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    • 87. 发明申请
    • PROVIDING ADAPTIVE DEMAND RESPONSE BASED ON DISTRIBUTED LOAD CONTROL
    • 基于分布式负载控制提供自适应需求响应
    • WO2013052768A2
    • 2013-04-11
    • PCT/US2012/058903
    • 2012-10-05
    • SIEMENS CORPORATION
    • LU, YanZHOU, SiyuanAL FARUQUE, Mohammad Abdullah
    • H02J3/14Y02B70/3225Y02B70/3283Y04S20/222Y04S20/224Y04S20/246
    • Adaptive demand response based on distributed load control may be provided. A demand response request indicative of a demand response event for an area may be received (300). A maximum power consumption for the area during the demand response event may be determined based on the demand response request (304). One or more set points for the area during the demand response event may be determined prior to the demand response event (308). The one or more set points are determined based on the maximum power consumption. Prior to or during the demand response event, a real-time power consumption for the area may be calculated (312). When the real-time power consumption exceeds the maximum power consumption, one or more loads in the area may be controlled to maintain the real-time power consumption at or below the maximum power consumption (316)
    • 可以提供基于分布式负载控制的自适应需求响应。 可以接收指示区域的需求响应事件的请求响应请求(300)。 可以根据需求响应请求(304)来确定在需求响应事件期间该区域的最大功率消耗。 可以在需求响应事件(308)之前确定在需求响应事件期间该区域的一个或多个设定点。 基于最大功率消耗确定一个或多个设定点。 在需求响应事件之前或期间,可以计算该区域的实时功率消耗(312)。 当实时功耗超过最大功率消耗时,可以控制该区域中的一个或多个负载以将实时功耗维持在或低于最大功耗(316)
    • 90. 发明申请
    • ADVANCED HUMAN-MACHINE INTERFACE FOR COLLABORATIVE BUILDING CONTROL
    • 高级人机界面进行协同建筑控制
    • WO2013056214A1
    • 2013-04-18
    • PCT/US2012/060206
    • 2012-10-15
    • SIEMENS CORPORATION
    • ZHENG, Xianjun S.SONG, ZhenCHEN, YanziZHANG, ShaopengLU, Yan
    • H04L12/28
    • G05B13/02H04L12/2818H04L12/2821H04L12/2825H04L41/0833H04L2012/285
    • A system for collaborative energy management and control in a building, including an energy management controller, one or more occupant HMIs that supports two-way communication between building occupants and a facility manager, and between building occupants and the energy management controller, and a facility manager HMI that supports two-way communication between the facility manager and the building occupants, and between the facility manager and the energy management controller, in which the occupant HMI allows building occupants to provide temperature preferences to the facility manager and the energy management controller, and the facility manager HMI allows the facility manager to configure an energy policy for the building as a set of rules and to view occupants' aggregated temperature preferences, and the energy management controller determines an optimum temperature range that resolves conflicting occupant temperature preferences and occupant temperature preferences that conflict with the facility manager's energy policy for the building
    • 一种建筑物中协同能源管理和控制的系统,包括能量管理控制器,支持建筑物占用者与设施管理者之间以及建筑物占用者与能量管理控制器之间的双向通信的一个或多个乘员HMI,以及设施 管理员HMI,其支持设施经理和建筑物居住者之间以及设施经理和能量管理控制器之间的双向通信,其中乘员HMI允许建筑物居住者向设施经理和能量管理控制器提供温度偏好, 设备经理人机界面允许设施管理人员将建筑物的能源政策作为一组规则进行配置,并查看占用者的聚合温度偏好,能源管理控制器确定最佳温度范围,以解决相互冲突的乘客温度偏好和乘员温度 参与的偏好 违反了设施经理对建筑物的能源政策