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    • 1. 发明授权
    • Method of communication between reduced functionality devices in an IEEE 802.15.4 network
    • IEEE 802.15.4网络中缩减功能设备之间的通信方法
    • US07486631B2
    • 2009-02-03
    • US11254382
    • 2005-10-19
    • Geoff MulliganGregory A. Ehlers
    • Geoff MulliganGregory A. Ehlers
    • G08C17/00
    • H04W72/1263H04W4/90H04W76/10H04W76/50H04W88/04
    • In a 802.15.4 network, each reduced functionality device (RFD) is permitted to communicate with only an assigned full function device (FFD). The present invention allows each of the RFDs to communicate with another RFD upon the RFD determining that the local FFD assigned to the RFD is inoperable or unable to communicate. Under emergency conditions, the RFD is able to communicate with a closely located RFDs such that the closely located RFDs can receive and respond to an emergency situation and/or repeat the message. To satisfy the 802.15.4 standards, communication between the RFDs is allowed only during emergency conditions and when the FFD is inoperative. A comprehensive test procedure is included to insure the integrity of the system is preserved at all times.
    • 在802.15.4网络中,每个缩减功能设备(RFD)都允许与仅分配的全功能设备(FFD)通信。 本发明允许每个RFD在RFD确定分配给RFD的本地FFD不可操作或不能通信时与另一个RFD通信。 在紧急情况下,RFD能够与紧邻的RFD进行通信,使得紧密定位的RFD可以接收并响应紧急情况和/或重复该消息。 为了满足802.15.4标准,RFD之间的通信仅在紧急情况下和FFD不工作时才允许。 包括一个全面的测试程序,以确保系统的完整性始终得到保持。
    • 5. 发明授权
    • Method of communication between reduced functionality devices in an IEEE 802.15.4 network
    • IEEE 802.15.4网络中缩减功能设备之间的通信方法
    • US07940675B2
    • 2011-05-10
    • US12333918
    • 2008-12-12
    • Geoff MulliganGregory A. Ehlers
    • Geoff MulliganGregory A. Ehlers
    • H04L1/00
    • H04W72/1263H04W4/90H04W76/10H04W76/50H04W88/04
    • In a 802.15.4 network, each reduced functionality device (RFD) is permitted to communicate with only an assigned full function device (FFD). The present invention allows each of the RFDs to communicate with another RFD upon the RFD determining that the local FFD assigned to the RFD is inoperable or unable to communicate. Under emergency conditions, the RFD is able to communicate with a closely located RFDs such that the closely located RFDs can receive and respond to an emergency situation and/or repeat the message. To satisfy the 802.15.4 standards, communication between the RFDs is allowed only during emergency conditions and when the FFD is inoperative. A comprehensive test procedure is included to insure the integrity of the system is preserved at all times.
    • 在802.15.4网络中,每个缩减功能设备(RFD)都允许与仅分配的全功能设备(FFD)通信。 本发明允许每个RFD在RFD确定分配给RFD的本地FFD不可操作或不能通信时与另一个RFD通信。 在紧急情况下,RFD能够与紧邻的RFD进行通信,使得紧密定位的RFD可以接收并响应紧急情况和/或重复该消息。 为了满足802.15.4标准,RFD之间的通信仅在紧急情况下和FFD不工作时才允许。 包括一个全面的测试程序,以确保系统的完整性始终得到保持。
    • 6. 发明授权
    • Environmental condition control and energy management system and method
    • 环境条件控制与能源管理体系及方法
    • US5924486A
    • 1999-07-20
    • US960748
    • 1997-10-29
    • Gregory A. EhlersRichard M. Silva
    • Gregory A. EhlersRichard M. Silva
    • F24F11/02F24F11/00G05D23/19F23N3/00H02J1/00
    • G05D23/1923F24F11/006F24F2011/0058Y10T307/469
    • An indoor environmental condition control and energy management system includes a plurality of inputs. A user input receives user input parameters including a desired indoor environmental condition range for at least one energy unit price point. An indoor environmental condition input receives a sensed indoor environmental condition. An energy price input receives a schedule of projected energy unit prices per time periods. A processor, coupled to the inputs, computes an environmental condition deadband range for multiple energy unit price points based on the user input parameters and controls at least one energy-consuming load device to maintain the indoor environmental condition within the computed deadband range for a then-current energy unit price point. In an embodiment, the environmental condition includes at least temperature and the at least one load device includes a heating and cooling system. The processor, in one embodiment, communicates through a communications link with at least one energy supply company and selects one energy supply company for a premise to minimize energy consumption cost.
    • 室内环境条件控制和能量管理系统包括多个输入。 用户输入接收包括用于至少一个能量单位价格点的期望的室内环境条件范围的用户输入参数。 室内环境条件输入接收感测到的室内环境条件。 能源价格投入收到每个时间段的预计能源单位价格表。 耦合到输入的处理器基于用户输入参数计算多个能量单位价格点的环境条件死区范围,并且控制至少一个能耗负载装置,以将室内环境条件维持在所计算的死区范围内 当前能源单位价格点。 在一个实施例中,环境条件至少包括温度,并且至少一个负载装置包括加热和冷却系统。 在一个实施例中,处理器通过与至少一个能量供应公司的通信链路进行通信,并为一个前提选择一个能量供应公司以最小化能量消耗成本。
    • 8. 发明授权
    • System and method for demand limiting resistive load management
    • 需求限制电阻负载管理的系统和方法
    • US08014905B2
    • 2011-09-06
    • US11683139
    • 2007-03-07
    • Gregory A. Ehlers
    • Gregory A. Ehlers
    • G05D17/00H02J1/10H02J3/46H02J3/14H02J1/04
    • H02J3/14H02J13/0006Y02B70/3225Y04S20/222Y10T307/352Y10T307/406Y10T307/438
    • An electricity demand limiting system for limiting the electricity consumption of at least one resistive load device. The demand limiting system includes a consumption controller associated with the resistive load device that is operable to infinitely vary the amount of electricity being consumed by the load device. The consumption control device is in operative communication with a load controller such that the load controller can generate a control signal to affect the operation of the consumption control circuit. Preferably, the consumption control circuit is a triac-based circuit that receives the control signal from the load controller and limits the amount of electricity consumed by the resistive load device. The load controller can receive input signals from sensors monitoring the electricity delivery system or from the premise electricity meter. Further, the load controller can receive external inputs from a third party that determine the operation of the load controller in limiting the electricity demands of the resistive load device.
    • 一种用于限制至少一个电阻性负载装置的电力消耗的电力需求限制系统。 需求限制系统包括与电阻性负载装置相关联的消耗控制器,其可操作以无限地改变由负载装置消耗的电量。 消耗控制装置与负载控制器进行操作通信,使得负载控制器可以产生控制信号以影响消耗控制电路的操作。 优选地,消耗控制电路是基于三端双向可控硅的电路,其接收来自负载控制器的控制信号并限制电阻性负载装置所消耗的电量。 负载控制器可以从监测电力输送系统的传感器或从室内电表接收输入信号。 此外,负载控制器可以接收来自第三方的外部输入,该第三方确定负载控制器的操作以限制电阻性负载装置的电力需求。