为满足工业应用大功率微波源的需求,开展了基于两路S波段1 k W注入锁定连续波磁控管的微波功率相干功率合成系统的实验研究。在理论上,分析了两路磁控管输出微波功率比和相位差对合成效率的影响。在实验中,用同步的微波源实现两路注入信...为满足工业应用大功率微波源的需求,开展了基于两路S波段1 k W注入锁定连续波磁控管的微波功率相干功率合成系统的实验研究。在理论上,分析了两路磁控管输出微波功率比和相位差对合成效率的影响。在实验中,用同步的微波源实现两路注入信号,采用磁控管注入锁定技术,通过虚拟仪器软件实现了自动化合成功率控制。实验成功进行了基于两路1 k W在S波段注入锁定连续波磁控管的相干功率合成。测试结果表明,两路S波段1 k W连续波磁控管的相干功率最高合成效率≥95%,为研究高效率的大功率合成微波源提供了重要的实验基础。展开更多
The problems associated with vibrations of viaducts and low-frequency structural noise radiation caused by train excitation continue to increase in importance.A new floating-slab track vibration isolator-non-obstructi...The problems associated with vibrations of viaducts and low-frequency structural noise radiation caused by train excitation continue to increase in importance.A new floating-slab track vibration isolator-non-obstructive particle damping-phononic crystal vibration isolator is proposed herein,which uses the particle damping vibration absorption technology and bandgap vibration control theory.The vibration reduction performance of the NOPD-PCVI was analyzed from the perspective of vibration control.The paper explores the structure-borne noise reduction performance of the NOPD-PCVIs installed on different bridge structures under varying service conditions encountered in practical engineering applications.The load transferred to the bridge is obtained from a coupled train-FST-bridge analytical model considering the different structural parameters of bridges.The vibration responses are obtained using the finite element method,while the structural noise radiation is simulated using the frequency-domain boundary element method.Using the particle swarm optimization algorithm,the parameters of the NOPD-PCVI are optimized so that its frequency bandgap matches the dominant bridge structural noise frequency range.The noise reduction performance of the NOPD-PCVIs is compared to the steel-spring isolation under different service conditions.展开更多
文摘为满足工业应用大功率微波源的需求,开展了基于两路S波段1 k W注入锁定连续波磁控管的微波功率相干功率合成系统的实验研究。在理论上,分析了两路磁控管输出微波功率比和相位差对合成效率的影响。在实验中,用同步的微波源实现两路注入信号,采用磁控管注入锁定技术,通过虚拟仪器软件实现了自动化合成功率控制。实验成功进行了基于两路1 k W在S波段注入锁定连续波磁控管的相干功率合成。测试结果表明,两路S波段1 k W连续波磁控管的相干功率最高合成效率≥95%,为研究高效率的大功率合成微波源提供了重要的实验基础。
基金Project(51978585)supported by the National Natural Science Foundation,ChinaProject(2022YFB2603404)supported by the National Key Research and Development Program,China+1 种基金Project(U1734207)supported by the High-speed Rail Joint Fund Key Projects of Basic Research,ChinaProject(2023NSFSC1975)supported by the Sichuan Nature and Science Foundation Innovation Research Group Project,China。
文摘The problems associated with vibrations of viaducts and low-frequency structural noise radiation caused by train excitation continue to increase in importance.A new floating-slab track vibration isolator-non-obstructive particle damping-phononic crystal vibration isolator is proposed herein,which uses the particle damping vibration absorption technology and bandgap vibration control theory.The vibration reduction performance of the NOPD-PCVI was analyzed from the perspective of vibration control.The paper explores the structure-borne noise reduction performance of the NOPD-PCVIs installed on different bridge structures under varying service conditions encountered in practical engineering applications.The load transferred to the bridge is obtained from a coupled train-FST-bridge analytical model considering the different structural parameters of bridges.The vibration responses are obtained using the finite element method,while the structural noise radiation is simulated using the frequency-domain boundary element method.Using the particle swarm optimization algorithm,the parameters of the NOPD-PCVI are optimized so that its frequency bandgap matches the dominant bridge structural noise frequency range.The noise reduction performance of the NOPD-PCVIs is compared to the steel-spring isolation under different service conditions.