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Performance Metrics and Objective Testing Methods for Energy Baseline Modeling Software

机译:能源基线建模软件的性能指标和客观测试方法

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With advances in energy metering, communication, and analytic software technologies, providers of Energy Management and Information Systems (EMIS) are opening new frontiers in building energy efficiency. Through their engagement platforms and interfaces, EMIS products can enable energy savings through multiple strategies including equipment operational improvements and upgrades, and occupant behavioral changes. These products often quantify whole-building savings relative to a baseline period using methods that predict energy consumption from key parameters such as ambient weather conditions and operation schedule. These automated baseline models streamline the M&V process and are of critical importance to owners and utility program stakeholders implementing multi-measure energy efficiency programs. This paper presents the results of a PG&E Emerging Technology program, undertaken to advance capabilities in evaluating EMIS products for building-level baseline energy modeling. A general methodology to evaluate baseline model performance was developed and used with hourly whole-building energy data from nearly 400 small and large commercial buildings. Evaluation metrics describing model accuracy were identified and assessed for their appropriateness in describing model baseline performance, as well as their usefulness for identifying and pre-screening buildings for whole-building savings estimation suitability. The state of five public-domain models was assessed using the methodology and test data set, and implications for whole building M&V described. Finally a protocol was developed to test EMIS vendor’s proprietary models while navigating practical issues concerning test data security, vendor intellectual property, and maintaining appropriate testing ‘blinds,’ while processing a large data set. Ongoing work entails stakeholder vetting, demonstration of the test procedures with new baseline models solicited from the public, and publication of the results for industry adoption.
机译:随着能源计量,通信和分析软件技术的进步,能源管理和信息系统(EMIS)的供应商正在建​​立能源效率方面开辟新的边界。通过他们的订婚平台和界面,EMIS产品可以通过包括设备运营改进和升级的多种策略来实现节能,并且占用行为发生变化。这些产品通常使用预测来自环境天气条件等关键参数和操作时间表的关键参数的方法来定量全建筑节省。这些自动基线模型简化了M&V流程,对实施多测量能效计划的业主和实用程序利益相关者具有至关重要的重要性。本文介绍了PG&E新兴技术计划的结果,为评估EMIS产品进行了建筑级基线能源建模而进行了推进的能力。为评估基线模型性能的一般方法是开发的,并与来自近400个小商业建筑的每小时全建筑能量数据一起使用。描述和评估描述模型准确性的评估指标,并评估其适当描述模型基线绩效,以及他们对全建筑节省估算适用性的识别和预筛选建筑物的有用性。使用方法和测试数据集进行评估五种公共域模型的状态,并对整个构建M&V描述的影响。最后,开发了一种协议,以测试EMIS供应商的专有模型,同时导航有关测试数据安全性,供应商知识产权的实际问题,并在处理大数据集时维护适当的测试“百叶窗”。正在进行的工作需要利益攸关方审查,并使用公众征求的新基线模型的测试程序示范,并出版行业采用的结果。

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