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    • 1. 发明授权
    • Supply chain demand satisfaction
    • 供应链需求满意
    • US08447644B2
    • 2013-05-21
    • US13356564
    • 2012-01-23
    • Jill NephewWei CuiWalter RomijnGregory Penn
    • Jill NephewWei CuiWalter RomijnGregory Penn
    • G06G10/00
    • G06Q10/087G06Q10/04G06Q10/06315G06Q30/0202
    • Systems and methods for supply chain management and identification of feasible plans. Identification of feasible plans includes collecting demands for one or more items having the same level code; and for each of the collected demands, determining a first demand shortage quantity, searching the data storage for available unallocated supply responsive to the first demand shortage quantity, determining a second demand shortage quantity, and creating supply, the creation of supply being responsive to the second demand shortage quantity and the creation of supply including satisfying a dependent demand at a higher level code. Satisfying a dependent demand at a higher level code may include using the system recursively. Using the system recursively may include incrementing a current level code. Satisfying a dependent demand at a higher level code may include performing a feasible plan search relating to items assigned the higher level code.
    • 供应链管理和确定可行计划的制度和方法。 确定可行的计划包括收集对具有相同级别代码的一个或多个项目的需求; 并且对于每个收集的需求,确定第一需求短缺数量,响应于第一需求短缺数量搜索数据存储器以获得可用的未分配供应,确定第二需求短缺数量和创建供应,响应于 第二需求短缺数量和创造供应,包括满足较高级别代码的依赖需求。 满足较高级代码的依赖需求可能包括递归使用系统。 递归使用系统可能包括增加当前级别代码。 满足较高级代码的依赖需求可以包括执行与分配较高级代码的项目有关的可行计划搜索。
    • 3. 发明授权
    • Optimization of microgrid energy use and distribution
    • 优化微电能的使用和分配
    • US08019697B2
    • 2011-09-13
    • US12915870
    • 2010-10-29
    • Michael T. Ozog
    • Michael T. Ozog
    • G06F17/00G06G10/00
    • G06Q30/06G06Q10/06315G06Q30/0283G06Q50/06H02J3/008H02J3/14H02J3/32H02J7/35H02J13/0006H02J2003/146Y02B70/3225Y02B90/222Y02E40/72Y02E70/30Y04S10/123Y04S20/12Y04S20/222Y04S20/224Y04S50/10Y04S50/14
    • An energy distribution may include a server and one or more databases. The system may communicate with an energy provider to receive energy provider data, at least one information collector to receive information collector data such as individualized energy usage data, customer preferences, and customer or location characteristics, and the one or more databases for receiving data for optimization. The system may calculate a cost of service or avoided cost using at least one of the individualized energy usage data and a system generation cost at a nearest bus. The system may also forecast individualized demand by end-use, individualized demand by location, energy prices, or energy costs. The system may optimize energy distribution, energy use, cost of service, or avoided cost using the forecasted individualized demand by end-use, the forecasted individualized demand by location, the forecasted energy prices, and the forecasted energy costs.
    • 能量分布可以包括服务器和一个或多个数据库。 系统可以与能量提供者通信以接收能量提供者数据,至少一个信息收集器用于接收信息收集器数据,例如个性化能量使用数据,客户偏好,客户或位置特征,以及用于接收数据的一个或多个数据库 优化。 系统可以使用至少一个个体化能量使用数据和在最近的总线处的系统生成成本来计算服务成本或避免成本。 该系统还可以通过最终用途,按位置的个性化需求,能源价格或能源成本来预测个性化需求。 该系统可以通过最终用途预测的个性化需求,按位置预测的个性化需求,预测的能源价格和预测的能源成本来优化能量分配,能源使用,服务成本或避免成本。