会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 5. 发明申请
    • METHODS AND SYSTEMS FOR IMPROVED TIME COST AND ACCURACY OF ENERGY USAGE BASELINING
    • 改进时间成本和能源使用准确性的方法和系统
    • US20130297240A1
    • 2013-11-07
    • US13463901
    • 2012-05-04
    • Drew Jon DuttonRobert Bartmess
    • Drew Jon DuttonRobert Bartmess
    • G06F19/00
    • G01D4/00G06Q50/06Y02B70/343Y02B90/245Y02B90/248Y04S20/34Y04S20/40Y04S20/52
    • Systems, methods, and mediums generate an energy usage baseline. A method includes receiving historical energy usage data for a building. The method includes identifying a historical energy usage baseline as a function of temperature based on the historical energy usage data. The method includes receiving measurements for current energy usage for the building to form a set of energy usage measurements. The method includes associating the set of energy usage measurements with values for temperature for an area where the building is located. The method includes generating a correction factor for the historical energy usage baseline based on a comparison of the set of energy usage measurements with a portion of the historical energy usage baseline corresponding to the values for temperature associated with the set of energy usage measurements. The method includes generating an adjusted energy usage baseline by applying the correction factor to the historical energy usage baseline.
    • 系统,方法和介质产生能量使用基准。 一种方法包括接收建筑物的历史能量使用数据。 该方法包括基于历史能量使用数据识别作为温度的函数的历史能量使用基线。 该方法包括接收建筑物当前能量使用的测量值以形成一组能量使用测量值。 该方法包括将能量使用测量集合与建筑物所在区域的温度值相关联。 该方法包括基于能量使用量测量集合与历史能量使用基线的一部分对应于与该组能量使用测量值相关联的温度的值的比较来生成用于历史能量使用基线的校正因子。 该方法包括通过将校正因子应用于历史能量使用基线来产生经调整的能量使用基线。
    • 8. 发明申请
    • System for Evaluating, Measuring and Verifying Power Consumption Based on Price-Point Control
    • 基于价格控制的评估,测量和验证功耗系统
    • US20120166003A1
    • 2012-06-28
    • US12977524
    • 2010-12-23
    • James Eric Taylor
    • James Eric Taylor
    • G06F1/26
    • G01D4/00Y02B70/343Y02B90/245Y04S20/34Y04S20/40
    • A system and method for evaluating, measuring and verifying energy consumption at a facility requires initially establishing a benchmark at the facility based on price-point variations for energy costs, set by the regional ISO. The benchmark is established by measuring the facility's Energy Consumption Level (ECL) over a 30-day period, while no conservation efforts are being taken. To obtain an incentive award, a target value Energy Saving Factor (ESF) is identified relative to the benchmark. Energy conservation efforts are then implemented to control the ECL of the facility in response to price-point variations. When the target value ESF is maintained for a predetermined time, an incentive award is warranted and, once verified, can be given immediately.
    • 用于评估,测量和验证设施能源消耗的系统和方法要求,首先根据区域ISO设定的能源成本的价格差异,在设施建立基准。 该基准是通过在30天的时间内测量设备的能耗水平(ECL)建立的,而不采取保护措施。 要获得奖励奖励,相对于基准确定目标值节能因子(ESF)。 然后实施节能工作,以响应价格变动来控制设施的ECL。 当目标值ESF保持预定时间时,奖励奖励是有保证的,一旦被证实,可以立即给予。
    • 10. 发明申请
    • Gas-energy observatory
    • 天然气观测站
    • US20080027885A1
    • 2008-01-31
    • US11495705
    • 2006-07-31
    • Mauritius H.P.M. van PuttenAntonius F.P. van PuttenMichael J.A.M. van PuttenPascal F.A.M. van Putten
    • Mauritius H.P.M. van PuttenAntonius F.P. van PuttenMichael J.A.M. van PuttenPascal F.A.M. van Putten
    • G06F17/00
    • G01D4/004G06Q50/06Y02B70/3266Y02B70/343Y02B90/242Y02B90/245Y02B90/248Y04S20/242Y04S20/322Y04S20/34Y04S20/40Y04S20/52
    • Heating is a significant factor in residential gas-energy usage. Saving energy on heating is receiving increasing attention with rising energy prices and the Kyoto Protocol on reducing greenhouse gas emissions. Energy awareness and energy efficiency hereby become important qualifications for human behavior and residential building codes, and become a factor in the evolution of the global climate. Here, we describe a novel measurement and validation system for domestic gas-energy usage in combination with primary weather data. We disclose a gas-energy observatory which visualizes human behavior in gas-energy consumption associated with domestic facilities, and measures home energy efficiency by calorimetry. Weather-sensitivity analysis quantifies energy-usage as a function of small variations in room temperature and home energy efficiency. Weather-sensitivity data can be used to calculate changes in room-temperature settings or improvements in home insulation for a desired reduction in CO2-output. By public dissemination of its primary weather data, it creates in dual-use at no additional cost a novel in-situ climate observational systems with unprecedented wide-area coverage and spatial resolution.
    • 加热是住宅瓦斯能源使用的重要因素。 节约能源的能源正在越来越受到能源价格上涨的关注和“京都议定书”减少温室气体排放。 能源意识和能源效率因此成为人类行为和住宅建筑规范的重要资格,成为全球气候变化的一个因素。 在这里,我们描述了一个新的家用燃气能量测量和验证系统,结合主要天气数据。 我们公开了一个天然气观测站,其中显示了与国内设施相关的天然气能源消耗的人类行为,并通过量热法测量家庭能源效率。 天气敏感性分析将能源使用量化为室温和家庭能源效率的小变化的函数。 天气敏感性数据可以用于计算室温设置的变化或家庭绝缘的改进,以期望减少CO 2 - 输出。 通过公开传播其主要天气数据,它创造了双重用途,无需额外的费用,即具有前所未有的广域覆盖和空间分辨率的新型原位气候观测系统。