技术面临许多问题。最重要的问题之一是从干净可靠的电源快速为电池充电。因此,本研究提出了一种从纯净电源为电动汽车和混合动力汽车的电池充电的便捷方法。本文介绍了一种由网格(OG)光伏(PV)阵列供电的公共车外电池充电站。对拟议的100kW非接触式充电站进行了建模和仿真。它包括两个主要部分:站侧(固定)部分和EV(移动)部分。第一部分包括光伏面板,最大功率点跟踪(MPPT)转换器,并网三电平接口逆变器和高频补偿谐振转换器。另一部分包括整流器,开关模式电源转换器和电池充电控制器。感应耦合功率(ICP)通过气隙较大的空心变压器(ACT)从站点传输到电池。其初级绕组放置在电站地面上,次级绕组放置在EV中。 ACT的建模可满足多种要求,例如气隙,对不对准的耐受性好,重量轻,经久耐用且具有成本效益。提出了针对MPPT,接口并网逆变器和电池充电转换器的智能控制器。使用Simulink / m文件软件包可获得模拟结果,该软件包有助于对公共充电站进行建模。

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