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Solar Energy Technologies Program

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

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Task 3 Title CPV Module Research and Development Barriers • Assess need for new system designs having reduced weight as G measured in terms of kg/kW or kg/m2, while meeting structural and wind- loading requirements. • Assess need to develop lower-cost manufacturing processes through plant layout, supply specification, component design, or system design. • Design a conceptual CPV system targeting 33% system efficiency and G G H I • Conduct complete CPV systems analysis using the systems-driven J 4 meeting 2025 LEC goals • Assess needs for low-cost, high-accuracy, stable tracker concepts. • Develop a modified international version of IEEE 1513-2001 to qualify III- V solar cells in a CPV system. System Analysis approach to verify and prioritize target barriers. • Conduct complete CPV systems analysis to identify and verify K L M Estimated CY Date 04 Q4 04 Q4 04 Q4 05 Q4 06 Q4 07 Q4 07 Q4 04 Q4 06 Q4 07 Q4 appropriate CPV markets and to identify CPV systems interface issues. • Track field operation of CPV systems deployed by other organizations. • Support CPV stakeholders in the development of other (international) standards needed for CPV components and for systems integration. 4.1.2.5 Schedule and Milestones Table 4.1.2-3. Schedule and Milestones for CPV Milestones Task Title 1. 1 2. 1 3. 1 4. 1 5. 1 6. 1 7. 1 8. 1 9. 1 10. 1 Exploration and development of a myriad of third-generation solar-cell approaches for efficiency of 60%; select university research teams. Evaluate optimized cell grown by molecular-beam epitaxy to assess the viability of GaInNAs for multijunction cells. Assess research on exploring pathways to high-efficiency PV and develop plans for implementation phase. Demonstrate 37% cell efficiency under concentration. Demonstrate the feasibility of third-generation PV devices such as hot-carrier and impact-ionization concepts. Demonstrate 39% cell efficiency under concentration. Explore film transfer, wafer bonding, or buffer layer technologies as a means to increase cell performance and reduce cost. Develop testing protocol for III-V solar cells under concentration. Begin Implementation efforts of Phase II, High-Performance PV, addressing critical cell and receiver components. Assess implementation efforts of Phase II, leading to the initiation of Phase III of High Performance PV implementing CPV advances. Solar Energy Technologies Program Multi-Year Technical Plan 75

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