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    • 3. 发明授权
    • Automated emergency power supply system (EPSS) test reporting criticality of EPSS test failure
    • 自动应急电源系统(EPSS)测试报告EPSS测试失败的关键性
    • US08903674B2
    • 2014-12-02
    • US12917581
    • 2010-11-02
    • Martin A. HancockMarkus F. HirschboldJohn Charles EgginkPeter Cowan
    • Martin A. HancockMarkus F. HirschboldJohn Charles EgginkPeter Cowan
    • G01R31/40G01R31/42G01R31/34
    • G01R31/42G01R31/343
    • An automated emergency power supply system (EPSS) and testing solution that records generator load values and engine exhaust temperature values to evaluate whether an EPSS test satisfies legislated test criteria. The EPSS test is carried out under software control, which initiates a test by instructing an automatic transfer switch (ATS) to change its status to a test status, causing the essential loads to be powered by a generator instead of a main utility power source. Power monitors record the ATS and generator status during the test as well as electrical parameter data from the ATS and generator and exhaust temperature data and other engine parameter data from the generator. When the test is concluded, the ATS is instructed to return the status to normal so that power delivery is resumed from the main power source. The electrical and engine parameter data is analyzed and compared against legislated test criteria to determine a pass/fail result of the EPSS test.
    • 一个自动应急电源系统(EPSS)和测试解决方案,用于记录发电机负载值和发动机排气温度值,以评估EPSS测试是否满足立法测试标准。 EPSS测试在软件控制下进行,通过指示自动转换开关(ATS)将其状态更改为测试状态来启动测试,从而使基本负载由发电机而不是主效用电源供电。 功率监视器在测试期间记录ATS和发电机状态,以及来自ATS和发电机的电气参数数据以及来自发电机的排气温度数据和其他发动机参数数据。 当测试结束时,指示ATS将状态恢复正常,以便从主电源恢复供电。 电气和发动机参数数据与立法测试标准进行分析比较,以确定EPSS测试的通过/失败结果。
    • 4. 发明授权
    • Time coordinated energy monitoring system utilizing communications links
    • 时间协调能源监测系统利用通信链路
    • US08587452B2
    • 2013-11-19
    • US11274705
    • 2005-11-14
    • Arthur B. WynansEric K. HaightSimon H. LightbodyMarc RicciStewart J. HardingDaniel A. CummingMartin A. Hancock
    • Arthur B. WynansEric K. HaightSimon H. LightbodyMarc RicciStewart J. HardingDaniel A. CummingMartin A. Hancock
    • G08B23/00
    • G01D4/004Y02B90/242Y02B90/245Y02B90/246Y04S20/322Y04S20/40Y04S20/42
    • A method, system and device for synchronizing a time period over which energy measurements are accumulated for an energy monitoring system including a plurality of energy monitoring devices is described. The method comprises transmitting a first radio frequency packet from a time reference device via at least a first and a second of the plurality of energy monitoring devices to a third of the plurality of energy monitoring devices. The method further comprises adjusting a time register within the third energy monitoring device based on the reception of the packet. The method further comprises accumulating a measure of energy consumption by the third energy monitoring device of a load coupled with the third energy monitoring device. The method further comprises transmitting the measure of energy consumption from the third energy monitoring device via at least a fourth and a fifth of the plurality of energy monitoring devices to a data aggregation device. The method further comprises identifying by the data aggregation device an aggregate measure of energy consumption consumed by the load over the time period.
    • 描述了用于对包括多个能量监测装置的能量监测系统累积能量测量的时间段进行同步的方法,系统和装置。 该方法包括经由多个能量监测装置中的至少第一和第二能量监测装置将来自时间参考装置的第一射频分组发射到多个能量监测装置中的第三个。 该方法还包括基于分组的接收来调整第三能量监视设备内的时间寄存器。 该方法还包括通过与第三能量监测装置耦合的负载的第三能量监测装置累积能量消耗的量度。 该方法还包括通过至少四分之一和五分之一的能量监测装置将能量消耗的测量从第三能量监测装置发送到数据聚合装置。 该方法还包括由数据聚合设备识别在该时间段内由负载消耗的能量消耗的综合度量。
    • 5. 发明授权
    • Automated emergency power supply test using variable load bank stages
    • 使用可变负载库级自动应急电源测试
    • US08483982B2
    • 2013-07-09
    • US12917577
    • 2010-11-02
    • Martin A. HancockMarkus F. HirschboldJohn Charles EgginkPeter Cowan
    • Martin A. HancockMarkus F. HirschboldJohn Charles EgginkPeter Cowan
    • G01R21/00
    • G01R31/40
    • An automated emergency power supply system (EPSS) and testing solution that records generator load values and engine exhaust temperature values to evaluate whether an EPSS test satisfies legislated test criteria. The EPSS test is carried out under software control, which initiates a test by instructing an automatic transfer switch (ATS) to change its status to a test status, causing the essential loads to be powered by a generator instead of a main utility power source. Power monitors record the ATS and generator status during the test as well as electrical parameter data from the ATS and generator and exhaust temperature data and other engine parameter data from the generator. When the test is concluded, the ATS is instructed to return the status to normal so that power delivery is resumed from the main power source. The electrical and engine parameter data is analyzed and compared against legislated test criteria to determine a pass/fail result of the EPSS test.
    • 一个自动应急电源系统(EPSS)和测试解决方案,用于记录发电机负载值和发动机排气温度值,以评估EPSS测试是否满足立法测试标准。 EPSS测试在软件控制下进行,通过指示自动转换开关(ATS)将其状态更改为测试状态来启动测试,从而使基本负载由发电机而不是主效用电源供电。 功率监视器在测试期间记录ATS和发电机状态,以及来自ATS和发电机的电气参数数据以及来自发电机的排气温度数据和其他发动机参数数据。 当测试结束时,指示ATS将状态恢复正常,以便从主电源恢复供电。 电气和发动机参数数据与立法测试标准进行分析比较,以确定EPSS测试的通过/失败结果。
    • 6. 发明授权
    • Automated emergency power supply test with variable, priority-based transfer times
    • 自动应急电源测试,具有可变的,基于优先级的传输时间
    • US08407017B2
    • 2013-03-26
    • US12917551
    • 2010-11-02
    • Martin A. HancockMarkus F. HirschboldJohn Charles EgginkPeter Cowan
    • Martin A. HancockMarkus F. HirschboldJohn Charles EgginkPeter Cowan
    • G01R21/00
    • G01R31/42G01R31/343
    • An automated emergency power supply system (EPSS) and testing solution that records generator load values and engine exhaust temperature values to evaluate whether an EPSS test satisfies legislated test criteria. The EPSS test is carried out under software control, which initiates a test by instructing an automatic transfer switch (ATS) to change its status to a test status, causing the essential loads to be powered by a generator instead of a main utility power source. Power monitors record the ATS and generator status during the test as well as electrical parameter data from the ATS and generator and exhaust temperature data and other engine parameter data from the generator. When the test is concluded, the ATS is instructed to return the status to normal so that power delivery is resumed from the main power source. The electrical and engine parameter data is analyzed and compared against legislated test criteria to determine a pass/fail result of the EPSS test.
    • 一个自动应急电源系统(EPSS)和测试解决方案,用于记录发电机负载值和发动机排气温度值,以评估EPSS测试是否满足立法测试标准。 EPSS测试在软件控制下进行,通过指示自动转换开关(ATS)将其状态更改为测试状态来启动测试,从而使基本负载由发电机而不是主效用电源供电。 功率监视器在测试期间记录ATS和发电机状态,以及来自ATS和发电机的电气参数数据以及来自发电机的排气温度数据和其他发动机参数数据。 当测试结束时,指示ATS将状态恢复正常,以便从主电源恢复供电。 电气和发动机参数数据与立法测试标准进行分析比较,以确定EPSS测试的通过/失败结果。
    • 7. 发明申请
    • AUTOMATED EMERGENCY POWER SUPPLY TEST USING ENGINE EXHAUST TEMPERATURE
    • 使用发动机排气温度的自动应急电源测试
    • US20120105098A1
    • 2012-05-03
    • US12917537
    • 2010-11-02
    • Martin A. HancockMarkus F. HirschboldJohn Charles EgginkPeter Cowan
    • Martin A. HancockMarkus F. HirschboldJohn Charles EgginkPeter Cowan
    • G01R31/34
    • G01R31/42G01R31/343
    • An automated emergency power supply system (EPSS) and testing solution that records generator load values and engine exhaust temperature values to evaluate whether an EPSS test satisfies legislated test criteria. The EPSS test is carried out under software control, which initiates a test by instructing an automatic transfer switch (ATS) to change its status to a test status, causing the essential loads to be powered by a generator instead of a main utility power source. Power monitors record the ATS and generator status during the test as well as electrical parameter data from the ATS and generator and exhaust temperature data and other engine parameter data from the generator. When the test is concluded, the ATS is instructed to return the status to normal so that power delivery is resumed from the main power source. The electrical and engine parameter data is analyzed and compared against legislated test criteria to determine a pass/fail result of the EPSS test.
    • 一个自动应急电源系统(EPSS)和测试解决方案,用于记录发电机负载值和发动机排气温度值,以评估EPSS测试是否满足立法测试标准。 EPSS测试在软件控制下进行,通过指示自动转换开关(ATS)将其状态更改为测试状态来启动测试,从而使基本负载由发电机而不是主效用电源供电。 功率监视器在测试期间记录ATS和发电机状态,以及来自ATS和发电机的电气参数数据以及来自发电机的排气温度数据和其他发动机参数数据。 当测试结束时,指示ATS将状态恢复正常,以便从主电源恢复供电。 电气和发动机参数数据与立法测试标准进行分析比较,以确定EPSS测试的通过/失败结果。
    • 8. 发明申请
    • AUTOMATED EMERGENCY POWER SUPPLY SYSTEM (EPSS) TEST REPORTING CRITICALITY OF EPSS TEST FAILURE
    • 自动应急电源系统(EPSS)测试报告EPSs测试失败的关键
    • US20120105097A1
    • 2012-05-03
    • US12917581
    • 2010-11-02
    • Martin A. HancockMarkus F. HirschboldJohn Charles EgginkPeter Cowan
    • Martin A. HancockMarkus F. HirschboldJohn Charles EgginkPeter Cowan
    • G01R31/40
    • G01R31/42G01R31/343
    • An automated emergency power supply system (EPSS) and testing solution that records generator load values and engine exhaust temperature values to evaluate whether an EPSS test satisfies legislated test criteria. The EPSS test is carried out under software control, which initiates a test by instructing an automatic transfer switch (ATS) to change its status to a test status, causing the essential loads to be powered by a generator instead of a main utility power source. Power monitors record the ATS and generator status during the test as well as electrical parameter data from the ATS and generator and exhaust temperature data and other engine parameter data from the generator. When the test is concluded, the ATS is instructed to return the status to normal so that power delivery is resumed from the main power source. The electrical and engine parameter data is analyzed and compared against legislated test criteria to determine a pass/fail result of the EPSS test.
    • 一个自动应急电源系统(EPSS)和测试解决方案,用于记录发电机负载值和发动机排气温度值,以评估EPSS测试是否满足立法测试标准。 EPSS测试在软件控制下进行,通过指示自动转换开关(ATS)将其状态更改为测试状态来启动测试,从而使基本负载由发电机而不是主效用电源供电。 功率监视器在测试期间记录ATS和发电机状态,以及来自ATS和发电机的电气参数数据以及来自发电机的排气温度数据和其他发动机参数数据。 当测试结束时,指示ATS将状态恢复正常,以便从主电源恢复供电。 电气和发动机参数数据与立法测试标准进行分析比较,以确定EPSS测试的通过/失败结果。
    • 10. 发明申请
    • Body Capacitance Electric Field Powered Device For High Voltage Lines
    • 高压线路电容电容电源装置
    • US20080246507A1
    • 2008-10-09
    • US10566007
    • 2004-07-22
    • Colin GunnSimon H. LightbodyBradford J. ForthMartin A. HancockGeoffrey T. Hyatt
    • Colin GunnSimon H. LightbodyBradford J. ForthMartin A. HancockGeoffrey T. Hyatt
    • G01R31/40
    • H02G7/14G01R1/22G01R15/14H02G7/00
    • Devices that couple to high voltage transmission lines obtain power themselves using the body capacitance of an element of the devices. The devices generate a comparatively lower voltage from the current flowing between the high voltage line and the element of the device that generates the body capacitance. The devices can be used to operate sensors that monitor the transmission lines or parameters of the power distribution system, such as current, line temperature, vibration, and the like. The devices can also be used as indicators, such as aircraft warning lights, information signs, etc. In addition, the devices can operate as RF transmission/reception or repeater devices, radar devices, mesh networking nodes, video/audio surveillance, sound emitting devices for scaring animals, drones that traverse the power line, etc. Because the devices operate in response to line voltage rather than current, the devices are reliable even in low current conditions.
    • 耦合到高压传输线的器件使用器件元件的体电容自身获得电源。 这些器件从在高压线路和产生体电容的器件的元件之间流动的电流产生相对较低的电压。 这些装置可用于操作监视配电系统的传输线或参数的传感器,例如电流,线路温度,振动等。 这些设备也可以用作飞机警示灯,信息标志等指示器。此外,设备可以作为RF发射/接收或中继器设备,雷达设备,网状网络节点,视频/音频监控,声音发射 用于吓唬动物的装置,穿过电源线的无人机等。由于这些装置响应于线路电压而不是电流而工作,所以即使在低电流条件下,这些装置也是可靠的。