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Air target recognition method against ISRJ for radio frequency proximity sensors using chaotic stream encryption
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作者 Jian-feng Li Jian Dai +2 位作者 Xin-hong Hao Xiao-peng Yan Xin-wei Wang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第10期267-279,共13页
The interrupted-sampling repeater jamming(ISRJ)can cause false targets to the radio-frequency proximity sensors(RFPSs),resulting in a serious decline in the target detection capability of the RFPS.This article propose... The interrupted-sampling repeater jamming(ISRJ)can cause false targets to the radio-frequency proximity sensors(RFPSs),resulting in a serious decline in the target detection capability of the RFPS.This article proposes a recognition method for RFPSs to identify the false targets caused by ISRJ.The proposed method is realized by assigning a unique identity(ID)to each RFPS,and each ID is a periodically and chaotically encrypted in every pulse period.The processing technique of the received signal is divided into ranging and ID decryption.In the ranging part,a high-resolution range profile(HRRP)can be obtained by performing pulse compression with the binary chaotic sequences.To suppress the noise,the singular value decomposition(SVD)is applied in the preprocessing.Regarding ID decryption,targets and ISRJ can be recognized through the encryption and decryption processes,which are controlled by random keys.An adaptability analysis conducted in terms of the peak-to-side lobe ratio(PSLR)and bit error rate(BER)indicates that the proposed method performs well within a 70-k Hz Doppler shift.A simulation and experimental results show that the proposed method achieves extremely stable target and ISRJ recognition accuracies at different signal-to-noise ratios(SNRs)and jamming-to-signal ratios(JSRs). 展开更多
关键词 Interrupted-sampling repeater jamming(ISRJ) Radio frequency proximity sensors(RFPS) Chaotic stream encryption air target recognition Identity(ID)decryption
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Air Target Fuzzy Pattern Recognition Threat-Judgment Model
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作者 Tong Youtang & Wang JianmingDalian University of Technology, Dalian 110624, P. R. China Dalian Naval Academy, Dalian 116018, P. R. China 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2003年第1期41-46,共6页
Threat-judgment is a complicated fuzzy inference problem. Up to now no relevant unified theory and measur-ing standard have been developed. It is very difficult to establish a threat-judgment model with high reliabili... Threat-judgment is a complicated fuzzy inference problem. Up to now no relevant unified theory and measur-ing standard have been developed. It is very difficult to establish a threat-judgment model with high reliability in the airdefense system for the naval warships. Air target threat level judgment is an important component in naval warship com-bat command decision-making systems. According to the threat level judgment of air targets during the air defense of sin-gle naval warship, a fuzzy pattern recognition model for judging the threat from air targets is established. Then an algo-rithm for identifying the parameters in the model is presented. The model has an adaptive feature and can dynamicallyupdate its parameters according to the state change of the attacking targets and the environment. The method presentedhere can be used for the air defense system threat judgment in the naval warships. 展开更多
关键词 air targets Threat judgment Fuzzy pattern recognition Fuzzy sets
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Full Digital Smart Fuze on Air Target
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作者 潘曦 崔占忠 《Journal of Beijing Institute of Technology》 EI CAS 2010年第4期386-389,共4页
The intelligent fuzing is a kind of perfect way to optimize detonation location.The fuze can autonomously configure the warhead detonation mode to optimize the desired effects against the target.For the air target,the... The intelligent fuzing is a kind of perfect way to optimize detonation location.The fuze can autonomously configure the warhead detonation mode to optimize the desired effects against the target.For the air target,the fuze can sense the impact in the impact mode then detonate the warhead on impact,otherwise,it will operate in the proximity mode and detonate at a closest approach to the target.The anti-jamming ability is also added on fuze's full digital signal processing platform.The method for burst point's controlling is analyzed and the digital intelligent fuze system based on system on programmable chip(SOPC) is designed. 展开更多
关键词 smart fuze bursting point controlling SOPC air target
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VOC emission caps constrained by air quality targets based on response surface model:A case study in the Pearl River Delta Region,China
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作者 Ya’nan Hu Bowen Shi +5 位作者 Xin Yuan Chuanzeng Zheng Qing’e Sha Yufan Yu Zhijiong Huang Junyu Zheng 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2023年第1期430-445,共16页
Because of the recent growth in ground-level ozone and increased emission of volatile organic compounds(VOCs),VOC emission control has become a major concern in China.In response,emission caps to control VOC have been... Because of the recent growth in ground-level ozone and increased emission of volatile organic compounds(VOCs),VOC emission control has become a major concern in China.In response,emission caps to control VOC have been stipulated in recent policies,but few of them were constrained by the co-control target of PM_(2.5)and ozone,and discussed the factor that influence the emission cap formulation.Herein,we proposed a framework for quantification of VOC emission caps constrained by targets for PM_(2.5)and ozone via a new response surface modeling(RSM)technique,achieving 50%computational cost savings of the quantification.In the Pearl River Delta(PRD)region,the VOC emission caps constrained by air quality targets varied greatly with the NOxemission reduction level.If control measures in the surrounding areas of the PRD region were not considered,there could be two feasible strategies for VOC emission caps to meet air quality targets(160μg/m^(3)for the maximum 8-hr-average 90th-percentile(MDA8-90%)ozone and 25μg/m^(3)for the annual average of PM_(2.5)):a moderate VOC emission cap with<20%NOxemission reductions or a notable VOC emission cap with>60%NOxemission reductions.If the ozone concentration target were reduced to 155μg/m^(3),deep NOxemission reductions is the only feasible ozone control measure in PRD.Optimization of seasonal VOC emission caps based on the Monte Carlo simulation could allow us to gain higher ozone benefits or greater VOC emission reductions.If VOC emissions were further reduced in autumn,MDA8-90%ozone could be lowered by 0.3-1.5μg/m^(3),equaling the ozone benefits of 10%VOC emission reduction measures.The method for VOC emission cap quantification and optimization proposed in this study could provide scientific guidance for coordinated control of regional PM_(2.5)and O_(3)pollution in China. 展开更多
关键词 Volatile organic compounds Emission caps air quality targets Response surface model Monte Carlo(MC)simulations
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Developing China's roadmap for air quality improvement:A review on technology development and future prospects 被引量:1
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作者 Yueyi Feng Miao Ning +2 位作者 Wenbo Xue Miaomiao Cheng Yu Lei 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2023年第1期510-521,共12页
Air pollution control policies in China have been experiencing profound changes,highlighting a strategic transformation from total pollutant emission control to air quality improvement,along with the shifting targets ... Air pollution control policies in China have been experiencing profound changes,highlighting a strategic transformation from total pollutant emission control to air quality improvement,along with the shifting targets starting from acid rain and NO_(x)emissions to PM_(2.5)pollution,and then the emerging O_(3)challenges.The marvelous achievements have been made with the dramatic decrease of SO_(2)emission and fundamental improvement of PM_(2.5)concentration.Despite these achievements,China has proposed Beautiful China target through 2035 and the goal of 2030 carbon peak and 2060 carbon neutrality,which impose stricter requirements on air quality and synergistic mitigation with Greenhouse Gas(GHG)emissions.Against this background,an integrated multi-objective and multi-benefit roadmap is required to provide decision support for China’s long-term air quality improvement strategy.This paper systematically reviews the technical system for developing the air quality improvement roadmap,which was integrated from the research output of China’s National Key R&D Program for Research on Atmospheric Pollution Factors and Control Technologies(hereafter Special NKP),covering mid-and long-term air quality target setting techniques,quantitative analysis techniques for emission reduction targets corresponding to air quality targets,and pathway optimization techniques for realizing reduction targets.The experience and lessons derived from the reviews have implications for the reformation of China’s air quality improvement roadmap in facing challenges of synergistic mitigation of PM_(2.5)and O_(3),and the coupling with climate change mitigation. 展开更多
关键词 air quality management air quality targets Mitigation pathway optimization Dynamic emission scenario Cost-benefit evaluation Integrated decision-support model
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Increasing life expectancy in China by achieving its 2025 air quality target 被引量:1
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作者 Yixuan Zheng Tao Xue +1 位作者 Hongyan Zhao Yu Lei 《Environmental Science and Ecotechnology》 SCIE 2022年第4期65-71,共7页
China is striving to build a“Beautiful China”characterized by clean air.The country has committed to further reducing its national mean fine particle(PM_(2.5))concentration by 10%from 2020 to 2025,following the subs... China is striving to build a“Beautiful China”characterized by clean air.The country has committed to further reducing its national mean fine particle(PM_(2.5))concentration by 10%from 2020 to 2025,following the substantial improvements in its air quality during the past decade.Meanwhile,the“Healthy China”mission has pledged to increase the national mean life expectancy by one year during the same period.Yet,to what extent will the“Beautiful China”mission contribute to the“Healthy China”vision by reducing the levels of the detrimental PM_(2.5) is still unclear.Here,by coupling the life table approach and an epidemiological concentration-response model,this study quantifies the potential benefits of achieving China's 2025 air quality target on the national life expectancy.The analysis reveals that the Chinese citizen could expect to extend the average life expectancy by 42.5 days by 2025 due to improved air quality.In addition,if the Chinese government outperforms the planned air quality target,as it usually does,the gains would increase to 65.4 days,~18% of the“Healthy China”life expectancy increment task.Further reductions in PM_(2.5) concentration would lead to accelerated gains in life expectancy both nationally and at the city level,providing strong incentives for the authorities to keep improving air quality.This study reveals the notable benefits on individual life that could be expected from air quality improvement in China and suggests that longer life expectancy is achievable by implementing a health-prioritized air quality management mechanism. 展开更多
关键词 air pollution PM2.5 Life expectancy air quality target China
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