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    • 1. 发明申请
    • LIGHT EXTINCTION BASED NON-DESTRUCTIVE FLYING INSECT DETECTOR
    • 基于轻量化的非破坏性飞行检测器
    • WO2003084319A1
    • 2003-10-16
    • PCT/US2003/009361
    • 2003-03-26
    • ECOLAB INC.
    • GARDNER, James, P., Jr.DEMATTIA, David, N.
    • A01M31/00
    • A01M31/002A01M1/026A01M2200/011A01M2200/012
    • A non-destructive flying insect detector is disclosed. The detector creates a sheet or curtain of light comprising a sensing zone and detects, by means of light extinction, individual flying insects that intersect the sensing zone. The sensing zone is created by a beam of light that enters the sensing zone area and is then bounced between opposing reflective surfaces. Preferably a laser is utilized to generate the beam of light. The beam of light leaves the sensing zone area and is incident on a light detection device (such as a photo cell) connected to an amplifier circuit. The light detection device monitors the light intensity and is arranged and configured to detect changes in the light intensity. The changes are electronically converted to a pest detection signal and/or to a flying insect count. Each flying pest detection signal may also be associated with other monitored data. For example, the time and date when the count occurred, the temperature, and the ambient light, among other parameters may be stored with the flying insect count(s). The stored data may be transmitted in real time, transmitted periodically, and/or collected with a PDA device or the like. The detector may be completely passive or it may provide an attractant for the flying insects - such as UV lamps. Further, the detector can act as a counter alone ( e.g., as a flying insect monitor without a physical trap) or it can operate together with a trap. In the latter case, the flying insect may become entangled on a glue or sticky board lying beneath the light curtain and/or become eliminated by an electrical discharge device.
    • 公开了一种非破坏性飞行昆虫检测器。 检测器产生包括感测区域的薄片或光幕,并且通过光灭绝检测与感测区相交的各个飞行昆虫。 感光区域是通过进入感测区域的光束产生的,然后在相对的反射面之间弹起。 优选地,使用激光来产生光束。 光束离开感测区域并入射到连接到放大器电路的光检测装置(例如光电池)上。 光检测装置监视光强度,并配置和配置为检测光强度的变化。 这些变化被电子转换为有害生物检测信号和/或飞行昆虫计数。 每个飞行的有害生物检测信号也可以与其他监测数据相关联。 例如,计数发生的时间和日期,温度和环境光以及其他参数可以与飞行昆虫计数一起存储。 所存储的数据可以实时发送,周期性发送和/或用PDA设备等收集。 检测器可以是完全无源的,或者它可以为飞行昆虫(例如UV灯)提供引诱剂。 此外,检测器可以单独地用作计数器(例如,作为没有物理陷阱的飞行昆虫监视器),或者它可以与陷阱一起操作。 在后一种情况下,飞虫可能会缠绕在位于光幕下方的胶水或粘性板上和/或被放电装置消除。
    • 2. 发明申请
    • METHOD AND APPARATUS FOR AUTOMATIC PEST TRAP REPORT GENERATION AND FOR RECORDING ADDITIONAL TRAP PARAMETER DATA
    • 用于自动EST TR TR AP AP DATA DATA DATA DATA DATA DATA DATA DATA DATA DATA DATA DATA DATA DATA
    • WO2003084320A1
    • 2003-10-16
    • PCT/US2003/009362
    • 2003-03-26
    • ECOLAB, INC.
    • GARDNER, James, P.SKAFF, Stephen, X.LUND, Kraig, S.DEMATTIA, David, N.HOLZMAN, Louis, Mark
    • A01M31/00
    • A01M31/002A01M1/026A01M23/00A01M2200/011A01M2200/012
    • A reporting system for collecting, communicating and analyzing information from a plurality of best monitoring locations is disclosed. The monitored locations include activity sensing pest devices (11). These devices can include traps and/or passive and active monitoring devices not having a trapping or killing functionality. While traps may constitute the majority of activity sensing pest devices in a given pest control program, devices which only monitor pest activity may be preferred in some locations and applications. The system includes automatic reporting from the plurality of activity sensing pest devices and also includes physical inspection data. Preferably an automatic real-time communication system is used, with the preferred communication system being a radio-frequency (RF) or other over-the-air system (22). However, hardwired systems (21), use of a personal digital assistant (PDA) (21) as an interim data carrier, and other technologies may also be employed. Manual input means (13) for providing the additional physical inspection data on the activity sensing pest device parameters and a computer based report generation means (of the resulting combined data) provide for a robust and efficient pest monitoring and/or trapping tool.
    • 公开了一种用于收集,通信和分析来自多个最佳监控位置的信息的报告系统。 监测的位置包括活动感测有害生物装置(11)。 这些设备可以包括不具有捕获或杀死功能的陷阱和/或被动和主动监视设备。 尽管在特定的有害生物控制计划中,陷阱可能构成大多数感染有害生物装置的活动,但是在某些地点和应用中,仅监测有害生物活动的装置可能是优选的。 该系统包括来自多个活动感测有害生物装置的自动报告,并且还包括物理检查数据。 优选地,使用自动实时通信系统,优选的通信系统是射频(RF)或其他无线系统(22)。 然而,也可以使用硬连线系统(21),使用个人数字助理(PDA)(21)作为临时数据载体,以及其他技术。 用于提供关于活动感测有害生物装置参数的附加物理检查数据的手动输入装置(13)和由计算机产生的组合数据的报告生成装置提供强有力的和有效的害虫监测和/或捕获工具。