Yuhou Wu
Shenyang Jianzhu University
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Publication
Featured researches published by Yuhou Wu.
International Journal of Systems Science | 2016
Huai-Tao Shi; Jianchang Liu; Yuhou Wu; Ke Zhang; Lixiu Zhang; Peng Xue
It is pretty significant for fault diagnosis timely and accurately to improve the dependability of industrial processes. In this study, fault diagnosis of nonlinear and large-scale processes by variable-weighted kernel Fisher discriminant analysis (KFDA) based on improved biogeography-based optimisation (IBBO) is proposed, referred to as IBBO-KFDA, where IBBO is used to determine the parameters of variable-weighted KFDA, and variable-weighted KFDA is used to solve the multi-classification overlapping problem. The main contributions of this work are four-fold to further improve the performance of KFDA for fault diagnosis. First, a nonlinear fault diagnosis approach with variable-weighted KFDA is developed for maximising separation between the overlapping fault samples. Second, kernel parameters and features selection of variable-weighted KFDA are simultaneously optimised using IBBO. Finally, a single fitness function that combines erroneous diagnosis rate with feature cost is created, a novel mixed kernel function is introduced to improve the classification capability in the feature space and diagnosis accuracy of the IBBO-KFDA, and serves as the target function in the optimisation problem. Moreover, an IBBO approach is developed to obtain the better quality of solution and faster convergence speed. On the one hand, the proposed IBBO-KFDA method is first used on Tennessee Eastman process benchmark data sets to validate the feasibility and efficiency. On the other hand, IBBO-KFDA is applied to diagnose faults of automation gauge control system. Simulation results demonstrate that IBBO-KFDA can obtain better kernel parameters and feature vectors with a lower computing cost, higher diagnosis accuracy and a better real-time capacity.
international conference on electronics and information engineering | 2017
Songhua Li; Wenbo Mi; Ke Zhang; Yuhou Wu
Grinding parameters are of great concern in the success of processing good quality ceramic bearing outer rings. Practical grinding of ceramics demands appropriate parameters in respect of acceptable ceramic surfaces. In this work, a CNC grinder, MK2710, equipped with diamond grinding wheels, was used to grind ZrO2 and Si3N4 bearing outer rings with changing processing parameters. In order to promote the grinding quality, a series of tests were conducted to optimize the processing parameters in each process. The results showed that the outer ring surface quality has been improved and roughness (Ra) of the outer ring raceway decreased to 0.03 μm and the roundness tolerance diminished. Experiments indicated that proper grinding parameters are necessities for efficiency-processing of ceramic bearing outer rings and also help to promote grinding qualities of ceramic materials.
information management, innovation management and industrial engineering | 2009
Ke Zhang; Hua Guo; Dehong Zhao; Yuhou Wu
Stone equipments develop for high speed and efficiency, intelligent, compound function direction. Analysis of machining center kinetic function was performed by sport theories. Finished special shaped stone compound machining center three-dimensional concept designing and projects selecting, realized stone turning function and carving and milling function to compound in a perpendicular slippery saddle first time. Kinetic simulation research on machining center was performed using COSMOSMotion, tracked spindle tool output displacement, speed and acceleration data by trajectory tracking, compared with mathematic model and tested correctness. The research indicated that machining range of machining center designed satisfied the requirements of machine.
Advances in Mechanical Engineering | 2017
Jian Sun; Yuhou Wu; Peng Zhou; Songhua Li; Lixiu Zhang; Ke Zhang
The removal mechanism of silicon nitride ceramic under high-speed grinding is studied in this article, and grinding parameters are optimized. The efficiency of grinding is improved. The diamond grains of grinding wheel are simplified into the truncated octahedron and cone to simulate the grinding process. When the ceramic workpiece is grinded by single-diamond grain and continuously grinded by multi-diamond grains, the effects of grinding depth and grinding speed on grinding force and surface morphology are analyzed. Through the grinding experiment of the inner surface of silicon nitride ceramic, the grinding force data and surface morphology images were obtained. It proves that at the process of studying the effect of grinding speed on the grinding force and machining surface quality, the results of simulation using multi-diamond grains are closer to the experimental results. The results prove that by increasing wheel speed or lowering grinding depth, the grinding force would be reduced and the quality of grinding surface would be improved. Between grinding depth and grinding speed, the latter factor has a greater impact on grinding force and the quality of grinding surface.
international conference on instrumentation and measurement, computer, communication and control | 2013
Songhua Li; Xue Li; Yuhou Wu; Ke Zhang
In order to produce the motorized spindle unit with high quality and performance and further improve its level of design and produce, a comprehensive performance test system for high-speed motorized spindle is built successfully, it can analyze the load characteristics, temperature rise, vibration, noise, accuracy and rigidity of high-speed motorized spindle unit in different working conditions. Experiments of above characteristics were also completed for a full-ceramic motorized spindle, and a series of results were attained, it supplies technical support to enhance its comprehensive performance and the manufacture technical level.
information management, innovation management and industrial engineering | 2009
Fang Xu; Ke Zhang; Lixiu Zhang; Yuhou Wu
Purpose: to study the performance of DTC system (direct torque control) within the Motorized Spindle full-speed range, and to improve the observation precision of Motorized Spindle stator flux by adopting the Full-order stator flux observer. Method: construct a Motorized Spindle DTC system based on the mathematical model of Motorized Spindle under a static stator reference frame; revise the deviation between status value and measured value of the Motorized Spindle, then build a Full-order magnetic flux observer with error-compensator based on close-loop state estimation by combining the feedback correction term and the mathematical model of Motorized Spindle with flux estimation; build a Full-order flux observer and simulate the Motorized Spindle DTC system by Matlab/Simulink so that the simulative waveform of stator flux would be obtained. Result: the correctness of Full-order stator flux observer at various speed ranges is verified. Conclusion: Full-order u-n stator flux observer shows satisfactory dynamic performance in Motorized Spindle DTC system; the u-n stator flux observer model that is constructed by choosing the proper way to set the pole of observer reduces the interference of temperature, frequency, magnetic path etc.
Archive | 2011
Dehong Zhao; Kaijun Zhao; Lin Han; Yuhou Wu; Ke Zhang; Chaoxia Jiang; Min Zhao; Feng Lu; Baojia Hou
Archive | 2011
Ke Zhang; Chaoxia Jiang; Dehong Zhao; Yi Liu; Yuhou Wu; Lin Han; Feng Lu
International Journal of Digital Content Technology and Its Applications | 2011
Feng Lu; Dehong Zhao; Ke Zhang; Yuhou Wu
Archive | 2010
Yuhou Wu; Lixiu Zhang; Songhua Li