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    • 27. 发明授权
    • Energy optimization system
    • 能源优化系统
    • US08600571B2
    • 2013-12-03
    • US12142528
    • 2008-06-19
    • Jim DillonRonald BlagusStephen ParrVenkat IyerAlan Houghton
    • Jim DillonRonald BlagusStephen ParrVenkat IyerAlan Houghton
    • G05D17/00G06F17/00
    • G06Q50/06G06Q10/04Y02A30/12Y02E40/76Y04S10/545Y04S10/60
    • A system for optimizing a usage of energy based on cost, carbon footprint, and/or other criteria. The usage may be optimized for the next day or more. The optimization may deal with renewable energy, grid energy and stored energy. Various inputs may be considered for optimization, which could include energy costs, weather forecasts, characteristics of renewable energy, the load and storage, and other items. The optimizer may use equipment models with numerical transfer functions to take inputs and provide optimized estimates for the next day or so of energy usage. The outputs of the models may go to an optimization algorithms module for providing an output based on the inputs. The output may provide control information for the selection and amounts of the different types of energy in a scheduled manner.
    • 基于成本,碳足迹和/或其他标准来优化能量使用的系统。 可能会为第二天或更长时间优化使用。 优化可能涉及可再生能源,电网能量和储能。 可以考虑各种投入进行优化,其中可能包括能源成本,天气预报,可再生能源的特性,负荷和储存等。 优化器可以使用具有数字传递函数的设备模型来获取输入,并为第二天的能量使用提供优化的估计。 模型的输出可以转到优化算法模块,以提供基于输入的输出。 输出可以按计划的方式提供用于不同类型能量的选择和量的控制信息。
    • 29. 发明申请
    • ENERGY OPTIMIZATION SYSTEM
    • 能源优化系统
    • US20090319090A1
    • 2009-12-24
    • US12142528
    • 2008-06-19
    • Jim C. DillonRonald BlagusStephen ParrVenkat IyerAlan Houghton
    • Jim C. DillonRonald BlagusStephen ParrVenkat IyerAlan Houghton
    • G06F1/26
    • G06Q50/06G06Q10/04Y02A30/12Y02E40/76Y04S10/545Y04S10/60
    • A system for optimizing a usage of energy based on cost, carbon footprint, and/or other criteria. The usage may be optimized for the next day or more. The optimization may deal with renewable energy, grid energy and stored energy. Various inputs may be considered for optimization, which could include energy costs, weather forecasts, characteristics of renewable energy, the load and storage, and other items. The optimizer may use equipment models with numerical transfer functions to take inputs and provide optimized estimates for the next day or so of energy usage. The outputs of the models may go to an optimization algorithms module for providing an output based on the inputs. The output may provide control information for the selection and amounts of the different types of energy in a scheduled manner.
    • 基于成本,碳足迹和/或其他标准来优化能量使用的系统。 可能会为第二天或更长时间优化使用。 优化可能涉及可再生能源,电网能量和储能。 可以考虑各种投入进行优化,其中可能包括能源成本,天气预报,可再生能源的特性,负荷和储存等。 优化器可以使用具有数字传递函数的设备模型来获取输入,并为第二天的能量使用提供优化的估计。 模型的输出可以转到优化算法模块,以提供基于输入的输出。 输出可以按计划的方式提供用于不同类型能量的选择和量的控制信息。
    • 30. 发明授权
    • Parallel bit stuffing for a serial data transfer protocol
    • 并行位填充串行数据传输协议
    • US06567423B1
    • 2003-05-20
    • US09437502
    • 1999-11-10
    • Venkat Iyer
    • Venkat Iyer
    • H04J306
    • H04L25/4906
    • A parallel bit stuffing method acting on a stream of serial data is disclosed. First, an input data segment is segmented from said stream of serial data. Next, a carryover segment is appended to the input data segment to form an address field. The address field is used to correlate to an output field that includes a stuffed data portion and a carryover segment portion. The carryover segment portion is used in a next cycle as the carryover segment. Finally, the stuffed data portion is output as output data segments.
    • 公开了一种作用于串行数据流的并行位填充方法。 首先,从所述串行数据流中分割输入数据段。 接下来,将携带部分附加到输入数据段以形成一个地址字段。 地址字段用于与包括填充数据部分和进位段部分的输出字段相关联。 结转段部分在下一循环中用作携带段。 最后,填充的数据部分作为输出数据段被输出。