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    • 1. 发明授权
    • Treemap visualizations of database time
    • 数据库时间的Treemap可视化
    • US08095514B2
    • 2012-01-10
    • US12365827
    • 2009-02-04
    • John BeresniewiczJonathan HelfmanHsiao-Te SuNancy ChenKarl DiasGraham Wood
    • John BeresniewiczJonathan HelfmanHsiao-Te SuNancy ChenKarl DiasGraham Wood
    • G06F17/30
    • G06F17/30554G06F17/30592G06F17/30961Y10S707/99945
    • Particular embodiments generally relate to displaying database time using a treemap. A set of database time values is determined for a set of dimensions. The database time values measure performance of one or more databases by the time the database takes to respond to a request. The set of database time values is correlated to a set of cells in the treemap. A size of the cell is determined based on the database time value associated with it. For example, the database time value is correlated to an area of the cell. A layout of the set of cells is determined and the treemap is displayed using the layout. For example, the largest values of database time may be shown with the largest sized cells. This makes it easier for an administrator to review and analyze the database performance across multiple dimensions and determine problem areas affecting the performance of the one or more databases.
    • 具体实施方案一般涉及使用树形图显示数据库时间。 为一组维度确定一组数据库时间值。 数据库时间值衡量数据库响应请求时所需的一个或多个数据库的性能。 数据库时间值集合与树形图中的一组单元格相关联。 基于与其相关联的数据库时间值来确定单元的大小。 例如,数据库时间值与单元的区域相关。 确定一组单元格的布局,并使用布局显示树状图。 例如,数据库时间的最大值可以用最大尺寸的单元显示。 这使管理员更容易查看和分析多个维度的数据库性能,并确定影响一个或多个数据库性能的问题区域。
    • 2. 发明申请
    • TREEMAP VISUALIZATIONS OF DATABASE TIME
    • 数据库时间的TREEMAP可视化
    • US20100198796A1
    • 2010-08-05
    • US12365827
    • 2009-02-04
    • John BeresniewiczJonathan HelfmanHsiao-Te SuNancy ChenKarl DiasGraham Wood
    • John BeresniewiczJonathan HelfmanHsiao-Te SuNancy ChenKarl DiasGraham Wood
    • G06F17/30
    • G06F17/30554G06F17/30592G06F17/30961Y10S707/99945
    • Particular embodiments generally relate to displaying database time using a treemap. A set of database time values is determined for a set of dimensions. The database time values measure performance of one or more databases by the time the database takes to respond to a request. The set of database time values is correlated to a set of cells in the treemap. A size of the cell is determined based on the database time value associated with it. For example, the database time value is correlated to an area of the cell. A layout of the set of cells is determined and the treemap is displayed using the layout. For example, the largest values of database time may be shown with the largest sized cells. This makes it easier for an administrator to review and analyze the database performance across multiple dimensions and determine problem areas affecting the performance of the one or more databases.
    • 具体实施方案一般涉及使用树形图显示数据库时间。 为一组维度确定一组数据库时间值。 数据库时间值衡量数据库响应请求时所需的一个或多个数据库的性能。 数据库时间值集合与树形图中的一组单元格相关联。 基于与其相关联的数据库时间值来确定单元的大小。 例如,数据库时间值与单元的区域相关。 确定一组单元格的布局,并使用布局显示树状图。 例如,数据库时间的最大值可以用最大尺寸的单元显示。 这使管理员更容易查看和分析多个维度的数据库性能,并确定影响一个或多个数据库性能的问题区域。
    • 3. 发明授权
    • Lighting control techniques considering changes in eye sensitivity
    • 考虑眼睛敏感度变化的照明控制技术
    • US09125274B1
    • 2015-09-01
    • US14296998
    • 2014-06-05
    • Charles BrunaultNancy ChenMaria ThompsonJulie Pereyra
    • Charles BrunaultNancy ChenMaria ThompsonJulie Pereyra
    • H05B37/02H05B33/08
    • H05B37/0281H05B33/086H05B33/0869H05B37/0218H05B37/0245H05B37/0272Y02B20/46Y02B20/48
    • Techniques are disclosed for manipulating both colored and tunable white lighting systems in order to enhance visual comfort and allow an observer's eyes to recover from exposure to colored light. A lighting system may gradually adjust the color, color temperature, and intensity of various multi-chip LED panels in order to provide pleasant and acceptable changes in light settings. Instead of abruptly switching from one light setting to another, a lighting system may fade to an intermediate transition setting and subsequently fade to the final light setting, allowing an observer's eyes time to adapt to the new light settings. In one example, switching from blue light to a neutral white light may involve a gradual fading from blue light, to a cool white light, and then to a neutral white light, thus allowing the end user's eyes to adapt to the new light settings.
    • 公开了用于操纵彩色和可调白色照明系统的技术,以增强视觉舒适度,并允许观察者的眼睛从曝光到彩色光线恢复。 照明系统可以逐渐调整各种多芯片LED面板的颜色,色温和强度,以便在光设置中提供令人愉快且可接受的变化。 而不是从一个灯光设置突然切换到另一个,照明系统可以衰减到中间转换设置,并随后衰减到最终的光设置,允许观察者的眼睛时间适应新的光设置。 在一个示例中,从蓝光切换到中性白光可能涉及从蓝光逐渐衰落到冷白光,然后到中性白光,从而允许最终用户的眼睛适应新的光设置。
    • 6. 发明申请
    • Dimmable metal halide HID lamp with good color consistency
    • 可调光金属卤化物HID灯具有良好的色彩一致性
    • US20060226776A1
    • 2006-10-12
    • US11103080
    • 2005-04-11
    • Nancy ChenJoseph Olsen
    • Nancy ChenJoseph Olsen
    • H01J17/20H01J61/12
    • H01J61/125H01J61/827
    • Metal halide lighting with good color during dimming may be obtained. An appropriate balance of commonly used metal halides (NaI, DyI3, CeI3, CaI2, TlI) is dosed in the lamp. No mercury is used. A higher than typical xenon fill pressure from 50 to 500 Kilopascals may be used to help control thermal properties and voltage. If necessary, modulation of the power at acoustic resonance frequencies may be used to straighten and center the arc. Efficient and pleasant white output is obtained. As the power is reduced, the chromaticity either (1) remains fairly constant or (2) drifts acceptably towards warm pinkish colors. Large factors of attenuation in output can be realized. The lumen output was reduced by at least a factor of twenty in one sample as the power was dimmed from 70 to 20 watts.
    • 可以获得在调光期间具有良好颜色的金属卤化物照明。 在灯中加入常用的金属卤化物(NaI,DyI 3,CeI 3,CaI 2,TlI)的适当平衡物。 不使用汞。 可以使用高于典型的50至500千帕斯卡的氙气填充压力来帮助控制热性能和电压。 如果需要,可以使用声共振频率下的功率调制来使电弧矫直和居中。 获得高效宜人的白色输出。 随着功率的降低,色度(1)保持相当恒定,或(2)可以接受温暖的粉红色。 可以实现输出衰减量大的因素。 当功率从70瓦变到20瓦时,一个样品中的流明输出减少了至少二十分之一。