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    • 2. 发明授权
    • System and method for collecting, transferring and managing quality control data
    • 收集,传输和管理质量控制数据的系统和方法
    • US08230005B2
    • 2012-07-24
    • US12322189
    • 2009-01-30
    • Michael J. McKayJohn M. MillerPhillip W. CavinessJason T. DriscollMichael D. Miller
    • Michael J. McKayJohn M. MillerPhillip W. CavinessJason T. DriscollMichael D. Miller
    • G06F15/16
    • H04L67/025H04L67/125
    • The information system and method for collecting, transferring and administrating quality control data, and particularly HACCP data disclosed allows bi-directional communication between a plurality of remote wireless measurement devices and a central web server through a local com/data link. The com/data link provides wireless communication with the various measurement devices and communication with the web server via an Internet connection. An Internet based database and website interface provides centralized data storage and easily accessible data management and analysis. Administrator/users can access and manage the data from any location or device with Internet connectivity. The measurement devices allow their operation and functions to be configured and reconfigured by uploading customized device “data packets” into the devices system memory. The Internet-based user interface allows administrator/users to remotely customize and modify these “data packets” for each individual measurement device to suit each specific application. The bi-directional communication between the various wireless measurement devices and the web server allows administrator/users to reconfigure each individual measurement device remotely through an Internet-based user interface.
    • 用于收集,传送和管理质量控制数据的信息系统和方法,特别是公开的HACCP数据允许多个远程无线测量设备和中央web服务器之间通过本地com /数据链路进行双向通信。 com /数据链路提供与各种测量设备的无线通信以及通过因特网连接与web服务器的通信。 基于互联网的数据库和网站界面提供集中的数据存储和易于访问的数据管理和分析。 管理员/用户可以从具有Internet连接的任何位置或设备访问和管理数据。 测量设备允许通过将定制的设备“数据包”上传到设备系统存储器中来配置和重新配置它们的操作和功能。 基于互联网的用户界面允许管理员/用户对每个单独的测量设备进行远程定制和修改这些“数据包”,以适应每个特定的应用。 各种无线测量设备和Web服务器之间的双向通信允许管理员/用户通过基于互联网的用户界面远程重新配置每个单独的测量设备。
    • 9. 发明授权
    • Trash catching device
    • 垃圾捕捉装置
    • US3976573A
    • 1976-08-24
    • US541715
    • 1975-01-17
    • John M. Miller
    • John M. Miller
    • B01D33/00B01D33/04B01D33/14
    • B01D33/04B01D33/465
    • An endless screen extends around an upper roller, above the stream of a ditch or the like, and a lower roller, submerged in the stream. A cleaning brush engages the underside of the lower reach of the screen, the brush rotating in a direction opposite to the movement of the screen, while a roller or rod supports the screen just below the brush. The brush may be driven directly from a motor and speed reducer, with a belt drive to an upper pulley producing further speed reduction, or a speed reduction drive between the motor and the brush with a belt or chain drive to the upper roller may be utilized.The lower roller for the screen has a fixed center surmounted by a plastic or rubber bushing about which a cylinder of the lower roller rotates.A weir directs water onto the screen, the weir including a transverse partition mounted in the ditch and having a rectangular slot therein. A rectangular funnel occupies the slot, having a base member extending to the screen and side members extending to side plates mounted on bars of a frame, with the forwardly extending members inside the plates.
    • 环形屏幕围绕上部辊子,在沟槽等的上方延伸,并且下部辊子淹没在流中。 清洁刷接合屏幕下方的下侧,刷子沿与屏幕移动相反的方向旋转,而辊或杆支撑在刷子正下方的屏幕。 刷子可以直接从马达和减速器驱动,带式驱动器可以进一步降低上皮带轮,或者可以利用皮带或链条驱动到上辊的马达和刷子之间的减速驱动。 。
    • 10. 发明授权
    • Energy storage systems and methods
    • 储能系统和方法
    • US09272627B2
    • 2016-03-01
    • US13574706
    • 2010-08-23
    • John M. Miller
    • John M. Miller
    • H02J7/34B60L1/00B60L11/00B60L3/00B60L11/18
    • B60L11/005B60L3/0046B60L11/1803B60L11/1861B60L2240/36B60L2250/22Y02T10/7005Y02T10/7022Y02T10/7044Y02T10/705Y10T307/625
    • In an energy storage system that includes a battery and an ultracapacitor, the state of charge (SOC) of the capacitor is the subject of a dynamic set-point. This dynamic set-point control is a function of the load regime to which the storage system is exposed, for example a hybrid automobile or electric automobile. The control may be based in part upon real-time fast Fourier transform analysis of load current, permitting real-time adjustment of control coefficients. In this way, it is possible to minimize the occurrence of the capacitor being fully charged at a time when it would be desired to be able to absorb high current, for example from regenerative braking. Likewise it is possible to minimize the occurrence of the capacitor being nearly discharged at a time when it would be desirable to have boost power available. A result is that even a relatively small ultracapacitor (having perhaps one two-hundredth the energy storage capacity of the battery) can permit greatly reducing waste heat dissipated in the battery, and can reduce otherwise unnecessary cycling of current into and out of the battery. This can extend battery life and battery performance.
    • 在包括电池和超级电容器的能量存储系统中,电容器的充电状态(SOC)是动态设定点的对象。 该动态设定点控制是存储系统暴露的负载状态的函数,例如混合动力汽车或电动汽车。 该控制部分可以部分地基于对负载电流的实时快速傅里叶变换分析,从而允许控制系数的实时调整。 以这种方式,可以最小化在期望能够吸收高电流(例如从再生制动)的时候完全充电的电容器的发生。 同样地,当期望具有可用的升压功率时,可以使电容器几乎放电的发生最小化。 结果是,即使是相对较小的超级电容器(具有电池的能量存储容量的二分之一)也可以大大减少电池中耗散的废热,并且可以减少不必要的电流进出电池的循环。 这可以延长电池寿命和电池性能。