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    • 3. 发明授权
    • Setpoint adjustment-based duty cycling
    • 基于设定点调整的义务循环
    • US09310815B2
    • 2016-04-12
    • US13765623
    • 2013-02-12
    • Tendril Networks, Inc.
    • Eric M. Shiflet
    • G05D23/19G06Q10/06F24F11/00
    • F24F11/001F24F11/30F24F2110/00F24F2110/10F24F2140/60G05B19/042G05B2219/2614G05B2219/2639G05D23/1923G06Q10/06
    • A facility for performing setpoint adjustment-based duty cycling techniques by adjusting the setpoint of a device or component is described. The facility reduces energy consumption for a system, such as an HVAC system, or device by adjusting or modulating an associated setpoint or temperature setting. The facility modulates the setpoint between a base setpoint value and another setpoint value based on a mode of the system. When the system is in a cooling mode, the facility modulates the temperature between the base setpoint value and a higher setpoint value. When the system is in heating mode, the facility modulates the temperature between the base setpoint value and a lower setpoint value. The facility may modulate the setpoint between the two setpoint values based on an offset value or a fixed setpoint value.
    • 描述了通过调整设备或组件的设定点来执行基于设定点调整的占空比技术的设备。 该设施通过调整或调整相关的设定值或温度设置来降低系统(如HVAC系统或设备)的能耗。 设备根据系统的模式调整基准设定值和另一设定值之间的设定值。 当系统处于冷却模式时,设备将调节基准设定值和较高设定值之间的温度。 当系统处于加热模式时,设备将调节基准设定值和较低设定值之间的温度。 设备可以基于偏移值或固定设定值调节两个设定值之间的设定值。
    • 5. 发明授权
    • Personalization of recommendations based on building model and behavioral science
    • 基于建筑模型和行为科学的个性化建议
    • US09471718B2
    • 2016-10-18
    • US13829252
    • 2013-03-14
    • Tendril Networks, Inc.
    • Michael BukhinPaul ColeCharles D. CorbinEmily Weitkamp
    • G06F17/50
    • G06F17/5004G06Q30/02G06Q50/06
    • The technology disclosed herein provides accurate, targeted, building improvement content in a way that resonates with the user by considering the user's whole ecosystem. The technology uses details of the user's home, neighborhood, family, environmental and historical factors, goals, economic situation, and motivations and preferences to tailor content to a user's personal situation. A server or other computing device may accomplish this by receiving data from the client, a third party, or data local to the server; building modeling constructs based on these data sets such as a physics-based model of the building and a behavioral model of the user; operating these models relative to possible discrete building improvement content units; and using the results to determine personalized building improvement content for the user such as, for example, a webpage.
    • 本文所公开的技术通过考虑用户的整个生态系统而以与用户共鸣的方式提供准确的,有针对性的建筑物改进内容。 该技术使用用户家庭,社区,家庭,环境和历史因素,目标,经济状况,动机和偏好的细节来定制用户个人情况的内容。 服务器或其他计算设备可以通过从客户端,第三方或服务器本地的数据接收数据来实现此目的; 基于这些数据集的建筑建模构造,例如建筑物的基于物理的模型和用户的行为模型; 相对于可能的离散建筑物改进内容单元来操作这些模型; 以及使用结果来确定用户的个性化建筑物改进内容,例如网页。
    • 6. 发明申请
    • COLLABORATIVE ENERGY BENCHMARKING SYSTEMS AND METHODS
    • 协同能源基准系统和方法
    • US20150192626A1
    • 2015-07-09
    • US14634435
    • 2015-02-27
    • Tendril Networks, Inc.
    • Charles Reid BenesRebecca Fay PremusMichael Kent RuthCarol L. StimmelAdrian Christopher TuckAndrew James Wheeler
    • G01R21/00H04L29/08
    • G01R21/00G06Q30/02H04L67/10
    • Systems and methods for providing collaborative energy benchmarking are described. Information including background data, energy consumption data, temporal data, and/or other information is gathered from multiple sources and stored in a central database. Based on the stored information, energy benchmarks are created for measuring residential energy usage. Energy usage data is displayed to consumers in multiple formats, and permits consumers to directly compare their energy usage data to other consumers or groups of consumers, in addition to their own energy usage. In some embodiments, energy challenge programs encourage reduction of energy usage. Through such programs, consumers create and present challenges for themselves and/or other consumers, such as to reduce energy usage during a given timeframe. The progress of the group and individual consumers is displayed during the course of a challenge.
    • 描述了提供协同能量基准测试的系统和方法。 包括背景数据,能量消耗数据,时间数据和/或其他信息的信息从多个来源收集并存储在中央数据库中。 基于存储的信息,创建能量基准用于测量住宅用电量。 能量消耗数据以多种格式显示给消费者,并允许消费者除了自己的能源使用外,还可以将其能源使用数据直接与其他消费者或消费者群体进行比较。 在一些实施例中,能量挑战程序鼓励减少能量消耗。 通过这样的方案,消费者为自己和/或其他消费者创造和提出挑战,例如在给定的时间段内减少能源消耗。 在挑战过程中显示团体和个人消费者的进展情况。
    • 7. 发明申请
    • PERSONALIZATION OF RECOMMENDATIONS BASED ON BUILDING MODEL AND BEHAVIORAL SCIENCE
    • 基于建筑模型和行为科学的建议个性化
    • US20140278264A1
    • 2014-09-18
    • US13829252
    • 2013-03-14
    • TENDRIL NETWORKS, INC.
    • Michael BukhinPaul ColeCharles D. CorbinEmily Weitkamp
    • G06F17/50
    • G06F17/5004G06Q30/02G06Q50/06
    • The technology disclosed herein provides accurate, targeted, building improvement content in a way that resonates with the user by considering the user's whole ecosystem. The technology uses details of the user's home, neighborhood, family, environmental and historical factors, goals, economic situation, and motivations and preferences to tailor content to a user's personal situation. A server or other computing device may accomplish this by receiving data from the client, a third party, or data local to the server; building modeling constructs based on these data sets such as a physics-based model of the building and a behavioral model of the user; operating these models relative to possible discrete building improvement content units; and using the results to determine personalized building improvement content for the user such as, for example, a webpage.
    • 本文所公开的技术通过考虑用户的整个生态系统而以与用户共鸣的方式提供准确的,有针对性的建筑物改进内容。 该技术使用用户家庭,社区,家庭,环境和历史因素,目标,经济状况,动机和偏好的细节来定制用户个人情况的内容。 服务器或其他计算设备可以通过从客户端,第三方或服务器本地的数据接收数据来实现此目的; 基于这些数据集的建筑建模构造,例如建筑物的基于物理的模型和用户的行为模型; 相对于可能的离散建筑物改进内容单元来操作这些模型; 以及使用结果来确定用户的个性化建筑物改进内容,例如网页。
    • 8. 发明申请
    • SETPOINT ADJUSTMENT-BASED DUTY CYCLING
    • 基于设置点调整的占空比
    • US20140229016A1
    • 2014-08-14
    • US13765623
    • 2013-02-12
    • TENDRIL NETWORKS, INC.
    • Eric M. Shiflet
    • G05D23/19
    • F24F11/001F24F11/30F24F2110/00F24F2110/10F24F2140/60G05B19/042G05B2219/2614G05B2219/2639G05D23/1923G06Q10/06
    • A facility for performing setpoint adjustment-based duty cycling techniques by adjusting the setpoint of a device or component is described. The facility reduces energy consumption for a system, such as an HVAC system, or device by adjusting or modulating an associated setpoint or temperature setting. The facility modulates the setpoint between a base setpoint value and another setpoint value based on a mode of the system. When the system is in a cooling mode, the facility modulates the temperature between the base setpoint value and a higher setpoint value. When the system is in heating mode, the facility modulates the temperature between the base setpoint value and a lower setpoint value. The facility may modulate the setpoint between the two setpoint values based on an offset value or a fixed setpoint value.
    • 描述了通过调整设备或组件的设定点来执行基于设定点调整的占空比技术的设备。 该设施通过调整或调整相关的设定值或温度设置来降低系统(如HVAC系统或设备)的能耗。 设备根据系统的模式调整基准设定值和另一设定值之间的设定值。 当系统处于冷却模式时,设备将调节基准设定值和较高设定值之间的温度。 当系统处于加热模式时,设备将调节基准设定值和较低设定值之间的温度。 设备可以基于偏移值或固定设定值调节两个设定值之间的设定值。