摘要
评述了激光聚变主放大器能源系统的演变过程。在简要评述传统能源系统的基础上,重点指出目前正朝向建立大型的能源组件实现模块化的方向发展,以减少系统元件数目,降低造价。结合NIF和神光Ⅲ原型能源模块的设计思路,述评了减少元件数目、降低造价、建造大型储能模块,以及采用大容量转换开关所带来的技术挑战和解决办法。同时指出开展能源单元技术(包括性能、风险、价格)研究是十分必要的。
This paper describes the novel power conditioning systems (PCS) with a pre-ionization/lamp check (PILC) for flashlamp-pumped laser. Its architecture is different from any traditional laser power conditioning system and was chosen as the most cost-effective way to reliably deliver the large amounts of electrical energy needed for laser ICF facilities. The design of the power conditioning systems represents an evolution that has occurred over many years and several generations of lasers. The direction of this evolution has been to build modules that can handle larger amounts of energy with a smaller number of components. Although the novel power conditioning design involves several technical challenges (The operation of parallel flashlamp, large module size, parallel capacitor, large capacity output switch), the PCS must also meet lifetime, reliability, and maintainability requirements that are derived from the operational requirements for the large laser system. The paper also describes the sensitivity of system performance of various fault-mode.
出处
《强激光与粒子束》
EI
CAS
CSCD
北大核心
2003年第4期346-351,共6页
High Power Laser and Particle Beams
基金
国家863计划项目资助课题