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    • 1. 发明授权
    • Method for calculating power for data storage systems
    • 计算数据存储系统功耗的方法
    • US08166315B1
    • 2012-04-24
    • US11690153
    • 2007-03-23
    • Robert F. WambachF. William FrenchRobert MacArthurRobert Guenther
    • Robert F. WambachF. William FrenchRobert MacArthurRobert Guenther
    • G06F1/00
    • G06F1/26
    • A method for calculating power for a data storage system. The method includes: measuring power requirement for each one of a plurality of components for use in one of a plurality of possible system configurations; storing the measured power requirement in a table; entering into the table a specified one of the possible system configurations to obtain the power requirement for such one of the specified system configurations; calculating from the table the total power expected for the specified system configuration; presenting the calculated power to a user; determining whether the calculated power is acceptable or unacceptable to the user; and if determined to be unacceptable, entering into the table a new system configuration.
    • 一种用于计算数据存储系统的功率的方法。 该方法包括:测量多个部件中的每个部件的功率需求,以便在多个可能的系统配置之一中使用; 将测量的功率需求存储在表中; 在指定的系统配置中输入指定的一个系统配置,以获得这种指定系统配置的功率需求; 从表中计算预期的指定系统配置的总功率; 向用户呈现计算的电力; 确定所计算的功率是否为用户可接受或不可接受; 并且如果确定为不可接受,则在表中输入新的系统配置。
    • 3. 发明授权
    • Troubleshooting system for industrial control programs
    • 工业控制程序故障排除系统
    • US08726091B2
    • 2014-05-13
    • US13168187
    • 2011-06-24
    • Robert GuentherSteven A. ZuponcicKenwood H. Hall
    • Robert GuentherSteven A. ZuponcicKenwood H. Hall
    • G06F11/00
    • G05B19/0426G05B19/056G05B2219/14112
    • A system for troubleshooting control programs employs an event log that captures the values of inputs to outputs from the control program only at event times determined by changes in input or output data. The program allows the event log to be reviewed in jumps to only events which cause a change in output value of an instruction or particular change in output value of a particular instruction, greatly simplifying the troubleshooting process. The event log records a particular instruction instance associated with the event permitting the operation of the program to be studied in reverse order. The event log may also record a timestamp of the event allowing time stamped data from different devices to be synchronized with the review of the events.
    • 用于故障排除控制程序的系统采用一个事件日志,仅在由输入或输出数据变化确定的事件时间内从控制程序中捕获输入的输入值。 该程序允许事件日志被跳转到仅导致指令的输出值改变的事件或特定指令的输出值的特定变化的事件,从而大大简化了故障排除过程。 事件日志记录与事件相关联的特定指令实例,允许以相反的顺序研究程序的操作。 事件日志还可以记录事件的时间戳,允许来自不同设备的时间戳数据与事件的审查同步。
    • 5. 发明申请
    • ESP performance optimization control
    • ESP性能优化控制
    • US20050178265A1
    • 2005-08-18
    • US10780811
    • 2004-02-18
    • Ralph AltmanRobert Guenther
    • Ralph AltmanRobert Guenther
    • B03C3/68B03C3/36
    • B03C3/68Y10S323/903
    • A gas separation apparatus which uses electrostatic precipitators and a DC power supply is controlled to optimally remove moderate to high resistivity ash. The DC power supply is pulse width modulated to maximize the product of the peak electric field and the average electric field. The method used to optimize operation includes selecting initial on and off times for the power supply, operating the power supply using the initial off and on times, and progressively decreasing the off time. A determination is made whether the off time may be further decreased. Ultimately, the on and off time intervals that produce the highest peak and average voltage are determined, and the system is operated using these parameters. A procedure may be periodically repeated to monitor the process and detect if there has been a change in the system that would require new time intervals. The novel separation apparatus and control method offer particular synergy when applied to the effluent stream from a coal-fired electric power plant or other similar gas streams.
    • 控制使用静电除尘器和直流电源的气体分离装置,以最佳地去除中等至高电阻率的灰分。 直流电源被脉宽调制,以使峰值电场和平均电场的乘积最大化。 用于优化操作的方法包括选择电源的初始接通和关闭时间,使用初始关闭和接通时间来操作电源,并逐渐减少关闭时间。 确定关闭时间是否可以进一步降低。 最终,确定产生最高峰值和平均电压的开和关时间间隔,并且使用这些参数来操作系统。 可以周期性地重复过程以监视该过程并且检测系统中是否存在需要新的时间间隔的变化。 当应用于来自燃煤电厂或其他类似气流的流出物流时,新颖的分离装置和控制方法提供特别的协同作用。
    • 7. 发明申请
    • Capturing Data During Operation of an Industrial Controller for the Debugging of Control Programs
    • 在控制程序调试的工业控制器运行期间捕获数据
    • US20120330452A1
    • 2012-12-27
    • US13168236
    • 2011-06-24
    • Robert GuentherSteven A. ZuponcicKenwood H. Hall
    • Robert GuentherSteven A. ZuponcicKenwood H. Hall
    • G06F19/00
    • G05B19/41875G05B19/058
    • An industrial controller module (13a) is provided with a routine of program instructions (29a) for storing a log of I/O table state changes (31) in a defined portion of memory (23). Upon the occurrence of a trigger event, a file of the state changes (37) is saved in the memory (23). Each entry (32) in the log of I/O table state changes (31) includes a timestamp (33) and values of each word of I/O state data (36) that changed at a time of the timestamp. Logs of state change data (16a), including timestamp data, can also be saved for intelligent sensors and actuators (16) and uploaded with the log of controller processor state data (31) to a computer (20) with a diagnostic program (21a) for playing back the state changes and synchronizing changes of the intelligent sensors and actuators (16) with changes of the controller processor module (13a).
    • 工业控制器模块(13a)具有用于在存储器(23)的限定部分中存储I / O表状态改变(31)的日志的程序指令(29a)的例程。 在发生触发事件时,状态改变文件(37)被保存在存储器(23)中。 I / O表状态改变日志中的每个条目(32)(31)包括时间戳(33)和在时间戳时改变的I / O状态数据(36)的每个字的值。 还可以为智能传感器和执行器(16)保存包括时间戳数据的状态改变数据(16a)的日志,并用控制器处理器状态数据(31)的日志与计算机(20)一起上载诊断程序(21a ),用于通过控制器处理器模块(13a)的改变来回放状态变化并使智能传感器和致动器(16)的变化同步。
    • 10. 发明申请
    • Polarity reversing circuit for electrostatic precipitator systems
    • 静电除尘器系统的极性反转电路
    • US20060130648A1
    • 2006-06-22
    • US11338525
    • 2006-01-24
    • Ralph AltmanRobert GuentherGrady Nichols
    • Ralph AltmanRobert GuentherGrady Nichols
    • B03C3/00
    • B03C3/68B03C3/74Y10S323/903
    • A gas separation apparatus using electrostatic precipitators and mechanical rappers is enhanced by the addition of an opposite polarity refreshing power supply and a switching arrangement. The switching components selectively disconnect the primary power supply and connect the refreshing power supply to the electrostatic precipitator, causing an electrical impulse in the precipitator sufficient to dislodge precipitate from the collector plates. In one embodiment, an RC filter is further provided to control the impulse and reduce the burden that would otherwise be placed upon the refreshing power supply. In a second embodiment, a pair of SCR strings serve as the switches. Cleaning power is delivered from a capacitor through one of the SCR strings using a resonant circuit, the resonance which causes the SCR string to commutate off after the impulse has been delivered. The capacitor is charged to a pre-calculated potential, dependent upon a measured potential just prior to delivery of the cleaning power, to ensure that the cleaning voltage stays below a corona onset voltage. The novel separation apparatus and technique offer particular synergy when applied to the effluent stream from a coal-fired electric power plant or other similar gas streams.
    • 使用静电除尘器和机械敲击器的气体分离装置通过添加相反极性的刷新电源和开关装置来增强。 开关组件选择性地断开主电源并将刷新的电源连接到静电除尘器,使得除尘器中的电脉冲足以从收集板上移除沉淀物。 在一个实施例中,进一步提供RC滤波器以控制脉冲并减轻另外将被置于刷新电源的负担。 在第二实施例中,一对SCR串用作开关。 使用谐振电路从电容器通过SCR串中的一个SCR串来传送清洁电力,该谐振电路在脉冲输送之后导致SCR串整流。 电容器被充电到预先计算的电位,这取决于在传送清洁功率之前的测量电位,以确保清洁电压保持低于电晕起始电压。 当应用于来自燃煤电厂或其它类似气流的流出物流时,新颖的分离装置和技术提供特别的协同作用。