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    • 61. 发明申请
    • POWER DISTRIBUTION ALGORITHM
    • 功率分配算法
    • US20150005971A1
    • 2015-01-01
    • US14344231
    • 2012-09-12
    • Andrew Peter Henry McCabeJordi McGregor Barr
    • Andrew Peter Henry McCabeJordi McGregor Barr
    • G05F1/66
    • G05F1/66G06Q50/06H02J3/008H02J3/46Y04S50/10
    • A method and apparatus for power through a network (1), the network (1) comprising consumer units (C1-C4) and provider units (P1-P6), the method comprising: performing one or more times a first process, the first process being a process of performing step (a) followed by step (b); wherein step (a) comprises selecting a previously unselected consumer unit (C1-C4), thereby providing a currently selected consumer unit; step (b) comprises performing one or more times a second process, the second process being a process of performing (c) followed by step (d); step (c) comprises selecting a previously unselected provider unit (P1-P6), thereby providing a currently selected provider unit, the currently selected provider unit being connected in the network (1) to the currently selected consumer unit; and step (d) comprises, from the currently selected provider unit to the currently selected consumer unit, delivering an amount of resource.
    • 一种用于通过网络(1)进行供电的方法和装置,所述网络(1)包括消费者单元(C1-C4)和提供者单元(P1-P6),所述方法包括:执行一次或多次第一处理, 过程是进行步骤(a),然后是步骤(b)的过程; 其中步骤(a)包括选择先前未选择的消费者单元(C1-C4),从而提供当前选择的消费者单元; 步骤(b)包括执行一次或多次第二过程,第二过程是执行(c),然后是步骤(d)的过程; 步骤(c)包括选择先前未选择的提供者单元(P1-P6),从而提供当前选择的提供者单元,当前选择的提供者单元在网络(1)中连接到当前选择的消费者单元; 并且步骤(d)从当前选择的提供者单元包括递送一定量的资源。
    • 62. 发明申请
    • AGGREGATOR, MONITOR, AND MANAGER OF DISTRIBUTED MICRO-GENERATORS
    • 分布器,监视器和分布式微型发生器的经理
    • US20140371938A1
    • 2014-12-18
    • US14471723
    • 2014-08-28
    • VERSIFY SOLUTIONS, INC.
    • David IPPOLITOPeter CONA
    • G05F1/66G05B15/02
    • G06Q10/06315G05B15/02G05F1/66G06Q30/0206G06Q50/06H02J3/008H02J3/14H02J2003/003Y02B70/3225Y02P90/82Y04S10/54Y04S10/58Y04S20/222Y04S50/00Y04S50/10Y04S50/14
    • A system includes a processor and a non-transitory data storage device that contains instructions. When executed by the processor, the instructions include an aggregator of distributed micro-generator energy sources capable of delivering an energy source to a power grid; a monitor of the distributed micro-generator energy sources, wherein the monitor communicates micro-generator energy usage data with a wholesale power producer and a microgenerator asset owner; and a portfolio optimizer of the distributed micro-generator energy sources, wherein the portfolio optimizer facilitates commercialization of the distributed micro-generator energy sources, wherein the monitor tracks and reports micro-generator energy source use by a wholesale power producer; and wherein assigning a specific one of the micro-generator energy sources to a wholesale power producer causes energy to be delivered to a wholesale power market via a wholesale power grid.
    • 系统包括处理器和包含指令的非暂时数据存储设备。 当由处理器执行时,指令包括能够向电网输送能量源的分布式微型发电机能源的聚合器; 分布式微型发电机能源的监视器,其中监视器与批发电力生产者和微型发电机资产所有者通信微发电机能量使用数据; 以及分布式微发电机能源的投资组合优化器,其中投资组合优化器促进分布式微发电机能源的商业化,其中监视器跟踪和报告批发电力生产者的微发电机能源使用; 并且其中将特定的一个微发电机能量源分配给批发电力生产者使能量经由批发电力网被输送到批发电力市场。
    • 65. 发明授权
    • Electric power selling system
    • 电力销售系统
    • US08823213B2
    • 2014-09-02
    • US12908441
    • 2010-10-20
    • Takehiro Matsuda
    • Takehiro Matsuda
    • H02J3/38H02J3/46H02J3/00H02J13/00
    • H02J3/383H02J3/008H02J3/38H02J3/46H02J13/002Y02B10/14Y02B90/2615Y02E10/563Y02E40/72Y02E60/74Y02E60/7815Y04S10/123Y04S10/30Y04S40/121Y04S50/10Y10T307/718Y10T307/735
    • It is an object of the present invention to suppress such a situation that electric power selling becomes impossible while the deterioration of supply power is prevented. The electric power selling system of the present invention comprises a solar battery 3 as a power generator, and a control unit 7 which is connected with the solar battery 3 and a distribution line and configured to convert output voltage of the solar battery 3 into variable voltage for electric power selling. The electric power selling system further comprises a transmitter 60 connected with the distribution line, said transmitter 60 being configured to measure voltage of the distribution line and to supply the control unit 7 with an instruction value obtained based on the measured voltage value. The control unit 7 is configured to convert the output voltage of the solar battery 3 into the voltage for electric power selling based on the instruction value.
    • 本发明的一个目的是抑制在不能防止供电劣化的情况下电力销售变得不可能。 本发明的电力销售系统包括作为发电机的太阳能电池3和与太阳能电池3连接的配电线路并将太阳能电池3的输出电压转换为可变电压的控制单元7 用于电力销售。 电力销售系统还包括与分配线连接的发送器60,所述发送器60被配置为测量配电线路的电压,并且向控制单元7提供基于测量的电压值获得的指令值。 控制单元7被配置为基于指示值将太阳能电池3的输出电压转换为电力销售用电压。
    • 66. 发明申请
    • POWER DISTRIBUTION ALGORITHM
    • 功率分配算法
    • US20140236374A1
    • 2014-08-21
    • US14343630
    • 2012-09-12
    • Jordi McGregor BarrAndrew Peter Henry McCabe
    • Jordi McGregor BarrAndrew Peter Henry McCabe
    • H02J4/00
    • H02J4/00H02J3/008H02J3/46Y04S50/10
    • A method and apparatus for distributing energy through a network (1), the network comprising a plurality of nodes (i.e. consumer units (C1-C4) and provider units (P1-P6)), the method comprising: for each node in the network (1), generating one or more vectors and/or matrices indicative of the desired resource amount or the resource production capacity associated with that node; performing one or more times a process, the process being a process of performing steps (a) to (c); wherein step (a) comprises, for each node, selecting the nodes connected to that node; step (b) comprises, for each node, updating the current set of matrices and/or vectors for that node; and step (c) comprises, for each node, calculating a vector of flows; and delivering from a provider unit (P1-P6) to a consumer unit (C1-C4) connected to that provider unit (P1-P6), an amount of resource dependent on a vector of flows.
    • 一种用于通过网络(1)分配能量的方法和装置,所述网络包括多个节点(即,消费者单元(C1-C4)和提供者单元(P1-P6)),所述方法包括:对于网络中的每个节点 (1),生成指示与该节点相关联的期望资源量或资源产生能力的一个或多个向量和/或矩阵; 执行一个或多个过程,该过程是执行步骤(a)至(c)的过程; 其中对于每个节点,步骤(a)包括选择连接到该节点的节点; 对于每个节点,步骤(b)包括为该节点更新当前的矩阵集合和/或向量; 并且步骤(c)对于每个节点包括计算流的向量; 以及从提供者单元(P1-P6)到连接到该提供者单元(P1-P6)的消费者单元(C1-C4)的递送,取决于流向量的资源量。
    • 68. 发明申请
    • PRICING SYSTEM AND METHOD FOR UTILITY CONSUMPTIONS WITHIN A SMART GRID
    • 智能网格中的实用性消耗的定价系统和方法
    • US20140214685A1
    • 2014-07-31
    • US14342308
    • 2012-08-30
    • Corinne Le Buhan
    • Corinne Le Buhan
    • G06Q30/02
    • G06Q30/0283G01D4/002H02J3/008H02J13/00H04L9/32H04L63/12Y02B90/241Y04S20/32Y04S40/24Y04S50/10Y04S50/14
    • A pricing method for utility consumptions of utility meters each connected to at least one management center through an intermediate data concentrator. The data concentrator receives, from each management center, at least a tariff table comprising at least one time interval and an associated pricing rate. It selects the lowest rate for each received time interval. The data concentrator receives, from the utility meter, secured utility meter messages, each comprising: a metering data measurement, the utility meter identifier, a data concentrator identifier and a management center identifier. On the basis of several metering data measurements, a metering counter differential consumption value is determined and the management center suggesting the lowest rate is assigned thereto. Finally, a secured report containing at least the metering counter differential consumption value together with the utility meter identifier to which this value refers is sent from the data concentrator towards each management center.
    • 每个通过中间数据集中器与至少一个管理中心连接的公用事业仪表的公用事业消耗的定价方法。 数据集中器从每个管理中心接收至少一个包含至少一个时间间隔和相关的定价率的资费表。 它为每个接收的时间间隔选择最低速率。 数据集中器从公用事业仪表接收固定的公用事业电表消息,每个包括:计量数据测量,公用事业计量表标识符,数据集中器标识符和管理中心标识符。 在多个测量数据测量的基础上,确定计量计数器差分消耗值,并且向其指定建议最低速率的管理中心。 最后,从数据集中器向每个管理中心发送至少包含计量计数器差分消耗值的安全报告以及该值所参考的公用事业计量表标识符。