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    • 11. 发明申请
    • Bass guitar stand up adapter
    • 低音吉他支架适配器
    • US20060156896A1
    • 2006-07-20
    • US11333396
    • 2006-01-17
    • Michael Perkins
    • Michael Perkins
    • G10G5/00G10D3/00
    • G10D3/003G10G5/00G10G5/005Y10S224/91
    • An apparatus for converting a standard electric bass guitar to play as a classical upright bass guitar. A bass guitar stand up apparatus may include a mounting stand such as a tri or uni-pod, an adapter, an arm, and a stabilizer. The apparatus may be adjustable for height selection. The apparatus may be quick release for convenience. The arm may facilitate positioning. The stabilizer may mount to lower strap mount. The apparatus may be easily removed and guitar may be played, docked, or transported in standard guitar configuration. The apparatus can also be configured to a supportive belt to afford mobility to a musician while supporting and playing a standard electric bass guitar
    • 一种将标准电贝司吉他转换成古典直立低音吉他的装置。 低音吉他起立装置可以包括诸如三个或单一的安装台,适配器,臂和稳定器。 该装置可以调节高度选择。 为方便起见,该装置可以快速释放。 手臂可以方便定位。 稳定器可以安装到下带安装座。 该装置可以容易地移除,并且吉他可以以标准的吉他配置进行播放,对接或传输。 该装置还可以配置成支撑带,以在支持和播放标准电贝司吉他的同时为音乐家提供移动性
    • 12. 发明申请
    • Water irrigation system with solar panel and method of controlling irrigation
    • 带太阳能电池板的水灌溉系统及灌溉方式
    • US20050216129A1
    • 2005-09-29
    • US10811010
    • 2004-03-26
    • James ClarkMichael PerkinsDavid Small
    • James ClarkMichael PerkinsDavid Small
    • A01G25/16G05D7/00
    • A01G25/16Y02P60/122
    • A water irrigation system may include a computer system, a sensing unit, an irrigation controller, and/or a water delivery system. The sensing unit may include one or more sensors and a solar panel. Electricity produced by the solar panel may be supplied to the sensors of the sensing unit. The sensing unit may provide output to the computer system that is a function of the received sunlight. The computer system may assess solar insolation as a function of the output from the sensing unit. The computer system may control irrigation of a zone to be irrigated at least partially based on the assessed solar insolation. A method of controlling irrigation may include assessing solar insolation from output provided by a solar panel near or in a zone to be irrigated and controlling irrigation at least partially based on the assessed solar insolation.
    • 水灌溉系统可以包括计算机系统,感测单元,灌溉控制器和/或水输送系统。 感测单元可以包括一个或多个传感器和太阳能电池板。 可以将太阳能电池板产生的电能提供给感测单元的传感器。 感测单元可以向作为所接收的阳光的函数的计算机系统提供输出。 计算机系统可以根据感测单元的输出来评估太阳照射。 该计算机系统可以至少部分地基于所评估的太阳日照来控制要灌溉的区域的灌溉。 控制灌溉的方法可以包括根据由待评估的太阳能日照至少部分地控制灌溉至少部分地靠近要灌溉的区域中的太阳能电池板提供的输出来评估太阳能日照。
    • 13. 发明申请
    • Water irrigation system with moisture collector and method of controlling irrigation
    • 水分收集器灌溉系统及灌溉方式
    • US20050216127A1
    • 2005-09-29
    • US10810102
    • 2004-03-26
    • James ClarkMichael PerkinsDavid SmallPaul Morgenstern
    • James ClarkMichael PerkinsDavid SmallPaul Morgenstern
    • A01G25/16G05D7/00G05D7/06G05D22/02
    • G05D22/02A01G25/167
    • A water irrigation system may include a computer system, a sensing unit, an irrigation controller, and/or a water delivery system. The sensing unit may include a moisture gauge. A rate of evaporation of moisture from a collector of a moisture gauge may be within about 10% of an average rate of evaporation of moisture from a zone to be irrigated. The sensing unit may assess an amount of moisture in the collector and provide output that is a function of the amount of moisture in the collector to the computer system. The computer system may control irrigation of the zone to be irrigated at least partially based on the assessed amount of moisture in the collector. A method of controlling irrigation may include receiving moisture in a collector and controlling irrigation of a zone to be irrigated at least partially based on an assessed amount of moisture in the collector.
    • 水灌溉系统可以包括计算机系统,感测单元,灌溉控制器和/或水输送系统。 感测单元可以包括湿度计。 来自湿度计的收集器的水分的蒸发速率可以在从要灌溉的区域的平均蒸发蒸发速率的10%的范围内。 感测单元可以评估收集器中的水分量并且提供与收集器中对计算机系统的水分量的函数的输出。 计算机系统可以至少部分地基于收集器中评估的水分量来控制要灌溉的区域的灌溉。 控制灌溉的方法可以包括在收集器中接收水分并且至少部分地基于收集器中评估的水分量来控制要灌溉的区域的灌溉。
    • 14. 发明申请
    • Water irrigation system with wind sensor and method of controlling irrigation
    • 风力传感器灌溉系统及灌溉方式
    • US20050211794A1
    • 2005-09-29
    • US10811015
    • 2004-03-26
    • James ClarkMichael PerkinsDavid Small
    • James ClarkMichael PerkinsDavid Small
    • A01G25/16B05D1/00
    • A01G25/16
    • A water irrigation system may include a computer system, a sensing unit, an irrigation controller, and/or a water delivery system. The sensing unit may include a wind sensor. The wind sensor may include thermistors. The sensing unit may assess wind speed at one of the thermistors as a function of temperature. The sensing unit may provide output based on the assessed wind speed to the computer system. The computer system may control irrigation of a zone to be irrigated at least partially based on the assessed wind speed. A method of controlling irrigation may include assessing wind speed as a function of temperature, assessing an irrigation need of the zone to be irrigated at least partially based on the assessed wind speed, and controlling irrigation to at least meet the assessed irrigation need of the zone to be irrigated.
    • 水灌溉系统可以包括计算机系统,感测单元,灌溉控制器和/或水输送系统。 感测单元可以包括风传感器。 风传感器可以包括热敏电阻。 感测单元可以将热敏电阻之一的风速评估为温度的函数。 感测单元可以基于评估的风速向计算机系统提供输出。 至少部分地基于所评估的风速,计算机系统可以控制要灌溉的区域的灌溉。 控制灌溉的方法可以包括评估作为温度的函数的风速,至少部分地基于评估的风速评估要灌溉的区域的灌溉需求,以及控制灌溉以至少满足所评估的灌溉需要 要灌溉
    • 18. 发明授权
    • Configurable imaging system
    • 可配置成像系统
    • US08410995B2
    • 2013-04-02
    • US13036997
    • 2011-02-28
    • Michael PerkinsRobert Rushby
    • Michael PerkinsRobert Rushby
    • G09G5/00
    • H04N9/12G06F3/1446G09F9/3026G09G2300/026G09G2360/14G09G2370/04
    • A method for use in an imaging system having an image source and a plurality of microtile units for generating respective portions of the image is provided, each microtile unit including a self-contained screen and a rear projector for projecting the image on the screen, the method for at least one of self-aligning, colour matching and brightness matching the image portions across successive adjacent microtile units. The screen is over-scanned so that a portion of an edge of each image spills over onto a side wall of the microtile unit adjacent a further one of microtile units. Light from the image is permitted to spill through the side wall into the further microtile unit. The light is detected within the further microtile unit. The image is adjusted in response to detection of the light within the further microtile unit so as to at least one of align, color match and brightness match the image between the plurality of microtile units.
    • 提供了一种用于具有图像源和用于产生图像的各个部分的多个微型单元的成像系统的方法,每个微型单元包括独立屏幕和用于在屏幕上投影图像的后投影仪, 方法,用于至少一个自对准,颜色匹配和亮度匹配连续的相邻微型单元上的图像部分。 屏幕被过度扫描,使得每个图像的边缘的一部分溢出到微雕单元的侧壁上,与另一个微雕单元相邻。 来自图像的光线允许通过侧壁进入另一个微型单元。 在另外的微量单位内检测到光。 响应于另外的微量单元内的光的检测来调整图像,以便对准,匹配和亮度中的至少一个匹配多个微型单元之间的图像。
    • 19. 发明申请
    • CONFIGURABLE IMAGING SYSTEM
    • 可配置成像系统
    • US20110148741A1
    • 2011-06-23
    • US13036993
    • 2011-02-28
    • Michael PerkinsRobert Rushby
    • Michael PerkinsRobert Rushby
    • G09G5/00
    • H04N9/12G06F3/1446G09F9/3026G09G2300/026G09G2360/14G09G2370/04
    • An imaging system is provided. The imaging system comprises an image source providing a video data stream. The imaging system further comprises a plurality of microtile units for: generating respective portions of an image from the video data stream, each microtile unit connectable to a plurality of other microtile units in multiple geometrical configurations. Each microtile unit comprises circuitry for: communication with the plurality of other microtile units to control generation of each respective portion of the image; and sub-image capture from the video data stream. The imaging system further comprises a system control unit for: automatically detecting a configuration of connected microtile units to determine information indicating a portion of the image each individual microtile unit is to be responsible for; and relaying respective information comprising a respective portion of the image a respective microtile unit is to be responsible for to each the respective microtile unit in the sub-image capture.
    • 提供成像系统。 成像系统包括提供视频数据流的图像源。 成像系统还包括多个微型单元,用于:从视频数据流生成图像的各个部分,每个微型单元可连接到多个几何构型的多个其它微型单元。 每个微型单元包括用于:与多个其它微型单元通信以控制图像的每个相应部分的产生的电路; 并从视频数据流中捕获子图像。 所述成像系统还包括系统控制单元,用于:自动检测所连接的微型单元的配置,以确定指示每个单独微型单元负责的图像的一部分的信息; 并将包括相应的微型单元的图像的相应部分的各个信息中继到子图像捕获中的每个相应的微尺度单元。