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According to simulation model, the effect of backlash and dead zone nonlinear factors on systematic performances was analyzed, and the measures of improving the systematic performances were given.
利用仿真模型分析了间隙、死区等非线性因素对系统精度的影响,并给出了提高传动系统性能的措施。
Simulation results show that the systematic precision of position and speed has quite remarkable improvement in case of integrated discontinuity at short intervals.
仿真结果表明:在组合中断时间较短的情况下,系统的位置、速度精度均有相当显著的提高。
Modeling the systematic components of different variation sources and implementing these effects in circuit simulation are key to reduce design uncertainty and maximize circuit performance.
在电路仿真时对不同变化源的系统部分建模和分析成为减少设计不确定和最大化电路性能的关键。
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