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    • 15. 发明授权
    • Communications processor remote host and multiple unit control devices
and methods for micropower generation systems
    • 通信处理器远程主机和多个单元控制设备和微型发电系统的方法
    • US6055163A
    • 2000-04-25
    • US140392
    • 1998-08-26
    • Edward T. WagnerThomas C. MattyThomas C. UnderwoodWilliam B. Hall
    • Edward T. WagnerThomas C. MattyThomas C. UnderwoodWilliam B. Hall
    • H02J3/38H02J13/00H02M5/40H02M5/45G05B24/02G05F1/10H02J3/36
    • H02M5/40H02J13/0072H02J3/38Y02E40/72Y04S10/12
    • A communications processor is disclosed for a power generation system that permits data and control signals to be communicated to and from the power generation system and a host computer. The control signals include a power level command and power factor that are sent from a remote host to the power generation system which responds by delivering the requested power level having the desired power factor to a grid. The remote host receives performance data that permits an operator to accurately gauge the performance of the power generation system including the performance and any fault conditions of a line power unit, generator, and engine driving the generator. The communications processor unburdens the line power unit controller that is responsible for controlling power generation from the task of processing input data and driving local displays. The host may also be provided at a location remote from the power generation system. The host, local or remote, preferably includes a graphical user interface that permits an operator to monitor and control the power generation system in an efficient and highly effective manner. A dedicated serial bus connects the communications processors of multiple power generation systems. By utilizing a round-robbin polling of each power generation system across the dedicated serial bus, real-time control can be achieved.
    • 公开了一种用于发电系统的通信处理器,其允许将数据和控制信号传送到发电系统和主计算机。 控制信号包括从远程主机发送到发电系统的功率电平命令和功率因数,该发电系统通过将具有期望的功率因数的所请求的功率电平递送到电网来进行响应。 远程主机接收性能数据,允许操作者精确地测量发电系统的性能,包括行驶电力单元,发电机和驱动发电机的发动机的性能和任何故障状况。 通信处理器负责从处理输入数据和驱动本地显示器的任务中控制发电的线路电源单元控制器。 主机也可以设置在远离发电系统的位置。 主机,本地或远程,优选地包括图形用户界面,其允许操作者以有效和高效的方式监视和控制发电系统。 专用串行总线连接多个发电系统的通信处理器。 通过利用专用串行总线上的每个发电系统的轮询轮询,可以实现实时控制。
    • 16. 发明授权
    • Energy management and home automation system
    • 能源管理和家庭自动化系统
    • US5544036A
    • 1996-08-06
    • US857312
    • 1992-03-25
    • Robert J. Brown, Jr.James D. RomanowizCharles W. Staples
    • Robert J. Brown, Jr.James D. RomanowizCharles W. Staples
    • G05D23/02G05D23/19H02J3/14H02J13/00G05B11/01G05B23/02
    • H02J13/0072G05D23/1905H02J3/14F24F2011/0058G05B2219/2639G05B2219/2642Y02B70/3225Y02B70/3241Y02B70/3275Y02B90/2646Y04S20/222Y04S20/227Y04S20/244Y04S40/125
    • An energy management and home automation system includes one or more controllers in each facility being managed and one or more energy consuming devices attached to each controller. Each controller responds to digital paging signals from a central command center which establish a schedule of event effecting the operation of each device and the controller schedules each device to be operated pursuant to the programmed schedule. The user of the system, by appropriate communication with the command center, may cause a paging message to be provided at any time changing the pre-programmed schedule. The heating/cooling system is controlled by setpoint temperatures for each of a plurality of different modes of occupancy, whereby the most energy is consumed when the facility is occupied and lesser amounts of energy are consumed when the facility is empty. Intermediate amounts of energy are consumed when the facility is not fully operational because people are asleep or maintenance or cleaning is being done. Prior to a mode change which demands more energy, the controller calculates the time required to bring the facility to the setpoints for the new mode and operates the heating/cooling unit at the calculated time prior to the scheduled mode change. The calculation is based upon the time required for the heating/cooling being controlled to change the temperature in the facility being managed. The energy consumption of the facility may also be reduced by paging messages from the utility company as a part of an emergency load reduction program.
    • 能量管理和家庭自动化系统包括每个设施中的一个或多个控制器被管理,以及连接到每个控制器的一个或多个能量消耗装置。 每个控制器响应来自中央指挥中心的数字寻呼信号,该中心指令中心确定了影响每个设备的操作的事件的时间表,并且控制器根据编程的时间表对每个要被操作的设备进行调度。 通过与指挥中心的适当通信,系统的用户可以随时改变预编程的时间表,从而提供寻呼消息。 加热/冷却系统由多个不同的占用方式中的每一个的设定点温度控制,由此当设施被占用时消耗的能量最多,当设施为空时消耗较少量的能量。 当设施没有完全投入运行,因为人们睡着了,维护或清洁工作,消耗了中等的能量。 在需要更多能量的模式改变之前,控制器计算使设备进入新模式的设定点所需的时间,并在调度模式更改之前的计算时间对加热/冷却单元进行操作。 该计算是基于加热/冷却被控制所需的时间来改变被管理设施中的温度。 作为紧急减载计划的一部分,设施的能源消耗也可能因公用事业公司的寻呼信息而减少。
    • 17. 发明授权
    • Bi-directional data telemetry system
    • 双向数据遥测系统
    • US4724435A
    • 1988-02-09
    • US796052
    • 1985-11-06
    • Donald W. MosesRobert MosesJames W. KinneCharles H. HustigWayne P. OlsonAlan M. DobersteinRobert S. Bradford
    • Donald W. MosesRobert MosesJames W. KinneCharles H. HustigWayne P. OlsonAlan M. DobersteinRobert S. Bradford
    • G08C19/00H02J13/00H04M11/00H04Q11/00G08C15/08
    • H02J13/0072H04M11/002Y02E60/7846Y04S40/125
    • The data telemetry system disclosed is a complete data communications systems suitable for use by utilities such as electric companies, gas companies and water companies which can be used for meter reading and load management at individual subscribers premises. Elements of the system can also be used as a power load carrier in a premise specific local area network (LAN). With the system is disclosed, all 10,000 subscribers per exchange can be serviced. It will be understood that data can be multiplexed between a central office location and remote subscribers for any suitable purpose with the data system as disclosed. A packet switching structure is disclosed having eight to thirty-two bytes in the data message. This packet is routed between the utility and remote subscriber with routing headers being added and deleted as required by the network modules. Each successive layer of the multiplexing and switching hierarchy submultiplies the aggregate 10,000 channel capacity into fewer channels. Both time and space division switching and multiplexing are used.
    • 所公开的数据遥测系统是适用于诸如电力公司,燃气公司和水公司的公用事业的完整数据通信系统,可用于各个用户场所的抄表和负载管理。 系统的元件也可以用作内部特定局域网(LAN)中的电力负载运营商。 通过系统披露,每个交换机可以维护10,000个用户。 应当理解,在所公开的数据系统的任何适当目的下,可以在中心局位置和远程用户之间复用数据。 公开了一种在数据消息中具有八到三十二个字节的分组交换结构。 该分组在实用程序和远程用户之间路由,并且根据网络模块的要求添加和删除路由头。 复合和交换层级的每个连续层将聚合的10,000个信道容量乘以较少的信道。 使用时分和空分切换和多路复用。
    • 20. 发明授权
    • Apparatus and method for data communication in an energy distribution network
    • 能量分配网络中数据通信的装置和方法
    • US08774007B2
    • 2014-07-08
    • US13070351
    • 2011-03-23
    • Mohsin HussainBrock LaPorteUdo UebelAftab Zia
    • Mohsin HussainBrock LaPorteUdo UebelAftab Zia
    • H04L12/26G06F17/00
    • H02J13/0024H02J3/383H02J13/0062H02J13/0072H02J13/0075H02J13/0079H04L12/40182H04L2012/4026Y02E10/563Y02E40/72Y04S10/123
    • A system for communicating information on an energy distribution network is disclosed. In one embodiment, the system includes a local supervisor on a communication network, wherein the local supervisor can collect data from one or more energy generation/monitoring devices. The system also includes a command center on the communication network, wherein the command center can generate one or more commands for controlling the one or more energy generation devices. The local supervisor can periodically transmit a data signal indicative of the data to the command center via a first channel of the communication network at a first interval. The local supervisor can also periodically transmit a request for a command to the command center via a second channel of the communication network at a second interval shorter than the first interval. This channel configuration provides effective data communication without a significant increase in the use of network resources.
    • 公开了一种用于在能量分配网络上传送信息的系统。 在一个实施例中,系统在通信网络上包括本地主管,其中本地主管可以从一个或多个能量产生/监视设备收集数据。 该系统还包括在通信网络上的命令中心,其中命令中心可以生成用于控制一个或多个能量产生设备的一个或多个命令。 本地主管可以以第一间隔经由通信网络的第一信道周期性地发送指示数据的数据信号到命令中心。 本地主管还可以以比第一间隔短的第二间隔,经由通信网络的第二信道周期性地向命令中心发送对命令的请求。 该通道配置提供有效的数据通信,而不会显着增加网络资源的使用。