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    • 6. 发明申请
    • Fill level control system for an article cleaning apparatus
    • 用于物品清洁装置的填充液位控制系统
    • US20060237036A1
    • 2006-10-26
    • US11113699
    • 2005-04-25
    • John PicardatDavid WeaverJerry Ferguson
    • John PicardatDavid WeaverJerry Ferguson
    • B08B3/02
    • G01F23/00A47L15/4244
    • A fill level control system for an article cleaning apparatus is provided. The fill level control system uses a sensor array to monitor a plurality of fill level points within, for example, a dishwasher. The level of water for each wash phase is monitored as a function of its height above the sump of an article cleaning apparatus, and the liquid used in the washing apparatus is introduced as a function of signals produced giving the level of liquid. The fill level control system further includes a low level sensor that turns the pumping system for the article cleaning apparatus off when the sump portion has been completely emptied. A further aspect of the fill level control system is an optional temperature control sensor, integrated with the liquid level sensors, to provide signals for modifying the temperature within the article cleaning apparatus.
    • 提供了一种用于制品清洁装置的填充液位控制系统。 填充液位控制系统使用传感器阵列来监测例如洗碗机内的多个填充水平点。 作为其在物品清洁装置的贮槽上方的高度的函数来监测每个洗涤阶段的水位,并且根据产生给出液体水平的信号引入洗涤装置中使用的液体的函数。 填充液位控制系统还包括一个低水平的传感器,当油底壳部分已经完全排空时,该液位传感器将用于物品清洁设备的泵送系统切断。 填充液位控制系统的另一方面是与液位传感器集成的可选的温度控制传感器,以提供用于改变物品清洁设备内的温度的信号。
    • 10. 发明申请
    • Automatic energy management and energy consumption reduction, especially in commercial and multi-building system
    • 自动能源管理和能源消耗减少,特别是在商业和多建筑系统中
    • US20070255461A1
    • 2007-11-01
    • US11783883
    • 2007-04-12
    • Peter BrickfieldDirk MahlingMark NoyesDavid Weaver
    • Peter BrickfieldDirk MahlingMark NoyesDavid Weaver
    • G05F3/00
    • H02J3/14H02J3/008H02J2003/003H02J2003/007Y02B70/3225Y02E40/76Y02E60/76Y02P80/11Y04S10/545Y04S20/222Y04S20/224Y04S40/22Y04S50/10Y10T307/461
    • Automatic energy management is provided, in even the most complex multi-building system. The necessity of a human operator for managing energy in a complex, multi-building system is reduced and even eliminated. Computer-based monitoring and computer-based recognition of adverse energy events (such as the approach of a new energy peak) is highly advantageous in energy management. Immediate automatic querying of energy users within a system of buildings for energy curtailment possibilities is provided. Such immediate, automatic querying may be answered by the energy users through artificial intelligence and/or neural network technology provided to or programmed into the energy users, and the queried energy users may respond in real-time. Those real-time computerized responses with energy curtailment possibilities may be received automatically by a data processing facility, and processed in real-time. Advantageously, the responses from queried energy users with energy curtailment possibilities may be automatically processed into a round-robin curtailment rotation which may be implemented by a computer-based control system. Thus, impact on occupants is minimized, and energy use and energy cost may be beneficially reduced in an intelligent, real-time manner. The invention also provides for early-recognition of impending adverse energy events, optimal response to a particular energy situation, real-time analysis of energy-related data, etc.
    • 即使是最复杂的多建筑系统,也提供自动能源管理。 在复杂的多层建筑系统中,人力资源管理能源管理的必要性被减少甚至消除。 基于计算机的监控和基于计算机的不利能源事件识别(如新能源峰值的方法)在能源管理方面是非常有利的。 提供了建筑物系统内能源使用者的即时自动查询能力削减的可能性。 这种即时的自动查询可以由能量用户通过提供给或编程到能量用户中的人工智能和/或神经网络技术来回答,并且查询的能量用户可以实时地进行响应。 这些具有能量削减可能性的实时计算机化响应可以由数据处理设备自动接收并被实时处理。 有利地,来自具有能量削减可能性的查询能量用户的响应可以被自动处理成可以由基于计算机的控制系统实现的循环削减旋转。 因此,对居民的影响最小化,能够以智能,实时的方式有利地减少能源消耗和能源成本。 本发明还提供即将到来的不利能量事件的早期识别,对特定能量情况的最佳响应,能量相关数据的实时分析等。