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基于TDS-OFDM的MIMO通感一体化波形设计与性能分析
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作者 杜疆苏 张超 《实验技术与管理》 北大核心 2026年第1期205-210,共6页
为实现通信与感知功能在统一频谱资源下的高效融合,该文围绕通感一体化的应用需求,提出了一种基于TDS-OFDM的MIMO通感一体化波形设计方案,为TDS-OFDM结构引入伪噪声序列作为时域训练信号,并与Alamouti空时编码相结合,在不额外占用频谱... 为实现通信与感知功能在统一频谱资源下的高效融合,该文围绕通感一体化的应用需求,提出了一种基于TDS-OFDM的MIMO通感一体化波形设计方案,为TDS-OFDM结构引入伪噪声序列作为时域训练信号,并与Alamouti空时编码相结合,在不额外占用频谱资源的前提下,同时支持传输通信数据与提取感知参数。场景的通信部分采用卷积编码与正交相移键控调制,以提高系统的可靠性与抗噪声能力;感知部分基于PN序列的良好自相关特性,以估计到达时间、到达角度等参数。方案的接收端基于TDS-OFDM解调框架,完成同步、信道估计、均衡及空时解码,并在此基础上提取感知信息。仿真结果表明,该设计方案的波形在多径信道条件下能够有效降低误比特率,同时具备较好的时延与角度估计精度,在通信与感知融合的场景中具备可行性与有效性。 展开更多
关键词 通感一体化 时域同步正交频分复用 伪随机序列 多径抑制 仿真实验
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基于TDS在线监测的锅炉表面与底部排污协同智能控制策略
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作者 段鹏飞 《能源与节能》 2026年第1期56-59,共4页
随着锅炉系统运行过程中水质变化对能效和设备稳定性的影响加剧,基于TDS(Total Dissolved Solids,溶解性总固体)在线监测的智能控制策略成为提升锅炉排污系统效率的关键。分析了七甸产业区的20 t/h燃气锅炉运行系统关键数据,研究了基于... 随着锅炉系统运行过程中水质变化对能效和设备稳定性的影响加剧,基于TDS(Total Dissolved Solids,溶解性总固体)在线监测的智能控制策略成为提升锅炉排污系统效率的关键。分析了七甸产业区的20 t/h燃气锅炉运行系统关键数据,研究了基于双PID(Proportional-Integral-Derivative,比例-积分-微分)并行控制算法、模糊逻辑补偿算法和大流量排污阀动态控制技术的协同智能控制策略,提出了一种多模态排污决策引擎。该引擎结合实时TDS数据和机器学习方法,动态优化排污策略,旨在提高水质稳定性并降低能源消耗。经过3个月的实证研究,验证了该策略在节能和水质控制方面的显著优势。 展开更多
关键词 tds在线监测 智能控制 燃气锅炉 水质稳定性
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Electrochromic Devices with High Stability from Colorless to Green Conversion Based on Viologen Derivatives
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作者 PENG Yuyi QIAN Chao +3 位作者 WANG Peng GUO Xu JIANG Chuanyu LIU Ping 《Journal of Wuhan University of Technology(Materials Science)》 2026年第1期258-267,共10页
Two viologen derivatives containing fluorine substituent(F)with an asymmetric structures,1,1'-bis(4-(trifluoromethyl)phenyl)-[4,4'-bipyridine]dihexafluorophosphate(DFPV)and 1-benzyl-1'-(4-(trifluoromethyl)... Two viologen derivatives containing fluorine substituent(F)with an asymmetric structures,1,1'-bis(4-(trifluoromethyl)phenyl)-[4,4'-bipyridine]dihexafluorophosphate(DFPV)and 1-benzyl-1'-(4-(trifluoromethyl)phenyl)-[4,4'-bipyridine]di-hexafluorophosphate(Bn-FPV),were synthesized.These viologen derivatives as active materials were used to assemble both flexible and rigid electrochromic devices(ECDs).ECDs based on DFPV exhibited reversible color change from colorless to deep green and ECDs based on Bn-FPV exhibited reversible color change from colorless to blue-green within applied voltage.It was found that the devices based on DFPV showed cycle stability,which could still maintain more than 90% after 1000 cycles.In addition,the modulation rate of the device to the solar irradiance is also calculated to characterize its application potential in smart windows.Among them,the rigid device(R-DFPV)based on the DFPV has a large solar irradiance modulation rate of 54.66%,which has the potential to be used as smart windows. 展开更多
关键词 viologen derivatives electrochromic material flexible electrochromic devices rigid electrochromic device smart windows
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Memristor devices for next-generation computing:from performance optimization to application-specific co-design
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作者 Zhaorui Liu Caifang Gao +5 位作者 Jingbo Yang Zuxin Chen Enlong Li Jun Li Mengjiao Li Jianhua Zhang 《International Journal of Extreme Manufacturing》 2026年第1期119-146,共28页
Memristors have emerged as a transformative technology in the realm of electronic devices,offering unique advantages such as fast switching speeds,low power consumption,and the ability to sensor-memory-compute.The app... Memristors have emerged as a transformative technology in the realm of electronic devices,offering unique advantages such as fast switching speeds,low power consumption,and the ability to sensor-memory-compute.The applications span across non-volatile memory,neuromorphic computing,hardware security,and beyond,prompting memristors to become a versatile solution for next-generation computing and data storage systems.Despite enormous potential of memristors,the transition from laboratory prototypes to large-scale applications is challenging in terms of material stability,device reproducibility,and array scalability.This review systematically explores recent advancements in high-performance memristor technologies,focusing on performance enhancement strategies through material engineering,structural design,pulse protocol optimization,and algorithm control.We provide an in-depth analysis of key performance metrics tailored to specific applications,including non-volatile memory,neuromorphic computing,and hardware security.Furthermore,we propose a co-design framework that integrates device-level optimizations with operational-level improvements,aiming to bridge the gap between theoretical models and practical implementations. 展开更多
关键词 MEMRISTOR performance optimization device design neuromorphic computing
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Photo-Assisted Flexible Energy Storage Devices:Progress,Challenges,and Future Prospects
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作者 Xupu Jiang Ting Ding +4 位作者 Rui Wang Wujun Ma Chuntao Lan Min Li Meifang Zhu 《Nano-Micro Letters》 2026年第4期197-262,共66页
Photo-assisted flexible energy storage devices,combining photoelectric conversion and electrochemical energy storage,emerge as an innovative solution for sustainable energy systems.This review comprehensively summariz... Photo-assisted flexible energy storage devices,combining photoelectric conversion and electrochemical energy storage,emerge as an innovative solution for sustainable energy systems.This review comprehensively summarizes recent advances in photo-assisted flexible energy storage technology,covering material design,working mechanisms,and practical applications.We systematically examine diverse electrode materials,such as metal oxides,metal sulfides,organic photosensitive materials,and composites,emphasizing their roles in boosting device performance.Special focus is placed on emerging technologies—including heterostructure engineering,surface modification,and intelligent control systems—that have notably enhanced energy conversion efficiency and storage capacity.The review also discusses current challenges,such as material stability,conversion efficiency,and standardization,and proposes strategic directions for future development.Recent breakthroughs in photo-assisted supercapacitors,lithium-based batteries,zinc-based batteries,and other innovative storage systems are critically assessed,offering key insights into their practical application potential in wearable electronics,self-powered sensors,and beyond.This comprehensive analysis establishes a framework for understanding the current status of photo-assisted flexible energy storage technology and guides future research toward high-performance,sustainable energy storage solutions. 展开更多
关键词 Photo-assisted energy storage Flexible devices Photoelectrochemical mechanisms ELECTRODES
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Electrocaloric refrigeration:From physical fundamentals to practical devices
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作者 Feiyu Zhang Tiannan Yang Xiaoshi Qian 《Chinese Physics B》 2026年第2期53-70,共18页
The electrocaloric(EC)effect refers to the change in the polarization entropy and/or temperature of dielectric materials when an electric field is applied and removed.EC refrigeration has received increasing interest ... The electrocaloric(EC)effect refers to the change in the polarization entropy and/or temperature of dielectric materials when an electric field is applied and removed.EC refrigeration has received increasing interest as an alternative to conventional refrigeration technologies because it provides both high energy efficiency and zero global warming potential.In this review,we first introduce the thermodynamic fundamentals of the EC effect and the mechanism of EC refrigeration cycles.We then present recent advances in EC cooling technologies,from material improvements to device demonstrations,including a critical analysis of existing material and device characterization methodologies and a discussion of how to reliably measure the parameters of materials and devices.Finally,the current challenges and possible future prospects for EC cooling technology are outlined. 展开更多
关键词 electrocaloric effect REFRIGERATION electrocaloric cooling devices electrocaloric materials
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The Application of Rhetorical Devices in High School English Continuation Writing
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作者 Mengyi Li 《Research on Educational Theory》 2026年第1期12-15,共4页
Rhetorical devices are a kind of language expression often seen in articles.With the development of the new era,the requirements for listening,speaking,reading and writing in today's English education are graduall... Rhetorical devices are a kind of language expression often seen in articles.With the development of the new era,the requirements for listening,speaking,reading and writing in today's English education are gradually increasing,and the requirements for writing are also getting higher and higher.In the English curriculum standards for senior high schools(2017 edition),the Ministry of Education also further improved the requirements of high school students'listening,speaking,reading and writing skills.In high school English textbooks,each unit of the article often contains a variety of rhetorical devices,but high school students cannot skillfully use rhetorical devices in the continuation writing.Therefore,it is necessary to explore the use of rhetorical devices in post reading continuation.This paper analyzes the application of rhetorical devices in the continuation of high school reading.Using the output oriented teaching method in teaching to help students understand and apply.The purpose is to let high school students understand the embodiment of rhetorical devices in English articles;Be able to master and skillfully use rhetorical devices in the continuation writing.This paper decides to explore and study rhetorical sentence patterns to help students increase their ability to write English and improve their appreciation of the beauty of the English language. 展开更多
关键词 Rhetorical devices Continuation writing High school English
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Cement-Based Thermoelectric Materials, Devices and Applications
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作者 Wanqiang Li Chunyu Du +1 位作者 Lirong Liang Guangming Chen 《Nano-Micro Letters》 2026年第1期750-781,共32页
Cement stands as a dominant contributor to global energy consumption and carbon emissions in the construction industry.With the upgrading of infrastructure and the improvement of building standards,traditional cement ... Cement stands as a dominant contributor to global energy consumption and carbon emissions in the construction industry.With the upgrading of infrastructure and the improvement of building standards,traditional cement fails to reconcile ecological responsibility with advanced functional performance.By incorporating tailored fillers into cement matrices,the resulting composites achieve enhanced thermoelectric(TE)conversion capabilities.These materials can harness solar radiation from building envelopes and recover waste heat from indoor thermal gradients,facilitating bidirectional energy conversion.This review offers a comprehensive and timely overview of cementbased thermoelectric materials(CTEMs),integrating material design,device fabrication,and diverse applications into a holistic perspective.It summarizes recent advancements in TE performance enhancement,encompassing fillers optimization and matrices innovation.Additionally,the review consolidates fabrication strategies and performance evaluations of cement-based thermoelectric devices(CTEDs),providing detailed discussions on their roles in monitoring and protection,energy harvesting,and smart building.We also address sustainability,durability,and lifecycle considerations of CTEMs,which are essential for real-world deployment.Finally,we outline future research directions in materials design,device engineering,and scalable manufacturing to foster the practical application of CTEMs in sustainable and intelligent infrastructure. 展开更多
关键词 Functional cement Thermoelectric materials Device structure Smart building
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A Comprehensive Review of the Functionalized Integrated Application of Gel Polymer Electrolytes in Electrochromic Devices
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作者 Lei Xu Leipeng Zhang +9 位作者 Dongqi Liu Zichen Ren Wenchao Liu Yike Zhang Yuqiang Wang Jiawu Sun Rui Yang Zekuo Lv Jiupeng Zhao Yao Li 《Nano-Micro Letters》 2026年第4期1-39,共39页
With the global push for energy conservation and the rapid development of low-power,flexible and wearable optical displays,the demand for electrochromic technology has surged.Gel polymer electrolytes(GPEs),a crucial c... With the global push for energy conservation and the rapid development of low-power,flexible and wearable optical displays,the demand for electrochromic technology has surged.Gel polymer electrolytes(GPEs),a crucial component of electrochromic devices(ECDs),show great promise in applications.This is attributed to their efficient ion-transport capabilities,excellent mechanical properties and strong adhesion.All of these characteristics are conducive to enhancing the safety of the devices,streamlining the packaging process,significantly improving the electrochromic performance of ECDs and boosting their commercial application potential.This review provides a comprehensive overview of GPEs for ECDs,focusing on their basic designs,functional modifications and practical applications.Firstly,this review outlines the fundamental design of GPEs for ECDs,encompassing key performance index,classification,gelation mechanism and preparation methods.Building on this foundation,it provides an in-depth discussion of functionalized GPEs developed to enhance device performance or expand functionality,including electrochromic,temperature-responsive,photo-responsive and stretchable self-healing GPE.Furthermore,the integration of GPEs into various ECD applications,including smart windows,displays,energy storage devices and wearable electronic,are summarized to highlight the advantages that the design of GPEs brings to the practical application of ECDs.Finally,based on the summary of GPEs employed for ECDs,the challenges and development expectations in this direction were indicated. 展开更多
关键词 Gel polymer electrolytes Electrochromic devices Multifunctional gels Polymer designs
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Wearable Ultrasound Devices for Therapeutic Applications
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作者 Sicheng Chen Qunle Ouyang +5 位作者 Xuanbo Miao Feng Zhang Zehua Chen Xiaoyan Qian Jinwei Xie Zheng Yan 《Nano-Micro Letters》 2026年第2期260-287,共28页
Wearable ultrasound devices represent a transformative advancement in therapeutic applications,offering noninvasive,continuous,and targeted treatment for deep tissues.These systems leverage flexible materials(e.g.,pie... Wearable ultrasound devices represent a transformative advancement in therapeutic applications,offering noninvasive,continuous,and targeted treatment for deep tissues.These systems leverage flexible materials(e.g.,piezoelectric composites,biodegradable polymers)and conformable designs to enable stable integration with dynamic anatomical surfaces.Key innovations include ultrasound-enhanced drug delivery through cavitation-mediated transdermal penetration,accelerated tissue regeneration via mechanical and electrical stimulation,and precise neuromodulation using focused acoustic waves.Recent developments demonstrate wireless operation,real-time monitoring,and closed-loop therapy,facilitated by energy-efficient transducers and AI-driven adaptive control.Despite progress,challenges persist in material durability,clinical validation,and scalable manufacturing.Future directions highlight the integration of nanomaterials,3D-printed architectures,and multimodal sensing for personalized medicine.This technology holds significant potential to redefine chronic disease management,postoperative recovery,and neurorehabilitation,bridging the gap between clinical and home-based care. 展开更多
关键词 Wearable ultrasound devices Drug delivery Tissue regeneration Closed-loop therapy NEUROREHABILITATION
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Zn Anode-Based Electrochromic Devices:Progress&Challenges
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作者 Bingkun Huang Feifei Zhao +6 位作者 Pengcheng Liu Yukai Xu Bin Wang Jiaqi Yang Jingwei Chen Haizeng Li William W.Yu 《Energy & Environmental Materials》 2026年第1期15-33,共19页
Unlike conventional electrochromic devices,Zinc anode-based electrochromic devices(ZECDs)ensure excellent charge balance between the electrochromic layer and Zn anode during the coloring/bleaching by reversible metal ... Unlike conventional electrochromic devices,Zinc anode-based electrochromic devices(ZECDs)ensure excellent charge balance between the electrochromic layer and Zn anode during the coloring/bleaching by reversible metal deposition/stripping on the Zn anode.Meanwhile,the inherent potential difference between the metal anode and the electrochromic layer can drive the spontaneous coloration/bleaching of ZECDs,featuring energy retrieval functionality.This review discusses the working mechanisms,performance indexes of ZECDs,and the impact of material selection on ZECD performance.Furthermore,we comprehensively summarize the latest research progress of ZECDs in energy storage,smart windows,and multicolor displays.We argue that using high-transparency zinc mesh,additive manufacturing processes,and self-healing electrochromic materials can significantly advance the commercialization of large-area ZECDs.Finally,“electrode-free”device structures,renewable or replaceable electrolytes,and strategies to suppress zinc dendrites are prospected to overcome cost-effectiveness and lifespan issues of ZECDs.This review aims at enabling more efficient and advanced ZECDs for multifunctional applications. 展开更多
关键词 electrochromic devices energy storage multicolor displays smart windows zinc anode
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Applications of Artificial Intelligence and Smart Devices in Metabolic Dysfunction-associated Steatotic Liver Disease
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作者 Wenfeng Zhu Qi Zheng +8 位作者 Xinyi Xu Xia Yu Xianbin Xu Huilan Tu Yue Yu Wubing Ying Jiahao Xie Guoping Sheng Jifang Sheng 《Journal of Clinical and Translational Hepatology》 2026年第1期59-75,共17页
Metabolic dysfunction-associated steatotic liver disease(MASLD)is now considered to be among the most prevalent chronic liver diseases worldwide.Its comprehensive management encompasses multiple stages,including risk ... Metabolic dysfunction-associated steatotic liver disease(MASLD)is now considered to be among the most prevalent chronic liver diseases worldwide.Its comprehensive management encompasses multiple stages,including risk assessment,early detection,stratified intervention,and long-term follow-up.Among these,improving diagnostic accuracy and optimizing individualized therapeutic strategies remain key challenges in both research and clinical practice.In recent years,artificial intelligence and smart devices have developed rapidly and have gradually been applied in the medical field,offering novel tools and pathways for MASLD risk stratification,non-invasive diagnosis,therapeutic evaluation,and patient self-management.This review summarizes the current applications of artificial intelligence and smart devices in MASLD care,highlights their benefits and limitations,and discusses future directions to support precision diagnosis and treatment strategies. 展开更多
关键词 Metabolic dysfunction-associated steatotic liver disease MASLD Artificial intelligence Smart device DIAGNOSIS TREATMENT
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Reliability Evaluation of Electrical Subsystem in Wind Turbines Considering Hygrothermal Aging of Power Electronic Devices
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作者 Xueying Yu Kaigui Xie +4 位作者 Changzheng Shao Bo Hu Yinzhe Hu Wenyuan Li Jinfeng Ding 《CSEE Journal of Power and Energy Systems》 2026年第1期329-338,共10页
The rapid development of wind energy in the power sectors raises the question about the reliability of wind turbines for power system planning and operation.The electrical subsystem of wind turbines(ESWT),which is one... The rapid development of wind energy in the power sectors raises the question about the reliability of wind turbines for power system planning and operation.The electrical subsystem of wind turbines(ESWT),which is one of the most vulnerable parts of the wind turbine,is investigated in this paper.The hygrothermal aging of power electronic devices(PEDs)is modeled for the first time in the comprehensive reliability evaluation of ESWT,by using a novel stationary“circuit-like”approach.First,the failure mechanism of the hygrothermal aging,which includes the solder layer fatigue damage and packaging material performance degradation,is explained.Then,a moisture diffusion resistance concept and a hygrothermal equivalent circuit are proposed to quantitate the hygrothermal aging behavior.A conditional probability function is developed to calculate the time-varying failure rate of PEDs.At last,the stochastic renewal process is simulated to evaluate the reliability for ESWT through the sequential Monte Carlo simulation,in which failure,repair,and replacement states of devices are all included.The effectiveness of our proposed reliability evaluation method is verified on an ESWT in a 2 MW wind turbine use time series data collected from a wind farm in China. 展开更多
关键词 Electrical subsystem in wind turbine hygrothermal aging power electronic devices power system reliability evaluation
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Machine learning driven inverse design of devices and components for optical communication and sensing systems:a comprehensive review
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作者 Md Moinul Islam Khan Md Hosne Mobarok Shamim +3 位作者 Abdullah Nafis Khan Md Saifuddin Faruk Mudassir Masood Mohammed Zahed Mustafa Khan 《Advanced Photonics Nexus》 2026年第1期26-60,共35页
We discuss recent progress in using machine-learning(ML)-enabled inverse design techniques applied to photonic devices and components.Specifically,we highlight the design of optical sources,including fiber and semicon... We discuss recent progress in using machine-learning(ML)-enabled inverse design techniques applied to photonic devices and components.Specifically,we highlight the design of optical sources,including fiber and semiconductor lasers,as well as Raman and semiconductor optical amplifiers.Although inverse design approaches for optical detectors remain relatively underexplored,we examine optical layers,particularly metamaterial absorbers,as promising candidates for high-performance optical detection.In addition,we underscore advancements in inverse designing passive optical components,including beam splitters,gratings,and optical fibers.These optical blocks are fundamental in developing next-generation standalone optical communication systems and optical sensing networks,including integrated sensing and communication technologies.While categorizing various reported deep learning architectures across five paradigms,we offer a paradigm-based perspective that reveals how different ML techniques function within modern inverse design methods and enable fast,data-driven solutions that significantly reduce design time and computational demands compared with traditional optimization methods. 展开更多
关键词 machine learning deep learning inverse design photonic device semiconductor laser fiber laser Raman amplifier semiconductor optical amplifier fiber amplifier optical fiber power splitter grating fiber Bragg grating metagrating COUPLER metamaterial absorber
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基于随机森林模型识别浅层地下水TDS异常的方法研究 被引量:4
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作者 褚宴佳 何宝南 +1 位作者 陈珍 何江涛 《地学前缘》 北大核心 2025年第2期456-468,共13页
准确识别人类活动引起的地下水水化学异常对于确定地下水水化学组分的背景值,合理开展地下水污染评价至关重要。溶解性总固体(TDS)作为地下水水化学的综合指标,其值的高低直接反映了地下水水质的好坏。目前,水化学图法在地下水TDS的异... 准确识别人类活动引起的地下水水化学异常对于确定地下水水化学组分的背景值,合理开展地下水污染评价至关重要。溶解性总固体(TDS)作为地下水水化学的综合指标,其值的高低直接反映了地下水水质的好坏。目前,水化学图法在地下水TDS的异常值识别中取得了较好的效果,但是,其基本原理是基于主要离子组分构成的水化学类型异常必然导致TDS异常的假设,而进行的反向异常识别,可能存在过度识别的情况。为此,本文以沙颍河流域浅层地下水为研究对象,从TDS成因机制出发,提出了采用随机森林模型结合数理统计的正向识别方法,对研究区内浅层地下水TDS的异常值进行识别,并开展了多种方法异常值识别效果的对比研究。结果表明,机器学习法能够有效地识别出地下水TDS异常值,其识别出的地下水TDS阈值与其他方法较为一致。但相比之下,机器学习法从TDS成因机制角度识别异常,能够有效避免水化学图存在的过度识别问题,而且能够区分高、低异常,为TDS异常识别提供了另外一种有效的思路和方法,丰富了地下水环境背景值的研究思路。 展开更多
关键词 地下水环境背景值 tds 异常值 机器学习法 沙颍河流域
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TDS智能干选系统在柳湾煤矿的研究应用 被引量:1
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作者 王娟娟 《能源与节能》 2025年第2期264-267,共4页
介绍了柳湾煤矿动筛车间动筛跳汰机的运行情况,结合煤质分析试验,分析了动筛跳汰机运行过程中存在的问题。通过工艺过程比较,发现TDS智能干选系统具有处理量大、分选精度高、不产生煤泥、安全可靠的特点。总结了TDS智能干选工艺操作方... 介绍了柳湾煤矿动筛车间动筛跳汰机的运行情况,结合煤质分析试验,分析了动筛跳汰机运行过程中存在的问题。通过工艺过程比较,发现TDS智能干选系统具有处理量大、分选精度高、不产生煤泥、安全可靠的特点。总结了TDS智能干选工艺操作方案和注意事项。TDS智能干选设备脱除矸石的效率为99.47%,矸中带煤率为0.70%,每年实现增收5.574×10~7元,具有较好的经济效益、安全效益和管理效益。 展开更多
关键词 动筛车间 tds智能干选 煤矿 选煤
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TDS智能干选机在煤矿排矸系统中的应用与优化研究 被引量:1
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作者 马志东 《山东煤炭科技》 2025年第3期145-148,158,共5页
针对矿井煤质变化带来的矸石排放问题,围绕东曲选煤厂TDS智能干选机在煤矿排矸系统中的应用与优化进行深入研究,分析设备的技术参数、系统布局的改进以及排矸工艺的优化等一系列内容,提出TDS智能干选机系统化改造方案,实现排矸流程的优... 针对矿井煤质变化带来的矸石排放问题,围绕东曲选煤厂TDS智能干选机在煤矿排矸系统中的应用与优化进行深入研究,分析设备的技术参数、系统布局的改进以及排矸工艺的优化等一系列内容,提出TDS智能干选机系统化改造方案,实现排矸流程的优化以及分选技术的集成化应用。研究表明,通过采用X射线辐射检测与大数据分析技术,TDS智能干选机实现了高精度的煤矸分离,有效提高了排矸系统的效率。同时,系统在分选精度、带煤率以及经济效益方面表现优异。年均回收原煤为1.09万t,带来了294.3万元的经济效益,维护成本降低了30%。 展开更多
关键词 tds智能干选机 煤矿排矸系统 辐射检测技术
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基于THZ-TDS镀银低辐射玻璃镀层质量及缺陷检测 被引量:1
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作者 李昶 路学光 +5 位作者 陈科帆 黄婉霞 李建根 赵晓健 黄维 吴翔 《太赫兹科学与电子信息学报》 2025年第4期353-359,共7页
低辐射(Low-E)玻璃的性能以及缺陷检测在其生产中具有十分重要的意义,目前对于单、双、多银等Low-E玻璃,缺陷检测主要是对其可见光图像进行分析,存在着一定的局限性,如对比度不足,识别效率较低等。太赫兹波能够穿透多数非导电材料,在内... 低辐射(Low-E)玻璃的性能以及缺陷检测在其生产中具有十分重要的意义,目前对于单、双、多银等Low-E玻璃,缺陷检测主要是对其可见光图像进行分析,存在着一定的局限性,如对比度不足,识别效率较低等。太赫兹波能够穿透多数非导电材料,在内部缺陷检测,结构分析等方面表现出色。因此,利用太赫兹时域光谱(THz-TDS)以及基于该原理的扫描成像技术来检测Low-E玻璃的镀层结构及其表面划痕损伤。通过反射式太赫兹时域光谱技术以及扫描成像技术研究了不同镀层结构玻璃的太赫兹波脉冲信号的反射信号波形以及强度信息,并实现了对缺陷的成像操作,证明太赫兹时域光谱技术在玻璃镀层鉴定及其缺陷检测领域的可行性。 展开更多
关键词 太赫兹时域光谱 太赫兹成像 LOW-E玻璃 无损检测 缺陷检测
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Ion-modulation optoelectronic neuromorphic devices:mechanisms,characteristics,and applications 被引量:1
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作者 Xiaohan Meng Runsheng Gao +1 位作者 Xiaojian Zhu Run-Wei Li 《Journal of Semiconductors》 2025年第2期24-36,共13页
The traditional von Neumann architecture faces inherent limitations due to the separation of memory and computa-tion,leading to high energy consumption,significant latency,and reduced operational efficiency.Neuromorph... The traditional von Neumann architecture faces inherent limitations due to the separation of memory and computa-tion,leading to high energy consumption,significant latency,and reduced operational efficiency.Neuromorphic computing,inspired by the architecture of the human brain,offers a promising alternative by integrating memory and computational func-tions,enabling parallel,high-speed,and energy-efficient information processing.Among various neuromorphic technologies,ion-modulated optoelectronic devices have garnered attention due to their excellent ionic tunability and the availability of multi-dimensional control strategies.This review provides a comprehensive overview of recent progress in ion-modulation optoelec-tronic neuromorphic devices.It elucidates the key mechanisms underlying ionic modulation of light fields,including ion migra-tion dynamics and capture and release of charge through ions.Furthermore,the synthesis of active materials and the proper-ties of these devices are analyzed in detail.The review also highlights the application of ion-modulation optoelectronic devices in artificial vision systems,neuromorphic computing,and other bionic fields.Finally,the existing challenges and future direc-tions for the development of optoelectronic neuromorphic devices are discussed,providing critical insights for advancing this promising field. 展开更多
关键词 ion migration optoelectronic modulation optoelectronic device neuromorphic computing artificial vision system
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Synaptic devices based on silicon carbide for neuromorphic computing 被引量:1
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作者 Boyu Ye Xiao Liu +2 位作者 Chao Wu Wensheng Yan Xiaodong Pi 《Journal of Semiconductors》 2025年第2期38-51,共14页
To address the increasing demand for massive data storage and processing,brain-inspired neuromorphic comput-ing systems based on artificial synaptic devices have been actively developed in recent years.Among the vario... To address the increasing demand for massive data storage and processing,brain-inspired neuromorphic comput-ing systems based on artificial synaptic devices have been actively developed in recent years.Among the various materials inves-tigated for the fabrication of synaptic devices,silicon carbide(SiC)has emerged as a preferred choices due to its high electron mobility,superior thermal conductivity,and excellent thermal stability,which exhibits promising potential for neuromorphic applications in harsh environments.In this review,the recent progress in SiC-based synaptic devices is summarized.Firstly,an in-depth discussion is conducted regarding the categories,working mechanisms,and structural designs of these devices.Subse-quently,several application scenarios for SiC-based synaptic devices are presented.Finally,a few perspectives and directions for their future development are outlined. 展开更多
关键词 silicon carbide wide bandgap semiconductors synaptic devices neuromorphic computing high temperature
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