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    • 2. 发明授权
    • Apparatus for monitoring temperature and method for operating same
    • 用于监测温度的装置及其操作方法
    • US07215212B2
    • 2007-05-08
    • US10822322
    • 2004-04-12
    • Michael Joseph MahonyDaniel White SextonJohn Erik Hershey
    • Michael Joseph MahonyDaniel White SextonJohn Erik Hershey
    • G01K7/00H03B5/24H03K3/03
    • H03K3/0315G01K7/01
    • The present invention is directed to a system that enables the simultaneous remote monitoring of a plurality of infants' skin temperatures. The system comprises an electronic circuit that combines the functions of sensoring and multiple-channel transmitting, a pre-deployment temperature bath for calibration of the temperature sensor(s), and a receiving and reporting station for centralized monitoring the infants' skin temperatures. The present invention is further directed to a temperature sensor that measures the temperature and transmits the data in multiple channels to a remote receiver. In one embodiment, the temperature sensor comprises a ring oscillator, having a plurality of odd number of inverters, and the ring oscillator is capable of utilizing less than all of the inverters in the ring to modulate the frequency of the signal. In another embodiment, the temperature sensor comprises one inverter and a plurality of delay elements and sensor transmits phase shifted signals to modulate the signals. A signal processing method is also disclosed.
    • 本发明涉及能够同时远程监测多个婴儿皮肤温度的系统。 该系统包括组合传感和多通道传输功能的电子电路,用于校准温度传感器的预部署温度浴,以及用于集中监控婴儿皮肤温度的接收和报告站。 本发明还涉及一种温度传感器,其测量温度并将多个通道中的数据传输到远程接收器。 在一个实施例中,温度传感器包括具有多个奇数个反相器的环形振荡器,并且环形振荡器能够利用小于环中的全部反相器来调制信号的频率。 在另一个实施例中,温度传感器包括一个逆变器,并且多个延迟元件和传感器传输相移信号以调制信号。 还公开了一种信号处理方法。
    • 9. 发明申请
    • SYSTEM AND METHOD FOR AUTOMATED FAULT CONTROL AND RESTORATION OF SMART GRIDS
    • 用于自动故障控制和智能网络恢复的系统和方法
    • US20130003238A1
    • 2013-01-03
    • US13173651
    • 2011-06-30
    • Stephen Francis BushMichael Joseph Mahony
    • Stephen Francis BushMichael Joseph Mahony
    • H02H7/00
    • G06Q50/06H02H3/006H02H3/0935H02H7/261
    • A self-organizing protection coordination system within a power network is provided. The self-organizing protection coordination system in the power network includes a plurality of distribution devices communicatively coupled to each other in a power network. The power network also includes a protection device coupled to each of the plurality of distribution devices configured to transmit power in the distribution network. The power network further includes a controller coupled to each of the plurality of distribution devices. The controller receives communication channel characteristics from a plurality of distribution devices in a distribution network at an interval of time. The controller also computes a delay in time for receiving the communication characteristics. The controller further determines a plurality of reliability indicators at each of the plurality of distribution devices. The controller adjusts tripping characteristics of the plurality of distribution devices to minimize the reliability indicators based on the computed delay.
    • 提供电力网络内的自组织保护协调系统。 电力网络中的自组织保护协调系统包括在电力网络中彼此通信耦合的多个分配设备。 电力网络还包括耦合到被配置为在分配网络中发送功率的多个分配设备中的每一个的保护设备。 电力网络还包括耦合到多个分配装置中的每一个的控制器。 控制器以一定的时间间隔从分发网络中的多个分发设备接收通信信道特性。 控制器还计算接收通信特性的时间延迟。 控制器进一步确定多个分配装置中的每一个处的多个可靠性指示器。 控制器调整多个分配装置的跳闸特性,以便根据所计算的延迟来最小化可靠性指标。