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Effect of Dimension and Shape of Magnet on the Performance AC Generator with Translation Motion

机译:磁铁尺寸与形状对平移运动的性能交流发电机的影响

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The development of power plants using the renewable energy sources is very rapid. Renewable energy sources used solar energy, wind energy, ocean wave energy and other energy. All of these renewable energy sources require a processing device or a change of motion system to become electrical energy. One processing device is a generator which have work principle of converting motion (mechanical) energy into electrical energy with rotary shaft, blade and other motion components. Generator consists of several types of rotation motion and linear motion (translational). The generator have components such as rotor, stator and anchor. In the rotor and stator having magnet and winding coil as an electric generating part of the electric motion force. Working principle of AC generator with linear motion (translation) also apply the principle of Faraday that is using magnetic induction which change iron magnet to produce magnetic flux. Magnetic flux is captured by the stator to be converted into electrical energy. Linear motion generators consist of linear induction machine, wound synchronous machine field, and permanent magnet synchronous [1]. Performance of synchronous generator of translation motion is influenced by magnet type, magnetic shape, coil winding, magnetic and coil spacing and others. In this paper focus on the neodymium magnet with varying shapes, number of coil windings and gap of magnetic distances. This generator work by using pneumatic mechanism (PLTGL) for power plants system. Result testing of performance AC generator translation motion obtained that maximum voltage, current and power are 63 Volt for diameter winding coil 0.15 mm, number of winding coil 13000 and distance of magnet 20 mm. For effect shape of magnet, maximum voltage happen on rectangle magnet 30x20x5 mm with 4.64 Volt. Voltage and power on effect of diameter winding coil is 14.63 V and 17.82 W at the diameter winding coil 0.7 and number of winding coil is 1260 with the distance of magnet 25 mm.
机译:使用可再生能源的发电厂的开发非常迅速。可再生能源使用太阳能,风能,海浪能量等能量。所有这些可再生能源需要处理设备或变化运动系统以成为电能。一个处理装置是一种发电机,其具有将运动(机械)能量转换成具有旋转轴,刀片和其他运动部件的电能的工作原理。发电机由几种类型的旋转运动和线性运动组成(平移)。发电机具有诸如转子,定子和锚的部件。在转子和定子中具有磁体和绕组线圈作为电动运动的发电部分。具有线性运动的AC发电机的工作原理(翻译)也适用于使用磁感应的法拉第原理,该磁感应改变铁磁磁铁产生磁通量。磁通量由定子捕获以转换成电能。线性运动发生器包括线性感应机,卷绕同步机器领域和永磁同步[1]。平移运动同步发电机的性能受磁铁型,磁形,线圈绕组,磁性和线圈间距等的影响。在本文中,专注于具有变化形状的钕磁体,线圈绕组数和磁距离的间隙。该发电机通过使用气动机构(PLTGL)来发电系统。结果测试性能AC发生器平移运动获得的是,最大电压,电流和功率是63伏的直径绕组线圈0.15mm,绕组线圈13000和磁体的距离20 mm。对于磁体的效果形状,最大电压在矩形磁体30x20x5mm上发生,具有4.64伏。直径绕组线圈的电压和功率效果是直径绕组线圈0.7的14.63V和17.82W,绕组线圈数为1260,磁体25mm的距离。

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