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    • 2. 发明申请
    • PORTFOLIO MANAGED, DEMAND-SIDE RESPONSE SYSTEM
    • 组合管理,需求侧响应系统
    • US20150112501A1
    • 2015-04-23
    • US14133002
    • 2013-12-18
    • REstore NV
    • Jan-Willem ROMBOUTSJos GHEERARDYN
    • G05F1/66
    • G05F1/66H02J3/14H02J2003/143Y02B70/3225Y02B70/3266Y04S20/222Y04S20/242
    • A central site, using grid operator requirements to reduce portfolio power according to frequency decreases within a frequency band, determines the optimal frequency triggers at which each load within a portfolio should reduce power and by how much power. Power availability of each load is optimized. These triggers and individual load power reductions are periodically dispatched from the central site to the individual loads. Each load detects when a frequency deviation occurs and is able to independently and rapidly reduce its power consumption according to the triggers and corresponding power reductions it received previous to the frequency deviation. Reliance upon the central site to detect a frequency deviation and then to dispatch power reductions in real time is not needed. The system also detects frequency increases and directs a portfolio of loads to consume more power. The system applies to energy loads and detection of a grid signal in general.
    • 一个中心站点,使用电网运营商的要求,根据频段内的频率降低投资组合功率,确定投资组合中每个负载应降低功耗和多少功率的最佳频率触发。 每个负载的功率可用性得到优化。 这些触发器和单独的负载功率减少将从中心站点定期发送到单个负载。 每个负载检测何时发生频率偏差,并且能够根据触发频率和在频率偏差之前接收到的相应的功率降低来独立且快速地降低功耗。 依靠中央站点检测频率偏差,然后实时调度功率减少。 该系统还可以检测频率增加,并引导负载组合消耗更多功率。 该系统一般适用于能量负载和电网信号的检测。
    • 3. 发明授权
    • Automated demand response energy management system
    • 自动化需求响应能源管理系统
    • US08838281B2
    • 2014-09-16
    • US13779560
    • 2013-02-27
    • REstore NV
    • Jan-Willem RomboutsJos Gheerardyn
    • G05B13/02G06Q40/04H02J3/14G06Q50/06G06Q10/04G06Q10/06H02J3/00
    • G05B13/02G06Q10/04G06Q10/06G06Q40/04G06Q50/06H02J3/14H02J2003/007Y02B70/3225Y02E40/76Y02E60/76Y02P80/11Y04S10/54Y04S10/545Y04S10/58Y04S20/222Y04S40/22Y04S50/00
    • The power flexibility of energy loads are maximized using a value function for each load and outputting optimal control parameters per load. These loads are aggregated into a virtual load by maximizing a global value function that includes the value function for each individual load. The solution yields a dispatch function providing: a percentage of energy to be assigned to each individual load, a possible time-varying power level within a time interval for each load, and control parameters and values. An economic term of the global value function represents the value of the power flexibility to different energy players. A user interface includes for each time interval upper and lower bounds representing respectively the maximum power that may be reduced to the virtual load and the maximum power that may be consumed by the virtual load. An energy trader modifies an energy level in a time interval relative to the reference curve for the virtual load. Automatically, energy compensation for the other intervals and recalculation of upper and lower boundaries occurs and is displayed. The energy schedule for the virtual load is distributed to the actual loads using the dispatch function.
    • 使用每个负载的值函数最大化能量负载的功率灵活性,并输出每个负载的最佳控制参数。 通过最大化包含每个单独负载的值函数的全局值函数将这些负载聚合到虚拟负载中。 该解决方案产生调度功能,提供:分配给每个单独负载的能量百分比,每个负载的时间间隔内可能的时变功率电平以及控制参数和值。 全球价值函数的经济术语代表了对不同能源玩家的力量灵活性的价值。 用户接口包括每个时间间隔的上限和下限,分别表示可以减少到虚拟负载的最大功率和虚拟负载可能消耗的最大功率。 能量交易者相对于虚拟负载的参考曲线在时间间隔内修改能量水平。 自动地,发生并显示其他间隔的能量补偿和重新计算上边界和下边界。 使用调度功能将虚拟负载的能量计划分配到实际负载。
    • 7. 发明授权
    • Automated demand response energy management system
    • 自动化需求响应能源管理系统
    • US09581979B2
    • 2017-02-28
    • US14454621
    • 2014-08-07
    • RESTORE NV
    • Jos GheerardynJan-Willem Rombouts
    • G05B13/02G06Q50/06H02J3/14G06Q10/04G06Q10/06G06Q40/04H02J3/00
    • G05B13/02G06Q10/04G06Q10/06G06Q40/04G06Q50/06H02J3/14H02J2003/007Y02B70/3225Y02E40/76Y02E60/76Y02P80/11Y04S10/54Y04S10/545Y04S10/58Y04S20/222Y04S40/22Y04S50/00
    • The power flexibility of energy loads is maximized using a value function for each load and outputting optimal control parameters. Loads are aggregated into a virtual load by maximizing a global value function. The solution yields a dispatch function providing: a percentage of energy for each individual load, a time-varying power level for each load, and control parameters and values. An economic term represents the value of the power flexibility to different players. A user interface includes for each time interval upper and lower bounds representing respectively the maximum power that may be reduced to the virtual load and the maximum power that may be consumed. A trader modifies an energy level in a time interval relative to the reference curve for the virtual load. Automatically, energy compensation for other intervals and recalculation of upper and lower boundaries occurs. The energy schedule for the virtual load is distributed to the actual loads.
    • 使用每个负载的值函数最大化能量负载的功率灵活性,并输出最佳控制参数。 通过最大化全局值函数将负载聚合成虚拟负载。 该解决方案产生调度功能,提供:每个负载的能量百分比,每个负载的时变功率电平以及控制参数和值。 一个经济术语代表了对不同玩家的力量灵活性的价值。 用户界面包括每个时间间隔的上限和下限,分别表示可以减少到虚拟负载的最大功率和可以消耗的最大功率。 交易者在相对于虚拟负载的参考曲线的时间间隔内修改能量水平。 自动地,发生其他间隔的能量补偿和重新计算上边界和下边界。 虚拟负载的能量计划分配到实际负载。
    • 8. 发明申请
    • REAL-TIME DATA-DRIVEN INDUSTRIAL POWER METERING AND COST ESTIMATION SYSTEM
    • 实时数据驱动的工业电力计量和成本估算系统
    • US20170018923A1
    • 2017-01-19
    • US15043006
    • 2016-02-12
    • REstore NV
    • Jan-Willem ROMBOUTS
    • H02J3/00G05B17/02
    • H02J3/00G05B17/02G06Q10/04G06Q50/06
    • A power metering system includes any number of sites and a central database. Loads within a site are unmetered and a sensor data vector over time includes sensor data, operational data and external data. Iteration occurs over time intervals for all unmetered loads and the unmeasured power for each interval is disaggregated by matching a load type with a computer model in the central database having the same feature domain in order to predict the power usage of each load. Iteration again occurs over those intervals in which only a single load is operating; the power of that load is determined to be the unmeasured power minus miscellaneous power, and a new computer model is fitted for that single load and also uploaded to the database. The feature domain of an existing model may also be increased. Both iteration steps repeat until no more unmeasured power can be disaggregated.
    • 电力计量系统包括任意数量的站点和中央数据库。 站点内的负载未计量,随着时间的推移,传感器数据向量包括传感器数据,操作数据和外部数据。 对于所有未计量的负载,迭代发生在时间间隔内,并且通过将负载类型与具有相同特征域的中央数据库中的计算机模型匹配来分解每个间隔的未测量功率,以便预测每个负载的功率使用。 迭代再次发生在只有单个负载运行的那些间隔上; 该负载的功率被确定为未测量的功率减去杂项功率,并且为该单个负载安装新的计算机模型并且也被上传到数据库。 也可以增加现有模型的特征域。 两个迭代步骤重复,直到没有更多的未测量的权力可以分解。
    • 9. 发明授权
    • Portfolio managed, demand-side response system
    • 投资组合管理,需求端响应系统
    • US09471080B2
    • 2016-10-18
    • US14133002
    • 2013-12-18
    • REstore NV
    • Jan-Willem RomboutsJos Gheerardyn
    • G06F19/00G05F1/66H02J3/14
    • G05F1/66H02J3/14H02J2003/143Y02B70/3225Y02B70/3266Y04S20/222Y04S20/242
    • A central site, using grid operator requirements to reduce portfolio power according to frequency decreases within a frequency band, determines the optimal frequency triggers at which each load within a portfolio should reduce power and by how much power. Power availability of each load is optimized. These triggers and individual load power reductions are periodically dispatched from the central site to the individual loads. Each load detects when a frequency deviation occurs and is able to independently and rapidly reduce its power consumption according to the triggers and corresponding power reductions it received previous to the frequency deviation. Reliance upon the central site to detect a frequency deviation and then to dispatch power reductions in real time is not needed. The system also detects frequency increases and directs a portfolio of loads to consume more power. The system applies to energy loads and detection of a grid signal in general.
    • 一个中心站点,使用电网运营商的要求,根据频段内的频率降低投资组合功率,确定投资组合中每个负载应降低功耗和多少功率的最佳频率触发。 每个负载的功率可用性得到优化。 这些触发器和单独的负载功率减少将从中心站点定期发送到单个负载。 每个负载检测何时发生频率偏差,并且能够根据触发频率和在频率偏差之前接收到的相应的功率降低来独立且快速地降低功耗。 依靠中央站点检测频率偏差,然后实时调度功率减少。 该系统还可以检测频率增加,并引导负载组合消耗更多功率。 该系统一般适用于能量负载和电网信号的检测。