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Torque-oscillations damping in micro-cogeneration units with high brake mean pressure engines and PM-brushless generators

机译:具有高制动器平均压力发动机和PM无刷发电机的微热静脉振动阻尼扭矩 - 振动阻尼

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The paper discusses the concept and the overall performance of a 20 kW micro-cogeneration unit, suitable for distributed energy conversion and based on a 4-cylinder, supercharged methane fuelled, spark ignited, internal combustion engine (ICE). The latter is coupled to a three-phase PM-brushless electric generator, whose armature is controlled by an active front-end [12,14]. The ICE is derived from a widespread Diesel unit, which has been properly modified; it is chosen among many other engines as a reliable, very high efficiency, cost effective unit [6], suitable for energy conversion systems (such as residential or commercial applications). The paper starts by defining the criterion which led to the adoption of a high brake mean pressure, in order to produce the above mentioned electric power. After the description of the solutions adopted to optimize the ICE operation performance, a very simple and efficacious control strategy of the generator+converter set is presented. This technique is able to conveniently reduce the magnitude of shaft-torque ripple produced by a high brake mean pressure (and consequently cycle peak pressure), in order to reduce vibrations, noise and rotating speed oscillations. The control is based on assigned curves of ICE torque vs. shaft angular position. Some considerations are also made to define the right generator sizing, in order to allow an efficacious damping action, maintaining good efficiency levels of the generator+converter set. The effectiveness of the control is validated by a series of numerical results in significant operating conditions.
机译:本文讨论了20 kW微热单元的概念和整体性能,适用于分布式能量转换,并基于4缸,增压甲烷燃料,火花点燃,内燃机(冰)。后者耦合到三相PM无刷发电机,其电枢由主动前端控制[12,14]。冰是来自于广泛的柴油机单元,其已被适当地修改;在许多其他发动机中选择了可靠,非常高的效率,成本有效的单元[6],适用于能量转换系统(例如住宅或商业应用)。本文首先定义导致采用高制动器平均压力的标准,以产生上述电力。在采用的解决方案的描述后,优化冰操作性能,提出了发电机+转换器组的非常简单而有效的控制策略。该技术能够方便地降低通过高制动器平均压力(并因此循环峰值压力)产生的轴扭矩波纹的大小,以减小振动,噪声和旋转速度振荡。该控制基于冰扭矩与轴角位置的分配曲线。还可以考虑定义正确的发电机尺寸,以便允许有效的阻尼作用,保持发电机+转换器组的良好效率水平。通过在显着的操作条件下通过一系列数值结果验证控制的有效性。

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