首页> 外文会议>2014 International Conference on Robotics and Emerging Allied Technologies in Engineering >Design and modeling of low-speed axial flux permanent magnet generator for wind based micro-generation systems
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Design and modeling of low-speed axial flux permanent magnet generator for wind based micro-generation systems

机译:基于风的微发电系统低速轴向磁通永磁发电机的设计与建模

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Pakistan is currently hit by severe energy crisis. In both its urban and rural areas, the shortfall of electricity is so intense that it can cause power shut-down for as long as ten hours a day. In order to cope with this situation, harnessing renewable energy resources is crucial. Therefore, in this work an efficient, low-speed gearless wind based micro-generation system is proposed. Such a system can exploit wind energy in urban and rural parts of the country and can convert it to electrical energy to meet daily domestic energy requirements. A 1.5 kW low speed direct driven axial flux permanent magnet (AFPM) generator is designed for this system using analytical techniques. The generator comprises of modular structure having non-ferromagnetic core and offers special features as light weight, low wind speed operation capability and low maintenance cost. Such features make it superior to the available types of energy systems such as those utilizing Induction Generators (IG) and Synchronous Generators (SG). The design is implemented using dynamic modeling in MATLAB (Simulink) and validated through performance comparison with available state-of-the-art wind energy system models.
机译:巴基斯坦目前遭受严重的能源危机。在城市和农村地区,电力短缺都非常严重,以至于每天可能导致长达十个小时的电源关闭。为了应对这种情况,利用可再生能源至关重要。因此,在这项工作中,提出了一种有效的低速无齿轮风力微发电系统。这样的系统可以利用该国城乡地区的风能并将其转换为电能,以满足日常的家庭能源需求。使用分析技术为此系统设计了1.5 kW低速直接驱动轴向磁通永磁体(AFPM)发电机。该发电机为具有非铁磁芯的模块化结构,具有重量轻,风速运行能力低,维护成本低等特点。这些功能使其优于现有的能源系统类型,例如利用感应发电机(IG)和同步发电机(SG)的能源系统。该设计是使用MATLAB(Simulink)中的动态建模实现的,并通过与可用的最新风能系统模型进行性能比较进行了验证。

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