Different torque damping by a constant speed SPM machine drive in domestic cogeneration system

M. Morandin, A. Faggion, S. Bolognani
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引用次数: 4

Abstract

The domestic combined heat and power (CHP) system is an effective residential distributed energy generation technology. Nano-CHP is an energy-efficient technology that simultaneously provides heat and electricity to households. An electrical machine (EM) connected to internal combustion engine (ICE) is principally used to produce the electricity. The conventional ICE during the combustion process produces an oscillating torque which affects the vibration and the noise of the system and also reduces the power train life time. The new opportunity for electric drive is to reduce the speed pulsation using the EM which is controlled as active torque damping by applying an inverse torque sequence to crankshaft. In this paper different torque damping techniques have been analyzed with the aim to find the better solution; the investigated techniques have been taken from researches in the field of hybrid electric vehicles. In order to better understand the torque engine oscillation phenomena an effective ICE model has been realized. It allows to find out by simulations the best available technique. The ICE model and simulation analysis predict the system performance, that has been validated by experimental test carried out on a dedicated laboratory test bench composed by a real ICE connected to EM.
国产热电联产系统中采用等速SPM电机驱动的不同转矩阻尼
家用热电联产系统是一种有效的住宅分布式能源发电技术。纳米热电联产是一种节能技术,可以同时为家庭提供热量和电力。与内燃机(ICE)相连的电机(EM)主要用于发电。传统内燃机在燃烧过程中会产生振荡扭矩,影响系统的振动和噪声,降低动力传动系统的使用寿命。电动驱动的新机遇是利用电磁来降低速度脉动,电磁通过对曲轴施加反扭矩序列来控制主动扭矩阻尼。本文对不同的扭矩阻尼技术进行了分析,以期找到较好的解决方案;所研究的技术来源于混合动力汽车领域的研究。为了更好地理解扭矩发动机的振荡现象,建立了一个有效的内燃机模型。它允许通过模拟找出最佳的可用技术。仿真分析预测了系统的性能,并在由真实的ICE与EM连接组成的专用实验室测试台上进行了实验验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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