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软件化雷达技术发展思考与展望 被引量:18
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作者 汤俊 岑宗骏 《信号处理》 CSCD 北大核心 2022年第10期1999-2008,共10页
针对现代雷达技术发展速度加快和愈趋复杂的特点,本文首先指出目前雷达技术在装备研发效率和更新换代速度两方面面临的挑战,并对国内外的发展进行了综述,指出软件化雷达是应对这些挑战的有力手段。然后,给出了软件化雷达体系架构的定义... 针对现代雷达技术发展速度加快和愈趋复杂的特点,本文首先指出目前雷达技术在装备研发效率和更新换代速度两方面面临的挑战,并对国内外的发展进行了综述,指出软件化雷达是应对这些挑战的有力手段。然后,给出了软件化雷达体系架构的定义,并提出了包括物理层、中间件层、组件层、应用层的四层体系架构模型。在此基础上,结合开放式系统的概念,分析了软件化雷达组件化设计方法的特点:抽象化、组件化、可重用、可定制、自包容、互操作、松耦合。基于这些特点,软件化雷达组件化设计方法可以实现雷达系统的快速构建。接下来进一步指出了软件化雷达的技术定位是一种平台性技术,会为雷达装备应对各种挑战带来更多可能性。最后,对软件化雷达技术未来的发展方向和需要重视的问题进行了总结。 展开更多
关键词 软件化雷达 体系架构 组件化设计方法
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Design and parametric optimization of thermal management of lithium-ion battery module with reciprocating air-flow 被引量:3
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作者 刘燕平 欧阳陈志 +1 位作者 江清柏 梁波 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期3970-3976,共7页
Single cell temperature difference of lithium-ion battery(LIB) module will significantly affect the safety and cycle life of the battery. The reciprocating air-flow module created by a periodic reversal of the air flo... Single cell temperature difference of lithium-ion battery(LIB) module will significantly affect the safety and cycle life of the battery. The reciprocating air-flow module created by a periodic reversal of the air flow was investigated in an effort to mitigate the inherent temperature gradient problem of the conventional battery system with a unidirectional coolant flow with computational fluid dynamics(CFD). Orthogonal experiment and optimization design method based on computational fluid dynamics virtual experiments were developed. A set of optimized design factors for the cooling of reciprocating air flow of LIB thermal management was determined. The simulation experiments show that the reciprocating flow can achieve good heat dissipation, reduce the temperature difference, improve the temperature homogeneity and effectively lower the maximal temperature of the modular battery. The reciprocating flow improves the safety, long-term performance and life span of LIB. 展开更多
关键词 lithium-ion battery thermal management reciprocating air-flow temperature difference orthogonal optimization SIMULATION
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