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Harmonic response analysis on cutting part of shearer physical simulation system paper title

机译:采煤机物理仿真系统纸张标题切割部分的谐波响应分析

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Coal-rock interface recognition system mainly means collecting various response signals available from multi-sensors equipped in shearer and further analyzing and those response signals to see if it is cutting coal or rock. For this purpose, the shearer equips total five types of various distinguishing sensors to pick up these signals. Both the optimized configuration of sensors measuring points and the choices of the sensors properties are the key factors to correctly and completely collecting the manifold dynamic characteristic signals of cutting part of physical simulation system. Therefore, it is important and necessary to carry out the harmonic response dynamics analysis of shearer cutting part. The vibration characteristics based on frequency response is analyzed. The study not only optimizes the disposition of the vibration sensor for the maximum output amplitude signals, but also identifies the frequency range of the vibration sensor, so that it not only satisfies the condition for undistorted measurements, but also avoids that the sensors are interfered due to resonance.
机译:煤岩界面识别系统主要意味着收集从装备的多传感器提供的各种响应信号,以及进一步分析和那些响应信号,以了解它是否正在切割煤或岩石。为此目的,采煤机提供总共五种类型的各种区别传感器来拾取这些信号。传感器测量点的优化配置既有正确又完全收集物理仿真系统切割部分的歧管动态特性信号的关键因素。因此,执行谐波切割部分的谐波响应动力学分析是重要的,需要。分析了基于频率响应的振动特性。该研究不仅优化了用于最大输出幅度信号的振动传感器的布置,而且还识别了振动传感器的频率范围,使其不仅满足未变形的测量的条件,而且还避免了传感器受到干扰的影响共鸣。

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