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STATUS OF THE ADVANCED DISH DEVELOPMENT SYSTEM PROJECT

机译:高级光盘开发系统项目的状态

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The Advanced Dish Development System (ADDS) project is a system-level dish/engine development activity aimed at the extensive but challenging remote power market. The ADDS project involves integration and test of advanced dish/Stirling systems. The ADDS designs utilize the WGAssociates solar concentrator and controls, and the SOLO 161 Stirling Power Conversion Unit. Development has focused on extending the application of dish/Stirling systems to water pumping, and reliability and performance improvement. Testing includes unattended, automatic operation of stand-alone dish/Stirling solar power generation systems in both on and off-grid modes at the National Solar Thermal Test Facility (NSTTF) in Albuquerque, MM. In 1999, a first generation (Mod 1) system was fielded at the NSTTF and routine unattended operation initiated. In 2000, a system reliability tracking system was implemented on the Mod 1 system and an upgraded, second-generation (Mod 2) system, including a stand-alone water-pumping capability was developed. In 2001 and 2002 system performance and reliability were improved. Overall, the ADDS project has been successful with most of the original system specifications and objectives having been met or exceeded. The ADDS designs are efficient and maintainable and have proven the ability to operate autonomously in a remote environment. The Mod 1 system net power rating was increased from 9 to 10 kWe even while the concentrator mirror area was reduced by over 14%. The Mod 2 design is the first modern dish/engine system to operate independent of the utility grid and is capable of interfacing with standard three-phase, 480-volt, water-pump or other single motor applications. In this paper, the ADDS project plan and history, technical approach, and the major system components and features are briefly described. Project milestones and status along with test results are also presented.
机译:Advanced Dish Development System(ADDS)项目是系统级的碟/引擎开发活动,旨在开发广泛但充满挑战的远程电源市场。 ADDS项目涉及高级培养皿/斯特林系统的集成和测试。 ADDS设计利用WGAssociates太阳能集中器和控件以及SOLO 161斯特林功率转换单元。开发集中在将碟式/斯特林系统的应用扩展到水泵上,以及提高可靠性和性能。测试包括在密歇根州阿尔伯克基市的国家太阳能热测试设施(NSTTF)上,在并网和离网模式下无人值守的自动碟/斯特林太阳能发电系统的自动运行。 1999年,第一代(Mod 1)系统在NSTTF投入使用,并开始了常规的无人值守操作。 2000年,在Mod 1系统上实施了系统可靠性跟踪系统,并开发了升级的第二代(Mod 2)系统,其中包括独立的抽水功能。在2001年和2002年,系统的性能和可靠性得到了提高。总体而言,ADDS项目已经成功完成,并且大多数原始系统规范和目标均已达到或超过。 ADDS设计高效且可维护,并已证明具有在远程环境中自主运行的能力。即使聚光镜面积减少了14%以上,Mod 1系统的净功率额定值也从9 kWe增加到10 kWe。 Mod 2设计是第一个独立于公用电网运行的现代洗碗机/发动机系统,能够与标准三相,480伏,水泵或其他单电机应用接口。本文简要介绍了ADDS项目计划和历史,技术方法以及主要的系统组件和功能。还介绍了项目的里程碑和状态以及测试结果。

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