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Zhiqiang Li Wuyi Chen 《International Journal of Machine Tools and Manufacture》2006,46(12-13):1428-1434
Traditional cutter positioning methods have defects of global errors and incomplete optimization. Because of using local differential geometry and focusing on the cutting contact point, these defects cannot be avoided and will deteriorate accuracy in precision machining. The authors presented the conception of actual cutting edge of a toroidal mill which was extended from cutting contact point, and pointed out its importance in programming. Instantaneous cutter position error (ICPE) was also investigated. A new global method based on the ICPE curve was presented. Taking the relationship between surface and cutter into consideration thoroughly, this global method shows many advantages which have been verified by simulation and cutting tests. 相似文献
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一种视频流畅度优先的带宽自适应方法 总被引:1,自引:0,他引:1
由于现有基于平均接收质量的带宽自适应方法,在自适应过程中会出现视频质量振荡,且在可用带宽急剧恶化时会出现中断的问题,提出了一种流畅度优先的带宽自适应方法。该方法引入了图着色优先级算法,在带宽自适应过程中,在保证视频的流畅播放的前提下,通过判断是否振荡调整,改变平均质量范围,以达到减少视频振荡次数的效果。仿真结果表明,该方法在自适应调整传输速率、有效利用带宽的同时,保证了流畅度并减少视频质量振荡,符合预期目标。 相似文献
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Kenichiro Masaoka 《Journal of the Society for Information Display》2016,24(7):419-423
To measure the relative gamut sizes of wide‐gamut displays, it is herein proposed that the CIE 1931 xy chromaticity diagram be used rather than the nominally perceptually uniform CIE 1976 u′v′ chromaticity diagram. High correlations were found between the area‐coverage ratios in the xy diagram and the volume‐coverage ratios in the CIE 1976 L*a*b* color space for major standard wide‐gamut color spaces. It is also demonstrated herein that performing planimetry in the uniform u′v′ diagram does not yield accurate relative display gamut sizes, even though the large sizes obtained using the u′v′ diagram are often reported regardless of the fact that its uniformity is valid only when the luminance factor is constant. The single display gamut size metric using the xy diagram will facilitate the unbiased development of wide‐gamut displays. 相似文献
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Karen Twietmeyer Sridhar Sadasivan 《Journal of the Society for Information Display》2016,24(5):312-322
Quantum dots (QDs) are increasingly the technology of choice for wide color gamut displays. Two popular options to incorporate QDs into displays include on‐edge and on‐surface solutions. The opto‐mechanical design for an on‐edge QD solution including a LED light bar (“on‐edge QD light bar”) is more complex than the design for a standard white phosphor LED light bar. In this paper, we identify and investigate a range of design parameters for an on‐edge QD light bar, and we show that these parameters have significant influence on system efficiency and color uniformity. The effects of varying these parameters are explored through the use of a custom adjustable testbed and optical raytracing methods. Our testbed data demonstrate the inherent trade‐offs between efficiency and color uniformity and provide guidance for the design of high‐performing displays. The optical raytracing data demonstrate a good predictive capability and support the use of optical modeling methods for a detailed exploration of a wider range of design parameters. 相似文献
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In this work, the issues of bandwidth enhancement of planar antennas and the relevance of precise and automated response control through numerical optimization have been investigated. Using an example of a planar antenna with parasitic radiator we illustrate possible effects of even minor modifications of the antenna geometry (here, applied to the ground plane) on its reflection performance. In particular, a proper handling of geometry parameters may lead to considerable broadening of the antenna bandwidth. For the sake of computational efficiency, the adjustment of geometry parameters is carried out using surrogate‐based optimization methods exploiting coarse‐discretization EM simulations as the underlying low‐fidelity antenna model. Additionally, suitably defined penalty function allows us to precisely control the maximum in‐band reflection so that sufficient margin to accommodate possible manufacturing tolerances can be achieved. The optimized designs of the two antenna structures considered in this work exhibit over 1.75 GHz (>31%) and 2.15 GHz (>38%) bandwidth, respectively, for the center frequency of 5.6 GHz. Simulation results are validated using measurements of the fabricated prototypes. Comparison with state‐of‐the‐art designs is also provided. © 2016 Wiley Periodicals, Inc. Int J RF and Microwave CAE 26:653–659, 2016. 相似文献
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对传统的SOI压阻式压力传感器进行了结构优化。目的是提高灵敏度,以满足在高温环境下大量程压力测量的实际需求。通过力学性能模拟,采用浅凸台结构来提高灵敏度和测量范围。分析并模拟了凸台厚度和形状对灵敏度的影响。得到了适合高温工作的掺杂浓度,压敏电阻的尺寸,金属引线的材料和布局。电阻放置在(σl-σt)最大的区域以保持灵敏度和线性度。采用U形电阻补偿在浅凸台制作过程中的工艺偏差对灵敏度的影响。有限元分析(FEA)表明,优化后的芯片结构可以测量10 MPa范围内的压力,灵敏度高达86.6 mV/(V·MPa),非线性误差在0.1%以下。和其他文献报道的大量程压力传感器相比,浅凸台芯片结构灵敏度和过载能力优异。 相似文献
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目的 为了能够快速得到适于视觉解译的UWB SAR图像,提出了一种基于数据筛选的低频UWB SAR图像快速可视化算法.方法 该方法从统计学的角度出发,讨论了低频UWB SAR图像数据的统计特性和灰度分布模型;在此基础上,首次提出采用3σ准则对低频UWB SAR图像数据进行筛选;并使用修正映射函数映射.结果 对处理后所得图像进行质量评估,可以发现,所得灰度图在等效视数、中央凹特征和对比敏感度特征等方面要优于传统方法处理的处理结果,因而更符合人类视觉系统特征,更易于人眼视觉系统全面了解低频UWB SAR图像表征的场景信息.结论 与传统方法相比,该算法能自适应压缩图像动态范围,处理耗时短,所得图像细节突出,适于对低频UWB SAR图像数据实时处理. 相似文献