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Analysis of inverse synthetic aperture radar imaging in the presence of time-varying plasma sheath 被引量:1
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作者 Yaocong XIE Xiaoping LI +4 位作者 fangfang shen Bowen BAI Yanming LIU Xuyang CHEN Lei SHI 《Plasma Science and Technology》 SCIE EI CAS CSCD 2022年第3期19-32,共14页
The plasma sheath can induce radar signal modulation,causing not only ineffective target detection,but also defocusing in inverse synthetic aperture radar(ISAR)imaging.In this paper,through establishing radar echo mod... The plasma sheath can induce radar signal modulation,causing not only ineffective target detection,but also defocusing in inverse synthetic aperture radar(ISAR)imaging.In this paper,through establishing radar echo models of the reentry object enveloped with time-varying plasma sheath,we simulated the defocusing of ISAR images in typical environment.Simulation results suggested that the ISAR defocusing is caused by false scatterings,upon which the false scatterings’formation mechanism and distribution property are analyzed and studied.The range of false scattering correlates with the electron density fluctuation frequency.The combined value of the electron density fluctuation and the pulse repetition frequency jointly determines the Doppler of false scattering.Two measurement metrics including peak signal-to-noise ratio and structural similarity are used to evaluate the influence of ISAR imaging. 展开更多
关键词 ISAR imaging plasma sheath TIME-VARYING transmission line matrix DEFOCUSING
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Inverse synthetic aperture radar range profile compensation of plasma-sheath-enveloped reentry object
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作者 Yaocong XIE Xiaoping LI +3 位作者 fangfang shen Bowen BAI Lei SHI Xuyang CHEN 《Plasma Science and Technology》 SCIE EI CAS CSCD 2022年第7期148-161,共14页
The scattering points in a plasma sheath characterized with coupled velocities can cause pulse compression mismatching,which results in displacement and energy diffusion in the onedimension range profile.To solve this... The scattering points in a plasma sheath characterized with coupled velocities can cause pulse compression mismatching,which results in displacement and energy diffusion in the onedimension range profile.To solve this problem,we deduce the echo model of the plasma-sheathenveloped reentry object.By estimating the coupled velocities,we propose a compensation method to correct the defocus of an inverse synthetic aperture radar(ISAR)image in range dimension to improve the quality of the ISAR images.The simulation results suggest that the echoes from different regions of the surface of the reentry object have various coupling velocities,and the higher the coupled velocity,the more serious the displacement and energy diffusion in the range dimension.Our proposed method can correct the range dimension aberration.Two measurement metrics were used to evaluate the improvement of the compensation method. 展开更多
关键词 plasma sheath inverse synthetic aperture radar imaging DEFOCUS coupled velocity reentry object
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Study of plasma-based stable and ultrawideband electromagnetic wave absorption for stealth application
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作者 Xuyang CHEN fangfang shen +2 位作者 Yanming LIU Wei AI Xiaoping LI 《Plasma Science and Technology》 SCIE EI CAS CSCD 2018年第6期78-88,共11页
A plasma-based stable,ultra-wideband electromagnetic(EM) wave absorber structure is studied in this paper for stealth applications.The stability is maintained by a multi-layer structure with several plasma layers an... A plasma-based stable,ultra-wideband electromagnetic(EM) wave absorber structure is studied in this paper for stealth applications.The stability is maintained by a multi-layer structure with several plasma layers and dielectric layers distributed alternately.The plasma in each plasma layer is designed to be uniform,whereas it has a discrete nonuniform distribution from the overall view of the structure.The nonuniform distribution of the plasma is the key to obtaining ultra-wideband wave absorption.A discrete Epstein distribution model is put forward to constrain the nonuniform electron density of the plasma layers,by which the wave absorption range is extended to the ultra-wideband.Then,the scattering matrix method(SMM) is employed to analyze the electromagnetic reflection and absorption of the absorber structure.In the simulation,the validation of the proposed structure and model in ultra-wideband EM wave absorption is first illustrated by comparing the nonuniform plasma model with the uniform case.Then,the influence of various parameters on the EM wave reflection of the plasma are simulated and analyzed in detail,verifying the EM wave absorption performance of the absorber.The proposed structure and model are expected to be superior in some realistic applications,such as supersonic aircraft. 展开更多
关键词 plasma stealth ultra wideband Epstein profile scattering matrix method(SMM) electromagnetic(EM) wave absorption stable wave absorption
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模拟氮沉降和灌草去除对杉木人工林地土壤微生物群落结构的影响 被引量:11
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作者 雷学明 沈芳芳 +4 位作者 雷学臣 刘文飞 段洪浪 樊后保 吴建平 《生物多样性》 CAS CSCD 北大核心 2018年第9期962-971,共10页
土壤微生物是陆地生态系统重要的分解者和地上–地下相互作用的纽带。本文以亚热带杉木(Cunninghamia lanceolateata)人工林为对象,通过模拟林冠层氮沉降和林下灌草去除,设置4种处理,包括:对照(CK)、灌草去除(UR)、氮沉降(N)和氮沉降加... 土壤微生物是陆地生态系统重要的分解者和地上–地下相互作用的纽带。本文以亚热带杉木(Cunninghamia lanceolateata)人工林为对象,通过模拟林冠层氮沉降和林下灌草去除,设置4种处理,包括:对照(CK)、灌草去除(UR)、氮沉降(N)和氮沉降加灌草去除(N×UR)的野外控制实验,研究土壤微生物群落结构的响应。本实验分别于2016年4月(春季)和10月(秋季)采集0–10cm层土壤样品,运用磷脂脂肪酸法(PLFAs)分析土壤微生物群落结构。结果表明:(1)10月份土壤微生物总PLFAs量及其他类群土壤微生物PLFAs量显著高于4月份(P <0.05),真菌/细菌比值没有显著差异。土壤微生物PLFAs中细菌占优势,其次为真菌,放线菌的占比最小;(2)相比CK处理, UR处理下土壤微生物总PLFAs量、细菌PLFAs量、革兰氏阴性菌PLFAs量和放线菌PLFAs量有增加趋势,但未达到显著差异水平(P> 0.05);(3)相对CK, UR、N和N×UR处理降低了4月份土壤微生物多样性(H′)和均匀度指数(J),但提高了10月份土壤微生物多样性指数;(4)冗余分析表明,土壤硝态氮和总磷含量与土壤微生物群落之间呈现显著相关。本研究表明土壤微生物PLFAs在各处理下都表现出明显的季节动态;短期内林下灌草去除对土壤微生物PLFAs影响表现出一定的促进作用,氮沉降对土壤微生物群落影响还不甚明显,需要长期的监测研究来评估两者及其交互作用对土壤微生物群落及其功能的影响。 展开更多
关键词 土壤微生物群落 多样性 氮沉降 灌草去除 杉木人工林
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PIWI-interacting RNAs: Mitochondria-based biogenesis and functions in cancer 被引量:2
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作者 Jingfen Su Anthony Concilla +4 位作者 Dianzheng Zhang Fang Zhao fangfang shen Hao Zhang Fuyou Zhou 《Genes & Diseases》 SCIE 2021年第5期603-622,共20页
PIWI-interacting RNA(piRNAs),once thought to be mainly functioning in germlines,are now known to play an essential role in somatic and cancerous tissues.Ping-pong cycle initi-ation and mitochondria-based phased produc... PIWI-interacting RNA(piRNAs),once thought to be mainly functioning in germlines,are now known to play an essential role in somatic and cancerous tissues.Ping-pong cycle initi-ation and mitochondria-based phased production constitute the core of the piRNA biogenesis and these two processes are well conserved in mammals,including humans.By being involved in DNA methylation,histone marker deposition,mRNA degradation,and protein modification,piRNAs also contribute to carcinogenesis partly due to oncogenic stress-induced piRNA dysre-gulation.Also,piRNAs play important roles in cancer stemness,drug resistance,and tumor immunology.Results from liquid biopsy analysis of piRNA can be used in both cancer diagnoses and cancer prognoses.A combination of targeting piRNA with other therapeutic strategies could be groundbreaking cancer treatment. 展开更多
关键词 Carcinogenesis Clinical utility Mitochondria-based phased production Ping-pong cycle Piwi-interacting RNAs
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