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alerting building operation staff to problems requiring human action, and alleviating the need for staff to manually address the majority of problems, freeing them to repair the faults that actually require human intervention. The project objectives and outputs will include fully laboratory- and field-tested, characterized, and documented algorithms for self-correction, self-compensating and self-configuring controls for an array of building HVAC systems and equipment. The algorithms will be transferred to industry partners to whom the technical team will provide assistance with commercialization. A technical guide for implementing the algorithms in control code will also be produced to assist commercializers. Deployment of the algorithms produced will transform the installation, operation, and maintenance of HVAC systems and equipment by enabling automatic configuration of this equipment, self-healing when many common faults that degrade performance efficiency occur, and compensation for physical faults in system components to maximize efficiency until repairs can be made. These capabilities will remedy many of the problems that pervade HVAC equipment in commercial buildings. The overall project will start in FY11 by identifying and prioritizing opportunities for application of self-correcting, self-compensating, and self-configuring controls to HVAC systems and their components to determine the opportunities with the greatest potential for energy savings, cost savings and peak-power demand reductions. This task will be led by PNNL with assistance provided by NREL. In parallel with the prioritization analysis, an industry advisory group will be established to benefit from guidance that industry can provide to ensure the relevance of project results to the marketplace and to share information with interested companies, who will likely become the initial commercializers of the technology. Both NREL and PNNL will participate in recruiting members for the advisory group. Following selection of equipment/systems and faults on which to focus first, PNNL will begin development of self-correction algorithms. Algorithms designed by PNNL will be implemented and tested in facilities on the NREL campus in accordance with a jointly developed test plan. NREL will also seek partners representing a small sample of additional buildings to begin field- testing of the most-mature self-correcting controls in FY11. This work will continue and expand in FY12. Future work at NREL will involve completing development of self-correcting, self- compensating, and self-configuring controls; completion of laboratory testing in conjunction with development; and field-testing the technology in partner buildings to provide evidence of their value and reliability in practice. NREL will play a lead role in field-testing. Throughout the project, industry partners will be sought to participate in development, testing, field demonstrations, and commercialization. Applicable DOD Market: All commercial DOD buildings with operational building automation systems (BASs). 172PDF Image | 4th Annual Chena Renewable Energy Fair
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