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    • 2. 发明申请
    • MANAGEMENT OF POWER FROM MULTIPLE SOURCES BASED ON ELEVATOR USAGE PATTERNS
    • 基于电梯使用模式的多源电力管理
    • US20110139547A1
    • 2011-06-16
    • US13059535
    • 2008-09-04
    • William A. VeronesiStella M. Oggianu
    • William A. VeronesiStella M. Oggianu
    • B66B1/30
    • B66B1/302
    • Power distribution is managed in an elevator system including an elevator hoist motor (12), a primary power supply (20), and—an energy storage system (32). A predicted usage pattern for the hoist motor is established based on past hoist motor power demand in the elevator system or in similar elevator systems in similar buildings. A target storage state for the energy storage system is then set based on the predicted usage pattern. Power exchanged between the hoist motor, the primary power supply, and the energy storage system is controlled to address power demand of the hoist motor and to maintain the storage state of the energy storage system at about the target storage state.
    • 在包括电梯起重电动机(12),主电源(20)和能量存储系统(32)的电梯系统中管理配电。 基于电梯系统中的过去提升电机功率需求或类似建筑物中类似的电梯系统建立起重电动机的预测使用模式。 然后基于预测的使用模式来设置能量存储系统的目标存储状态。 控制起重电动机,主电源和能量存储系统之间的电力交换以解决起重电动机的电力需求,并将储能系统的存储状态保持在大约目标的存储状态。
    • 5. 发明授权
    • Management of power from multiple sources based on elevator usage patterns
    • 基于电梯使用模式从多个来源管理电力
    • US08616338B2
    • 2013-12-31
    • US13059535
    • 2008-09-04
    • William A. VeronesiStella M. Oggianu
    • William A. VeronesiStella M. Oggianu
    • B66B1/06
    • B66B1/302
    • Power distribution is managed in an elevator system including an elevator hoist motor (12), a primary power supply (20), and—an energy storage system (32). A predicted usage pattern for the hoist motor is established based on past hoist motor power demand in the elevator system or in similar elevator systems in similar buildings. A target storage state for the energy storage system is then set based on the predicted usage pattern. Power exchanged between the hoist motor, the primary power supply, and the energy storage system is controlled to address power demand of the hoist motor and to maintain the storage state of the energy storage system at about the target storage state.
    • 在包括电梯起重电动机(12),主电源(20)和能量存储系统(32)的电梯系统中管理配电。 基于电梯系统中的过去提升电机功率需求或类似建筑物中类似的电梯系统建立起重电动机的预测使用模式。 然后基于预测的使用模式来设置能量存储系统的目标存储状态。 控制起重电动机,主电源和能量存储系统之间的电力交换以解决起重电动机的电力需求,并将储能系统的存储状态保持在大约目标的存储状态。
    • 8. 发明申请
    • BATTERY STATE-OF-CHARGE CALIBRATION
    • 电池充电校准
    • US20110226559A1
    • 2011-09-22
    • US13129257
    • 2008-11-17
    • Lei ChenWilliam A. VeronesiStella M. OggianuVladimir Blasko
    • Lei ChenWilliam A. VeronesiStella M. OggianuVladimir Blasko
    • B66B1/06H02J7/04
    • G01R35/005B66B1/308G01R31/361G01R31/3651
    • Calibration of the state-of-charge (SOC) of a battery-based energy storage system used with a regenerative drive uses an SOC-open circuit voltage (V?oc#191) correlation. The battery is partially charged or discharged to assure operation defined by V?oc#191 following a known V?oc#191-SOC profile, such as a charge or discharge boundary curve. The partial charging/discharging may be synchronized with a traffic profile of an elevator system driven by the regenerative drive. A V?oc#191 measurement is made, and by enhancing the relaxation dynamics of V?oc#191 through regulating battery usage with a reference to traffic profile, a V?oc#191 is estimated more reliably. Using the estimate V?oc#191 and the known V?oc#191-SOC profile, state-of-charge of the battery is determined.
    • 与再生驱动一起使用的基于电池的能量存储系统的充电状态(SOC)的校准使用SOC开路电压(Vαoc#191)相关。 电池部分充电或放电,以确保按照已知的V oc oc#191-SOC配置文件(如充电或放电边界曲线)由V?oc#191定义的操作。 部分充电/放电可以与由再生驱动器驱动的电梯系统的交通曲线同步。 进行V oc oc#191测量,通过参照交通流量轮廓来调节电池使用量,通过增强VαOC#191的松弛动力学,更可靠地估计VαOC#191。 使用估计Vαc#191和已知的Vαoc#191-SOC曲线,确定电池的充电状态。
    • 10. 发明授权
    • Electrical signal application strategies for monitoring a condition of an elevator load bearing member
    • 用于监测电梯承载构件状况的电信号应用策略
    • US08011479B2
    • 2011-09-06
    • US10598044
    • 2004-03-16
    • Paul A. StuckyMichael A. KryzmanWilliam A. Veronesi
    • Paul A. StuckyMichael A. KryzmanWilliam A. Veronesi
    • B66B3/00
    • B66B7/1223D07B1/145G01N27/20
    • An elevator load bearing member (30) monitoring device includes a controller (42) that applies a selected electrical signal to tension members (32) of the load bearing member (30). In one example, connectors (40) are associated with ends of the load bearing member (30) to establish an electrical interface between the controller (42) and the tension members (32). The connectors (40) facilitate establishing electrical circuit loops along the tension members (32) such that only non-adjacent tension members are energized at a selected time. A variety of circuit configurations are disclosed. The applied electrical signal in one example has a potential that is negative compared to a ground potential of a hoistway in which the elevator belt is used. In another example, the electrical signal comprises a plurality of pulses and has a duty cycle that is on the order of about one percent.
    • 电梯承载构件(30)监视装置包括将所选择的电信号施加到承载构件(30)的张紧构件(32)的控制器(42)。 在一个示例中,连接器(40)与承载构件(30)的端部相关联,以在控制器(42)和张力构件(32)之间建立电接口。 连接器(40)有助于沿着张力构件(32)建立电路回路,使得只有非相邻的张紧构件在选定的时间被通电。 公开了各种电路配置。 在一个示例中,施加的电信号具有与使用电梯带的井道的地电位相比为负的电位。 在另一示例中,电信号包括多个脉冲,并且具有大约百分之一左右的占空比。