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    • 3. 发明授权
    • Virtual thermostat system and method
    • 虚拟恒温系统及方法
    • US09122285B2
    • 2015-09-01
    • US13539057
    • 2012-06-29
    • Carl MansfieldDaniel J. ParkDavid Elrod
    • Carl MansfieldDaniel J. ParkDavid Elrod
    • G06F1/26G05D23/19F24F11/00
    • G05D23/1934F24F11/46
    • A virtual thermostat system and method are provided. The method accepts commands via a virtual thermostat interface for establishing temperature set points for a plurality of zones. Energy consumption information is also accepted from a plurality of energy consumption units. Each unit consumes energy at an associated peak power to supply a controlled temperature medium to a corresponding zone. The method also accepts temperature measurements for each zone. Then, consumption commands are sent to each energy consumption unit in response to associated zone temperature set points, while insuring that a combined peak power of the energy consumption units is less than a maximum peak power threshold. In one aspect, the virtual thermostat accepts temperature measurements from a plurality of physical thermostats, each associated with an energy consumption unit. Then, consumption commands are relayed to the energy consumption units via associated physical thermostats.
    • 提供了一种虚拟恒温器系统和方法。 该方法通过虚拟恒温器接口接收命令以建立多个区域的温度设定点。 也可以从多个能量消耗单元接受能量消耗信息。 每个单元以相关的峰值功率消耗能量,以将受控的温度介质提供给相应的区域。 该方法还接受每个区域的温度测量。 然后,响应于相关区域温度设定点将消耗命令发送到每个能量消耗单元,同时确保能量消耗单元的组合峰值功率小于最大峰值功率阈值。 在一个方面,虚拟恒温器接受来自多个物理恒温器的温度测量值,每个物理恒温器都与能量消耗单元相关联。 然后,通过相关联的物理恒温器将消耗命令中继到能量消耗单元。
    • 4. 发明申请
    • Virtual Thermostat System and Method
    • 虚拟恒温器系统和方法
    • US20130013119A1
    • 2013-01-10
    • US13539057
    • 2012-06-29
    • Carl MansfieldDaniel J. ParkDavid Elrod
    • Carl MansfieldDaniel J. ParkDavid Elrod
    • G06F1/26
    • G05D23/1934F24F11/46
    • A virtual thermostat system and method are provided. The method accepts commands via a virtual thermostat interface for establishing temperature set points for a plurality of zones. Energy consumption information is also accepted from a plurality of energy consumption units. Each unit consumes energy at an associated peak power to supply a controlled temperature medium to a corresponding zone. The method also accepts temperature measurements for each zone. Then, consumption commands are sent to each energy consumption unit in response to associated zone temperature set points, while insuring that a combined peak power of the energy consumption units is less than a maximum peak power threshold. In one aspect, the virtual thermostat accepts temperature measurements from a plurality of physical thermostats, each associated with an energy consumption unit. Then, consumption commands are relayed to the energy consumption units via associated physical thermostats.
    • 提供了一种虚拟恒温器系统和方法。 该方法通过虚拟恒温器接口接收命令以建立多个区域的温度设定点。 也可以从多个能量消耗单元接受能量消耗信息。 每个单元以相关的峰值功率消耗能量,以将受控的温度介质提供给相应的区域。 该方法还接受每个区域的温度测量。 然后,响应于相关区域温度设定点将消耗命令发送到每个能量消耗单元,同时确保能量消耗单元的组合峰值功率小于最大峰值功率阈值。 在一个方面,虚拟恒温器接受来自多个物理恒温器的温度测量值,每个物理恒温器都与能量消耗单元相关联。 然后,通过相关联的物理恒温器将消耗命令中继到能量消耗单元。
    • 5. 发明申请
    • Methods and systems for powering auxiliary devices in photovol taic system
    • 光伏系统中辅助设备供电的方法和系统
    • US20120176076A1
    • 2012-07-12
    • US12930539
    • 2011-01-10
    • Carl MansfieldDaniel J. Park
    • Carl MansfieldDaniel J. Park
    • H02J7/32
    • H02J7/35H02J3/383H02S50/10Y02E10/563Y02E10/566Y02P90/50
    • Methods and systems for powering auxiliary devices in photovoltaic (PV) systems address shortcomings of conventional PV systems by harvesting unused electricity generated by the PV system to power the auxiliary devices. The methods and systems use PV panel power that is below the PV system inverter's harvesting threshold to charge rechargeable batteries in the auxiliary devices. The invention offers significant advantages over conventional PV systems, including full-time operability of auxiliary devices by virtue of rechargeable batteries that are charged using below threshold PV panel power, reduced field maintenance requirements for auxiliary devices (e.g., battery pack replacement), and elimination of bias in PV system performance data caused by parasitic load of auxiliary devices.
    • 用于为光伏(PV)系统中的辅助设备供电的方法和系统通过收集光伏系统产生的未使用的电力为辅助设备供电来解决传统光伏系统的缺点。 该方法和系统使用低于PV系统变频器收集阈值的PV面板电源为辅助设备中的可充电电池充电。 本发明具有优于常规光伏系统的显着优点,包括借助于使用低于阈值的PV面板功率充电的可充电电池对辅助设备进行全时可操作性,减少辅助设备的现场维护要求(例如电池组更换)和消除 由于辅助设备的寄生负载引起的PV系统性能数据的偏差。
    • 7. 发明授权
    • Universal call-log system and method for a home network telephone
    • 用于家庭网络电话的通用呼叫日志系统和方法
    • US06882714B2
    • 2005-04-19
    • US10112909
    • 2002-03-27
    • Carl Mansfield
    • Carl Mansfield
    • H04M1/274H04M1/253H04M1/56H04M1/57H04M1/723H04M1/725H04M3/22H04M11/00H04M15/06
    • H04M15/41H04M1/2535H04M1/56H04M1/57H04M1/723H04M1/725H04M3/2218H04M7/0069H04M15/06H04M15/53H04M2215/0164H04M2215/0172
    • A system and method are provided for maintaining a universal call-log in a Home Network telephone system. The method comprises: transceiving calls on at least one external telephone line; bridging calls to a plurality Home Network endpoints; and, logging the bridged calls. Bridging calls to a plurality Home Network endpoints includes initiating an outgoing call from an endpoint. Then, the outgoing calls initiated from endpoints are logged. Likewise, incoming calls received on an external telephone line addressed to an endpoint and bridged, and logged. Logging the bridged calls includes cross-referencing entries such as call time, the call duration, the type of call, the external telephone involved, the external line telephone number from which an incoming call is received, the external telephone line telephone number to which an outgoing call is addressed, the endpoint to which an incoming call is addressed, and the endpoint initiating an outgoing call.
    • 提供了一种用于在家庭网络电话系统中维护通用呼叫记录的系统和方法。 该方法包括:在至少一个外部电话线上收发呼叫; 将呼叫桥接到多个家庭网络端点; 并记录桥接呼叫。 连接到多个家庭网络端点的呼叫包括从端点发起呼出呼叫。 然后,记录从端点发起的呼出呼叫。 同样,在外部电话线路上接收到的呼叫呼叫到端点并进行桥接并记录。 记录桥接呼叫包括交叉引用条目,例如呼叫时间,呼叫持续时间,呼叫类型,所涉及的外部电话,接收来话呼叫的外部线路电话号码,外部电话线路电话号码 呼出呼叫被寻址,呼入呼叫的终端被寻址,端点发起呼出呼叫。
    • 9. 发明授权
    • Methods for resource control in a non-unitary service system
    • 非统一服务体系中资源控制的方法
    • US5966372A
    • 1999-10-12
    • US886865
    • 1997-07-01
    • Andrew S. WrightHelen R. NewtonCarl Mansfield
    • Andrew S. WrightHelen R. NewtonCarl Mansfield
    • H04M3/00H04L12/28H04L12/56H04L12/64H04M3/36H04M7/00H04M7/12H04Q3/00H04W4/00H04Q7/00
    • H04Q3/0091H04M3/36H04M3/367H04M7/006H04M7/12H04W4/00
    • Methods for controlling the blocking of a network-supported primary service by a network-supported secondary service sharing the same network router/switch.A probabilistic method for resource control identifies for each secondary service connection request the likelihood that if it is allocated a network router/switch server, a subsequent primary service connection request will be blocked, i.e., denied a server allocation of its own. If it is determined that it is unlikely that allocating a secondary service connection request a server will cause a subsequent primary service connection request to be blocked, an idle server is allocated to a currently pending secondary service connection request at the router/switch. If, however, it is determined that it is likely that allocating a secondary service connection request a server will cause a subsequent primary service connection request to be blocked, any pending secondary service connection requests at the router/switch are denied the allocation of a server at that time.
    • 用于通过共享相同网络路由器/交换机的网络支持的辅助服务来控制网络支持的主服务的阻塞的方法。 用于资源控制的概率方法为每个辅助服务连接请求识别如果分配了网络路由器/交换机服务器的可能性,则后续主服务连接请求将被阻止,即拒绝其自己的服务器分配。 如果确定不太可能分配辅助服务连接请求,则服务器将导致后续主服务连接请求被阻止,则空闲服务器被分配给路由器/交换机上的当前挂起的辅助服务连接请求。 然而,如果确定可能分配辅助服务连接请求服务器将导致后续的主服务连接请求被阻止,则在路由器/交换机处的任何挂起的次要服务连接请求被拒绝分配服务器 那时候。