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1.
针对目标估计过程需要大量人工参与、自动化程度低的问题,提出了基于数据质量评价的目标估计方法。利用目标数据质量评价方法,对不同传感器得到的目标数据质量进行科学、有效的测度和评价,并根据质量得分动态调整各数据源在目标估计过程中所占的权重,从而减少人工干预,提高目标估计效能。仿真试验结果证明了该方法的有效性。 相似文献
2.
Recent generative adversarial networks (GANs) have yielded remarkable performance in face image synthesis. GAN inversion embeds an image into the latent space of a pretrained generator, enabling it to be used for real face manipulation. However, current inversion approaches for real faces suffer the dilemma of initialization collapse and identity loss. In this paper, we propose a hierarchical GAN inversion for real faces with identity preservation based on mutual information maximization. We first use a facial domain guaranteed initialization to avoid the initialization collapse. Furthermore, we prove that maximizing the mutual information between inverted faces and their identities is equivalent to minimizing the distance between identity features from inverted and original faces. Optimization for real face inversion with identity preservation is implemented on this mutual information-maximizing constraint. Extensive experimental results show that our approach outperforms state-of-the-art solutions for inverting and editing real faces, particularly in terms of face identity preservation. 相似文献
3.
煤泥水的处理属于选煤厂的一个极其关键的过程,最终的处理结果能够影响到煤泥水的回用和洗水闭路循环指标,并且对于选煤厂以及其它环节,如发热量、分选效率指标等影响很大。也是制约经济以及社会效益的关键的因素。模糊控制原理包含的内容比较多,基于其整体性,提出自动添加药剂控制策略,用模糊控制算法代替目前使用的常规控制算法,根据在线设定的模糊规则参数,以进料浓度为输入量,以浓缩池沉积面厚度参数作为反馈量,以变频器频率为输出量,设计模糊控制器。对药剂添加系统进行补偿控制,基于此控制策略对实际数据进行验证采集。结果表明: 所设计的模糊控制系统项目参数选择符合控制要求,进而可以达到控制的标准,控制系统的稳定性也较好,煤泥水处理效果和处理速度得到了保证,进一步提升了经济效益等综合指标。 相似文献
4.
《Advanced Powder Technology》2022,33(8):103664
Powder transport systems are ubiquitous in various industries, where they can encounter single powder flow, two-phase flow with solids carried by gas or liquid, and gas–solid–liquid three-phase flow. System geometry, operating conditions, and particle properties have significant impacts on the flow behavior, making it difficult to achieve good transportation of granular materials. Compared to experimental trials and theoretical studies, the numerical approach provides unparalleled advantages over the investigation and prediction of detailed flow behavior, of which the discrete element method (DEM) can precisely capture complex particle-scale information and attract a plethora of research interests. This is the first study to review recent progress in the DEM and coupled DEM with computational fluid dynamics for extensive powder transport systems, including single-particle, gas–solid/solid–liquid, and gas–solid–liquid flows. Some important aspects (i.e., powder electrification during pneumatic conveying, pipe bend erosion, non-spherical particle transport) that have not been well summarized previously are given special attention, as is the application in some new-rising fields (ocean mining, hydraulic fracturing, and gas/oil production). Studies involving important large-scale computation methods, such as the coarse grained DEM, graphical processing unit-based technique, and periodic boundary condition, are also introduced to provide insight for industrial application. This review study conducts a comprehensive survey of the DEM studies in powder transport systems. 相似文献
5.
6.
An analytical model for gas leakage through contact interface in proton exchange membrane fuel cells
《International Journal of Hydrogen Energy》2022,47(75):32273-32286
Sealing performance between two contacting surfaces is of significant importance to stable operation of proton exchange membrane (PEM) fuel cells. In this work, an analytical micro-scale approach is first established to predict the gas leakage in fuel cells. Gas pressure and uneven pressure distribution at the interface are also included in the model. At first, the micro tortuous leakage path at the interface is constructed by introducing contact modelling and fractal porous structure theory. In order to obtain the leakage at the entire surface, contact pressure distribution is predicted based on bonded elastic layer model. The gas leakage through the discontinuous interface can be obtained with consideration of convection and diffusion. Then, experiments are conducted to validate the numerical model, and good agreement is obtained between them. Finally, influences of surface topology, gasket compression and gasket width on leakage are studied based on the model. The results show that gas leakage would be greatly amplified when the asperity standard deviation of surface roughness exceeds 1.0 μm. Gaskets with larger width and smaller thickness are beneficial to sealing performance. The model is helpful to understand the gas leakage behavior at the interface and guide the gasket design of fuel cells. 相似文献
7.
《International Journal of Hydrogen Energy》2022,47(85):36216-36231
The fuel cell/battery durability and hybrid system stability are major considerations for the power management of fuel cell hybrid electric bus (FCHEB) operating on complicated driving conditions. In this paper, a real time nonlinear adaptive control (NAC) with stability analyze is formulated for power management of FCHEB. Firstly, the mathematical model of hybrid power system is analyzed, which is established for control-oriented design. Furthermore, the NAC-based strategy with quadratic Lyapunov function is set up to guarantee the stability of closed-loop power system, and the power split between fuel cell and battery is controlled with the durability consideration. Finally, two real-time power management strategies, state machine control (SMC) and fuzzy logic control (FLC), are implemented to evaluate the performance of NAC-based strategy, and the simulation results suggest that the guaranteed stability of NAC-based strategy can efficiently prolong fuel cell/battery lifespan and provide better fuel consumption economy for FCHEB. 相似文献
8.
为探究高水头大幅变化对混流式水轮机尾水管涡带的演化及对压力脉动的影响,以国内运行水头变幅最大的紫坪铺水电站水轮机为例,通过三维建模及定常和非定常条件的CFD分析,研究混流式水轮机在相同开度下最大水头、设计水头和最小水头三种工况的流动特点。结果表明,最小水头工况下尾水管内部流态较乱,尾水管中存在螺旋型空腔涡带,主要分布在直锥段。最大水头工况下尾水管的柱状涡带直径较大,且分布在直锥段和弯肘段,对机组振动和空化影响较大。研究结果阐明了非定常流动的特性,揭示了尾水管内压力脉动与涡带发展形态变化的规律,可为水轮机的安全可靠运行提供技术保障。 相似文献
9.
为提高跨临界CO2空气源热泵热水系统运行性能,对不同压缩机频率、电子膨胀阀开度和水流量下的系统及部件运行特性进行了实验研究,并对循环加热模式下的调节方式进行了优化。结果表明:当阀开度减小时,系统性能系数COP和制热量随过热度的增大而减小;压缩机存在最大电效率点,并且电效率极值点会随着运行频率的增大而向低过热度段发生移动;与电子膨胀阀调节方式相比,水流量调节方案下系统COP提升了13.22%;在循环加热模式下不同加热时期的最优阀开度并不相同,根据最优高压理论对其调节方式进行了优化,最大优化率为15.96%。 相似文献
10.