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    • 99. 发明申请
    • Detection and Security System for Occupants in Vehicles
    • 车辆乘员检测和安全系统
    • US20160272112A1
    • 2016-09-22
    • US14661049
    • 2015-03-18
    • CarEye LLC
    • Rocco DeGraziaAhmed Megahed
    • B60Q9/00H02S10/20G01J5/00H01M10/46B60R21/015G01S19/24
    • B60Q9/00G01J5/0025G08B21/22G08B21/24H02S10/20
    • A method for notifying a user regarding a critical condition in a vehicle is presented. A monitoring device is positioned on a surface of a vehicle within an appropriate range of distance from a reference point in the vehicle. The monitoring device includes an infrared sensor for detecting radiation emitted from animate objects in a vehicle. A temperature of an interior of the vehicle is regularly measured. The interior of the vehicle is checked for any radiation emitted in order to detect a presence of an occupant located within the vehicle. Upon determining the presence of the occupant, verification is made whether the temperature of an interior of the vehicle is at a threshold temperature, whereupon a notification message is generated to a user associated with the monitoring device. Confirmation of receipt of the message may be required before the monitoring device attempts to alert alternate emergency contact numbers.
    • 提出了一种用于通知用户关于车辆中的关键状况的方法。 监控装置位于车辆的表面上,距离车辆中的参考点的适当距离范围内。 监视装置包括用于检测从车辆中的动画物体发射的辐射的红外传感器。 定期测量车辆内部的温度。 检查车辆的内部是否发射任何辐射,以便检测位于车辆内的乘员的存在。 在确定乘员的存在时,验证车辆内部的温度是否处于阈值温度,从而向与监视设备相关联的用户生成通知消息。 在监控设备尝试提醒备用紧急联系号码之前,可能需要确认收到该消息。
    • 100. 发明申请
    • A MONITORING SYSTEM AND METHOD FOR MEGAWATT LEVEL BATTERY ENERGY STORAGE POWER PLANT
    • 电力电池储能发电厂监控系统及方法
    • US20160218511A1
    • 2016-07-28
    • US14123518
    • 2013-10-17
    • ZHANGJIAKOU WIND AND SOLAR POWER ENERGY DEMONSTRATIONCHINA ELECTRIC POWER RESEARCH INSTITUTESTATE GRID CORPORATION OF CHINA
    • Xiangjun LiDong HuiXiaokang LaiXuecui JiaLiye WangGuangchao GuoPing WangYanting LiangLiang Zhang
    • H02J3/32G05B13/04H02S10/20
    • H02J3/32G05B13/04H02S10/20H02S50/00
    • The present invention relates to a monitoring and controlling system and method for megawatt level battery energy storage power plant, which includes a central monitoring and controlling module and local monitoring and controlling modules, between the two modules adopts real time and non real time communication parallel network structure to communicate with each other. The central monitoring and controlling module is configured to read the data of the battery energy storage power plant through the communication network, and store and manage the data, determine the total power demand of the battery energy storage power plant, determine all the power demand values of the energy storage substation, and send to all the local monitoring and controlling modules, calculate all the power demand values of the energy storage units, and send to the energy storage units, and then send all the power demand values of the energy storage units, real time and non real time data to the central monitoring and controlling module for unified storage and management. The monitoring system and method meets the requirements of cluster real-time rapid control and thousands of transmission data monitoring, and ensures the healthy operation of the battery to battery energy storage power station more security and stability.
    • 本发明涉及一种兆瓦级电池储能电站的监控系统和方法,包括中央监控模块和本地监控模块,两个模块之间采用实时和非实时通信并行网络 结构相互通信。 中央监控模块配置为通过通信网络读取电池储能电站的数据,存储和管理数据,确定电池储能电站的总需电量,确定所有电力需求值 的储能变电站,并发送到所有的本地监控模块,计算储能装置的所有电力需求值,并发送到储能装置,然后发送储能装置的所有电力需求值 ,实时和非实时数据传输到中央监控模块进行统一存储和管理。 监控系统和方法满足集群实时快速控制和数千个传输数据监控的要求,确保电池对电池储能电站的运行更加安全稳定。