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A CONTROL TECHNIQUE FOR SHAFT-TORQUE SMOOTHING IN PM-BRUSHLESS SMALL POWER COGENERATION UNITS

机译:PM无刷小功率热电联产单位轴扭矩平滑的控制技术

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The paper deals with very small power co-generation units where a three-phase PM-brushless generator is driven by an internal combustion engine (ICE). A power range of 1.5÷2.5 kW is considered for these units, which are mainly devoted to residential/household applications. The low-power values can lead to conveniently use a single cylinder ICE as prime motor, also in order to reduce sizes maintaining suitable efficiency values. For this kind of ICE the typical torque and inertia behaviour against shaft angular position can cause vibrations and angular speed oscillations. These last ones can be considerably smoothed by suitably controlling the brushless generator at fixed mean value of the electric power transferred to the grid. A simple and efficacious control algorithm is presented; aimed to yield a realistic reduction of the mechanical oscillations, this control technique is oriented to keep acceptable efficiency values of the whole apparatus unless excessive over-sizing of generator and front-end static converter. Simulation results are shown and discussed in order to show the effectiveness of the control.
机译:本文涉及非常小的功率共同单元,其中三相PM无刷发生器由内燃机(冰)驱动。这些装置考虑了1.5÷2.5 kW的功率范围,主要致力于住宅/家庭应用。低功率值可以方便地使用单个汽缸冰作为素电机,也为了减少维持合适的效率值的尺寸。对于这种冰,典型的扭矩和轴角位置的惯性行为可能导致振动和角速度振荡。通过适当地控制传送到电网的电力的固定平均值,可以通过适当地控制无刷发生器来相当平滑。提出了一种简单而有效的控制算法;旨在产生机械振荡的实际降低,除非发电机和前端静态转换器的过度过度过度过度过度,否则该控制技术旨在保持整个装置的可接受效率值。显示和讨论了仿真结果,以显示控制的有效性。

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