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    • 1. 发明授权
    • System and method for automatically addressing devices in a multi-drop network
    • 用于自动寻址多点网络中的设备的系统和方法
    • US08700747B2
    • 2014-04-15
    • US13089678
    • 2011-04-19
    • James S. SpitaelsVishwas M. DeokarNamwook PaikBrian P. Mearns
    • James S. SpitaelsVishwas M. DeokarNamwook PaikBrian P. Mearns
    • G06F15/16
    • H04L61/2092H04L29/12254H04L29/1232H04L61/2038
    • Systems and methods that automatically assign addresses to devices coupled to a shared bus are provided. In one example, a system for assigning addresses to a plurality of devices within a network includes a memory and at least one processor coupled to the memory. The system is configured to instruct all of the plurality of devices to respectively select a first dynamic address from a first set of dynamic addresses, respectively assign a different static address to each device having a first dynamic address that uniquely identifies the device, instruct all of the plurality of devices having a first dynamic address that identifies at least two devices to respectively select a second dynamic address from a second set of dynamic addresses and respectively assign another different static address to each device having a second dynamic address that uniquely identifies the device.
    • 提供了自动将地址分配给耦合到共享总线的设备的系统和方法。 在一个示例中,用于向网络内的多个设备分配地址的系统包括存储器和耦合到存储器的至少一个处理器。 该系统被配置为指示所有多个设备分别从第一组动态地址选择第一动态地址,分别为具有唯一地识别设备的第一动态地址的每个设备分配不同的静态地址, 所述多个设备具有标识至少两个设备的第一动态地址,以分别从第二组动态地址选择第二动态地址,并且分别向具有唯一地标识所述设备的第二动态地址的每个设备分配另一个不同的静态地址。
    • 2. 发明授权
    • System of intelligent sensors in an electrical panelboard
    • 智能传感器系统在电气面板中
    • US08666685B2
    • 2014-03-04
    • US13089798
    • 2011-04-19
    • Namwook PaikJames S. Spitaels
    • Namwook PaikJames S. Spitaels
    • G06F19/00
    • G01D4/004G01R15/142G01R19/2513Y02B90/242Y04S20/322
    • According to one aspect, embodiments of the invention provide a system for monitoring a plurality of circuit branches, the system comprising a plurality of current sensors, each configured to be coupled to at least one of the plurality of circuit branches and to produce a signal having a level related to a current level of the one of the plurality of circuit branches, a communications bus, a plurality of sensor circuits, wherein each one of the plurality of sensor circuits is configured to convert the signal from the associated one of the plurality of current sensors to a digital measurement signal and provide the digital measurement signal to the communication bus, and a controller configured to receive the digital measurement signal from each sensor circuit over the communication bus and transmit data related to the digital measurement signal from each sensor circuit to an external client.
    • 根据一个方面,本发明的实施例提供了一种用于监视多个电路分支的系统,该系统包括多个电流传感器,每个电流传感器被配置为耦合到多个电路分支中的至少一个,并产生具有 与所述多个电路分支中的一个的当前电平相关的电平,通信总线,多个传感器电路,其中所述多个传感器电路中的每一个被配置为将来自所述多个 电流传感器到数字测量信号,并将数字测量信号提供给通信总线;以及控制器,被配置为通过通信总线从每个传感器电路接收数字测量信号,并将与每个传感器电路相关的数字测量信号的数据传输到 外部客户端。
    • 3. 发明申请
    • SYSTEM AND METHOD FOR AUTOMATICALLY ADDRESSING DEVICES IN A MULTI-DROP NETWORK
    • 用于在多个网络中自动寻址设备的系统和方法
    • US20120271924A1
    • 2012-10-25
    • US13089678
    • 2011-04-19
    • James S. SpitaelsVishwas M. DeokarNamwook PaikBrian P. Mearns
    • James S. SpitaelsVishwas M. DeokarNamwook PaikBrian P. Mearns
    • G06F15/177
    • H04L61/2092H04L29/12254H04L29/1232H04L61/2038
    • Systems and methods that automatically assign addresses to devices coupled to a shared bus are provided. In one example, a system for assigning addresses to a plurality of devices within a network includes a memory and at least one processor coupled to the memory. The system is configured to instruct all of the plurality of devices to respectively select a first dynamic address from a first set of dynamic addresses, respectively assign a different static address to each device having a first dynamic address that uniquely identifies the device, instruct all of the plurality of devices having a first dynamic address that identifies at least two devices to respectively select a second dynamic address from a second set of dynamic addresses and respectively assign another different static address to each device having a second dynamic address that uniquely identifies the device.
    • 提供了自动将地址分配给耦合到共享总线的设备的系统和方法。 在一个示例中,用于向网络内的多个设备分配地址的系统包括存储器和耦合到存储器的至少一个处理器。 该系统被配置为指示所有多个设备分别从第一组动态地址选择第一动态地址,分别为具有唯一地识别设备的第一动态地址的每个设备分配不同的静态地址, 所述多个设备具有标识至少两个设备的第一动态地址,以分别从第二组动态地址选择第二动态地址,并且分别向具有唯一地标识所述设备的第二动态地址的每个设备分配另一个不同的静态地址。
    • 6. 发明授权
    • System and method to calculate RMS current and true power in a multidrop sensor network
    • 在多点传感器网络中计算RMS电流和真实功率的系统和方法
    • US08660810B2
    • 2014-02-25
    • US13089793
    • 2011-04-19
    • Vishwas M. DeokarNamwook PaikJames S. Spitaels
    • Vishwas M. DeokarNamwook PaikJames S. Spitaels
    • G01R19/02
    • G01R19/2513G01R15/186
    • According to one aspect, embodiments of the invention provide a system for monitoring a plurality of circuit branches coupled to an input line, the system comprising a communication bus, a plurality of sensor circuits, each configured to be coupled to the communication bus and at least one of the plurality of circuit branches, wherein each sensor circuit is further configured to sample current in the at least one of the plurality of circuit branches, a controller configured to be coupled to the communication bus and the input line; wherein the controller is further configured to sample voltage on the input line, and wherein the controller is further configured to synchronize, via the communication bus, current sampling performed by the plurality of sensor circuits with the voltage sampling performed by the controller.
    • 根据一个方面,本发明的实施例提供了一种用于监测耦合到输入线的多个电路支路的系统,该系统包括通信总线,多个传感器电路,每个传感器电路被配置为耦合到通信总线,并且至少 多个电路分支中的一个,其中每个传感器电路还被配置为对所述多个电路分支中的所述至少一个电路分支中的电流进行采样;被配置为耦合到所述通信总线和所述输入线的控制器; 其中所述控制器还被配置为对所述输入线路上的电压进行采样,并且其中所述控制器还被配置为经由所述通信总线同步由所述多个传感器电路执行的由所述控制器执行的电压采样的电流采样。
    • 7. 发明申请
    • SYSTEM AND METHOD TO CALCULATE RMS CURRENT AND TRUE POWER IN A MULTIDROP SENSOR NETWORK
    • 在多传感器网络中计算RMS电流和真实功率的系统和方法
    • US20120271579A1
    • 2012-10-25
    • US13089793
    • 2011-04-19
    • Vishwas M. DeokarNamwook PaikJames S. Spitaels
    • Vishwas M. DeokarNamwook PaikJames S. Spitaels
    • G01R19/02
    • G01R19/2513G01R15/186
    • According to one aspect, embodiments of the invention provide a system for monitoring a plurality of circuit branches coupled to an input line, the system comprising a communication bus, a plurality of sensor circuits, each configured to be coupled to the communication bus and at least one of the plurality of circuit branches, wherein each sensor circuit is further configured to sample current in the at least one of the plurality of circuit branches, a controller configured to be coupled to the communication bus and the input line; wherein the controller is further configured to sample voltage on the input line, and wherein the controller is further configured to synchronize, via the communication bus, current sampling performed by the plurality of sensor circuits with the voltage sampling performed by the controller.
    • 根据一个方面,本发明的实施例提供了一种用于监测耦合到输入线的多个电路支路的系统,该系统包括通信总线,多个传感器电路,每个传感器电路被配置为耦合到通信总线,并且至少 多个电路分支中的一个,其中每个传感器电路还被配置为对所述多个电路分支中的所述至少一个电路分支中的电流进行采样;被配置为耦合到所述通信总线和所述输入线的控制器; 其中所述控制器还被配置为对所述输入线路上的电压进行采样,并且其中所述控制器还被配置为经由所述通信总线同步由所述多个传感器电路执行的由所述控制器执行的电压采样的电流采样。
    • 8. 发明申请
    • SYSTEM OF INTELLIGENT SENSORS IN AN ELECTRICAL PANELBOARD
    • 智能传感器在电气板上的系统
    • US20120271570A1
    • 2012-10-25
    • US13089798
    • 2011-04-19
    • Namwook PaikJames S. Spitaels
    • Namwook PaikJames S. Spitaels
    • G06F19/00
    • G01D4/004G01R15/142G01R19/2513Y02B90/242Y04S20/322
    • According to one aspect, embodiments of the invention provide a system for monitoring a plurality of circuit branches, the system comprising a plurality of current sensors, each configured to be coupled to at least one of the plurality of circuit branches and to produce a signal having a level related to a current level of the one of the plurality of circuit branches, a communications bus, a plurality of sensor circuits, wherein each one of the plurality of sensor circuits is configured to convert the signal from the associated one of the plurality of current sensors to a digital measurement signal and provide the digital measurement signal to the communication bus, and a controller configured to receive the digital measurement signal from each sensor circuit over the communication bus and transmit data related to the digital measurement signal from each sensor circuit to an external client.
    • 根据一个方面,本发明的实施例提供了一种用于监视多个电路分支的系统,该系统包括多个电流传感器,每个电流传感器被配置为耦合到多个电路分支中的至少一个,并产生具有 与所述多个电路分支中的一个的当前电平相关的电平,通信总线,多个传感器电路,其中所述多个传感器电路中的每一个被配置为将来自所述多个 电流传感器到数字测量信号,并将数字测量信号提供给通信总线;以及控制器,被配置为通过通信总线从每个传感器电路接收数字测量信号,并将与每个传感器电路相关的数字测量信号的数据传输到 外部客户端。
    • 10. 发明授权
    • System for self-powered, wireless monitoring of electrical current, power and energy
    • 用于自供电,无线监测电流,功率和能量的系统
    • US09267826B2
    • 2016-02-23
    • US12789922
    • 2010-05-28
    • Namwook PaikVishwas Mohaniraj DeokarJames H. Donalds
    • Namwook PaikVishwas Mohaniraj DeokarJames H. Donalds
    • H02J17/00H05K5/00H02M7/00G01D21/00H02J3/00G01R15/18H01F27/42G01R15/26
    • G01D21/00G01R15/183G01R15/26H01F27/427H02J3/00Y04S20/00
    • According to one aspect, embodiments of the invention provide a system for monitoring at least one circuit branch coupled to a power line, the system comprising at least one first module comprising a Current Transformer (CT) configured to be coupled to the at least one circuit branch and to produce a reference signal having a level related to a current level of the at least one circuit branch, a rectifier coupled to the CT and configured to produce a rectified reference signal, a capacitor coupled to the rectifier, and a first microcontroller coupled to the capacitor and the rectifier, wherein, the capacitor is configured to store energy from the rectified reference signal, and wherein, the first microcontroller is configured to be powered by the energy stored in the capacitor and to sample the rectified reference signal to determine the current level of the at least one circuit branch.
    • 根据一个方面,本发明的实施例提供了一种用于监测耦合到电力线的至少一个电路支路的系统,所述系统包括至少一个第一模块,该第一模块包括电流互感器(CT),该电流互感器被配置为耦合到所述至少一个电路 并且产生具有与所述至少一个电路分支的电流电平相关的电平的参考信号,耦合到所述CT并被配置为产生经整流的参考信号的整流器,耦合到所述整流器的电容器和耦合到所述整流器的第一微控制器 电容器和整流器,其中,电容器被配置为存储来自整流的参考信号的能量,并且其中,第一微控制器被配置为由存储在电容器中的能量供电,并对整流的参考信号进行采样以确定 至少一个电路分支的当​​前电平。