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Solar Energy Technologies Program

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Solar Energy Technologies Program ( solar-energy-technologies-program )

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II. Improving system performance and reliability. This activity involves three main tasks: (1) collecting data on the operation of systems, (2) continuing to develop the models and tools required to track and analyze O&M data, and (3) operating and improving systems performance at the laboratories by systematically identifying root causes, initiating repairs, and, where possible, implementing design changes or upgrades to fix the problem. III. Developing and testing advanced components. A major barrier to the deployment of these systems is their cost. Developing advanced concentrators, receivers, and solar energy converters are key activities to reduce the cost of electricity from dish- engine systems. The development of hybrid receivers is of special importance, because this not only increases the operating time for the system but also increases the value of power because it makes the power dispatchable. IV. Supporting deployment by industry. Support of industry deployment of systems is crucial, not only because it supports DOE’s goal of increasing the use of solar energy, but for other reasons, as well. First, deployment of systems provides additional opportunities to gather data for reliability improvement and test beds for evaluation of new system components. Second, it is critical that deployed systems operate the “best that they possibly can” so that users and potential users will have a good picture of what the potential of this technology really is. Laboratory support and technical assistance for deployed systems is absolutely necessary to achieve this objective. Table 4.2-6 lists a number of general tasks associated with these four main activities. Also listed in the table are the barriers that each activity addresses. Not listed in the table is the benefit—the reduction in the LEC—that will accrue with the successful completion of the task. The reason the benefit is not listed is that our models are not sufficiently complete at this time to estimate the benefit. We do not have a good set of market requirements and complete models of system costs to complete the analysis. The first milestone of Activity I above addresses this issue. Table 4.2-6. Tasks for Dish-Engine/Converter Technology R&D Task Title I Perform Systems Analysis Barriers 1 Evaluate Markets for Dish Systems • Evaluate DER, remote, and village power market requirements F • Develop consistent financial parameters and assumptions for modeling costs 2 Develop Models of Dish-System Components F • Develop integrated-model architecture All • Develop individual-component models • Establish consistent economic models 3 Integrate Component Models in a Systems Model All All • Evaluate model inputs/outputs and revise All II Improve System Performance and Reliability 4 Monitor and Track Operating Systems • Identify and track existing systems B,C • Implement data-tracking activities with new system installations Solar Energy Technologies Program Multi-Year Technical Plan B,C 92

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