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Two-Stage LightGBM Framework for Cost-Sensitive Prediction of Impending Failures of Component X in Scania Trucks
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作者 Si-Woo Kim Yong Soo Kim 《Computers, Materials & Continua》 2026年第3期1222-1240,共19页
Predictive maintenance(PdM)is vital for ensuring the reliability,safety,and cost efficiency of heavyduty vehicle fleets.However,real-world sensor data are often highly imbalanced,noisy,and temporally irregular,posing ... Predictive maintenance(PdM)is vital for ensuring the reliability,safety,and cost efficiency of heavyduty vehicle fleets.However,real-world sensor data are often highly imbalanced,noisy,and temporally irregular,posing significant challenges to model robustness and deployment.Using multivariate time-series data from Scania trucks,this study proposes a novel PdM framework that integrates efficient feature summarization with cost-sensitive hierarchical classification.First,the proposed last_k_summary method transforms recent operational records into compact statistical and trend-based descriptors while preserving missingness,allowing LightGBM to leverage its inherent split rules without ad-hoc imputation.Then,a two-stage LightGBM framework is developed for fault detection and severity classification:Stage A performs safety-prioritized fault screening(normal vs.fault)with a false-negativeweighted objective,and Stage B refines the detected faults into four severity levels through a cascaded hierarchy of binary classifiers.Under the official cost matrix of the IDA Industrial Challenge,the framework achieves total misclassification costs of 36,113(validation)and 36,314(test),outperforming XGBoost and Bi-LSTM by 3.8%-13.5%while maintaining high recall for the safety-critical class(0.83 validation,0.77 test).These results demonstrate that the proposed approach not only improves predictive accuracy but also provides a practical and deployable PdM solution that reduces maintenance cost,enhances fleet safety,and supports data-driven decision-making in industrial environments. 展开更多
关键词 Predictive maintenance two-stage classification cost-based evaluation LightGBM scania component X dataset
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A novel constitutive model for two-stage creep aging process of 7B50 aluminum alloy and its application in springback prediction 被引量:2
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作者 Ling-zhi XU Can-yu TONG +7 位作者 Chang-zhi LIU Li-hua ZHAN Ming-hui HUANG You-liang YANG Dong-yang YAN Jian-hua YIN Hui XIA Yong-qian XU 《Transactions of Nonferrous Metals Society of China》 2025年第3期734-748,共15页
A new unified constitutive model was developed to predict the two-stage creep-aging(TSCA)behavior of Al-Zn-Mg-Cu alloys.The particular bimodal precipitation feature was analyzed and modeled by considering the primary ... A new unified constitutive model was developed to predict the two-stage creep-aging(TSCA)behavior of Al-Zn-Mg-Cu alloys.The particular bimodal precipitation feature was analyzed and modeled by considering the primary micro-variables evolution at different temperatures and their interaction.The dislocation density was incorporated into the model to capture the effect of creep deformation on precipitation.Quantitative transmission electron microscopy and experimental data obtained from a previous study were used to calibrate the model.Subsequently,the developed constitutive model was implemented in the finite element(FE)software ABAQUS via the user subroutines for TSCA process simulation and the springback prediction of an integral panel.A TSCA test was performed.The result shows that the maximum radius deviation between the formed plate and the simulation results is less than 0.4 mm,thus validating the effectiveness of the developed constitutive model and FE model. 展开更多
关键词 two-stage creep aging process bimodal precipitation constitutive modeling springback prediction Al−Zn−Mg−Cu alloy
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Unified Neural Lexical Analysis Via Two-Stage Span Tagging
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作者 Yantuan Xian Yefen Zhu +3 位作者 Zhentao Yu Yuxin Huang Junjun Guo Yan Xiang 《CAAI Transactions on Intelligence Technology》 2025年第4期1254-1267,共14页
Lexical analysis is a fundamental task in natural language processing,which involves several subtasks,such as word segmentation(WS),part-of-speech(POS)tagging,and named entity recognition(NER).Recent works have shown ... Lexical analysis is a fundamental task in natural language processing,which involves several subtasks,such as word segmentation(WS),part-of-speech(POS)tagging,and named entity recognition(NER).Recent works have shown that taking advantage of relatedness between these subtasks can be beneficial.This paper proposes a unified neural framework to address these subtasks simultaneously.Apart from the sequence tagging paradigm,the proposed method tackles the multitask lexical analysis via two-stage sequence span classification.Firstly,the model detects the word and named entity boundaries by multilabel classification over character spans in a sentence.Then,the authors assign POS labels and entity labels for words and named entities by multi-class classification,respectively.Furthermore,a Gated Task Transformation(GTT)is proposed to encourage the model to share valuable features between tasks.The performance of the proposed model was evaluated on Chinese and Thai public datasets,demonstrating state-of-the-art results. 展开更多
关键词 gated task transformation lexical analysis multitask two-stage
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Two-Stage Location Method for TCSC Considering Transmission Congestion Alleviating Coherence
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作者 Fan Chen Xian Bao +2 位作者 Jianlin Liu Man Wang Qiang Zhang 《Journal on Artificial Intelligence》 2025年第1期365-380,共16页
The Thyristor-Controlled Series Compensator(TCSC)presents an effective solution for mitigating transmission congestion in power systems by regulating the distribution of line power flow.However,inherent faults within ... The Thyristor-Controlled Series Compensator(TCSC)presents an effective solution for mitigating transmission congestion in power systems by regulating the distribution of line power flow.However,inherent faults within the TCSC may lead to an unintended intensification of transmission congestion in other sections of the system post-installation,resulting in non-coherent phenomena of line blocking.In response to this challenge,this paper introduces a novel two-stage site selectionmethod for TCSC,emphasizing the enhancement of coherence in addressing line-blocking issues.Through rigorous non-coherent verification,this method mitigates the risk of line congestion deterioration due to TCSC faults.In the initial stage of the proposed method,TCSC faults are not considered during the extraction of system states.System state analysis is performed based on the TCSC site selection model,aiming to minimize system load reduction.The preliminary recommended installation position for TCSC is determined by sorting the frequency of TCSC installation occurrences on lines extracted from the analyzed system states.In the subsequent stage,accounting for the influence of TCSC faults on line faults,system operating states are extracted.Line and system congestion indices are calculated through the statistical analysis of the system state analysis results.The installation of TCSC at the preliminary position is scrutinized to identify non-coherent phenomena of line congestion on other lines.If such phenomena are observed,the installation position is excluded,and the TCSC site selection process is reinitiated based on the methodology from the first stage.To validate the effectiveness of the proposed method,a case study is conducted on a modified RBTS test system.The case study results indicate that,compared with TCSC siting schemes that do not consider transmission congestion non-coherency,the proposed non-coherency-based siting scheme reduces the system congestion expectation(SCE)and system congestion probability(SCP)by 17.7%and 11.4%,respectively,while lowering the LOLP and EENS by 2.56% and 4.55%,respectively.These results demonstrate that the proposed method can effectively alleviate transmission congestion and enhance the overall reliability of the system. 展开更多
关键词 TCSC location transmission congestion non-coherence two-stage siting TCSC fault
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Enhanced oxidation mechanism of arsenopyrite in two-stage oxidation process applying bio-oxidation waste solution
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作者 ZHANG Shi-qi YANG Hong-ying +3 位作者 TONG Lin-lin CHEN Guo-min KANG Guo-ai ZHAO Zhi-xin 《Journal of Central South University》 2025年第1期94-105,共12页
Applying bio-oxidation waste solution(BOS)to chemical-biological two-stage oxidation process can significantly improve the bio-oxidation efficiency of arsenopyrite.This study aims to clarify the enhanced oxidation mec... Applying bio-oxidation waste solution(BOS)to chemical-biological two-stage oxidation process can significantly improve the bio-oxidation efficiency of arsenopyrite.This study aims to clarify the enhanced oxidation mechanism of arsenopyrite by evaluating the effects of physical and chemical changes of arsenopyrite in BOS chemical oxidation stage on mineral dissolution kinetics,as well as microbial growth activity and community structure composition in bio-oxidation stage.The results showed that the chemical oxidation contributed to destroying the physical and chemical structure of arsenopyrite surface and reducing the particle size,and led to the formation of nitrogenous substances on mineral surface.These chemical oxidation behaviors effectively promoted Fe^(3+)cycling in the bio-oxidation system and weakened the inhibitory effect of the sulfur film on ionic diffusion,thereby enhancing the dissolution kinetics of the arsenopyrite.Therefore,the bio-oxidation efficiency of arsenopyrite was significantly increased in the two-stage oxidation process.After 18 d,the two-stage oxidation process achieved total extraction rates of(88.8±2.0)%,(86.7±1.3)%,and(74.7±3.0)%for As,Fe,and S elements,respectively.These values represented a significant increase of(50.8±3.4)%,(47.1±2.7)%,and(46.0±0.7)%,respectively,compared to the one-stage bio-oxidation process. 展开更多
关键词 BIo-oXIDATIoN ARSENoPYRITE two-stage oxidation process microbial community kinetics
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Decoupling economic growth from industrial SO_(2)emissions in China:A two-stage decomposition approach
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作者 Yuanna Tian Yizhong Wang +3 位作者 Ye Hang Dequn Zhou Xiurong Hu Qunwei Wang 《Chinese Journal of Population,Resources and Environment》 2025年第1期49-61,共13页
Exploring the factors driving the decoupling of China’s sulfur dioxide(SO_(2))emissions from economic growth(DEI)is crucial for achieving sustainable development.By analyzing the decoupling indicators and driving fac... Exploring the factors driving the decoupling of China’s sulfur dioxide(SO_(2))emissions from economic growth(DEI)is crucial for achieving sustainable development.By analyzing the decoupling indicators and driving factors at both the generation and treatment stages of SO_(2),more effective targeted mitigation strategies can be developed.We employ the Tapio decoupling model and propose a two-stage method to examine the decoupling issues related to SO_(2).Our findings indicate that:①DEI shows a steady and significant improvement,with SO_(2)emission intensity identified as the primary driver.②for the decoupling of economic growth and SO_(2)generation,energy scale serves as the largest stimulator,while the effect of energy intensity changes from negative to positive,and pollution intensity is first positive and then negative.③For the decoupling of SO_(2)generation and SO_(2)removal,treatment efficiency leads as the largest promoter,followed by treatment intensity.Based on these results,this study recommends that China focuses more on enhancing clean energy utilization and the effectiveness of treatment processes. 展开更多
关键词 Driving factors Tapio decoupling indicator LMDI decomposition two-stage method
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Impact of introducing custom-made articulating spacers:A retrospective cohort study on two protocols for two-stage hip revision
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作者 Marijn H Stelwagen Jakob Van Oldenrijk +3 位作者 Peter D Croughs Erlangga Yusuf P Koen Bos Ewout S Veltman 《World Journal of Orthopedics》 2025年第10期42-52,共11页
BACKGROUND Two-stage revision is the most common treatment for chronic periprosthetic joint infection of the hip,involving a resection arthroplasty with or without placement of an antibiotic-loaded spacer,followed by ... BACKGROUND Two-stage revision is the most common treatment for chronic periprosthetic joint infection of the hip,involving a resection arthroplasty with or without placement of an antibiotic-loaded spacer,followed by antibiotic therapy before reimplantation.AIM To compare the outcomes and complications of two consecutive treatment protocols for two-stage revision arthroplasty of the infected hip:One using Girdlestone with an antibiotic holiday,the other using custom-made articulating spacers(CUMARS)without an antibiotic holiday.METHODS In this retrospective study,two consecutive cohorts were compared.Group A(2017-2020)underwent two-stage revision with a Girdlestone and an antibiotic holiday before reimplantation,while Group B(2020-2023)received CUMARS whenever possible,and no antibiotic holiday,or a Girdlestone if indicated.The primary outcome was successful infection eradication after one year.Secondary outcomes included surgical duration,length of hospital stay,weight-bearing allowance,discharge destination,and complications.RESULTS A total of 98 patients were included:39 patients in Group A and 59 patients in Group B.Successful infection eradication after one year was achieved in 69%of Group A and 83%of Group B(P=0.164).Patients in Group B were more frequently allowed to bear weight(64%vs 18%,P<0.001),had a shorter in-hospital stay(9 vs 16 days,P<0.001),and were more often discharged home after the first surgery(48%vs 24%,P=0.048).No significant differences were found in(mechanical)complications.CONCLUSION A protocol including CUMARS is a safe and effective treatment,offering faster recovery,shorter length of hospital stay,and enabling more patients to return home during the interval.This reduces strain on patients and the healthcare system,potentially saving costs,without compromising infection control or increasing(mechanical)complications. 展开更多
关键词 Periprosthetic joint infection two-stage revision Girdlestone Custom-made articulating spacer SPACER Antibiotic holiday
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A two-stage scheduling algorithm based on pointer network with attention mechanism for micro-nano Earth observation satellite constellation
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作者 Hai LI Yuanhao LIU +5 位作者 Boyu DENG Yongjun LI Xin LI Yu LI Taijiang ZHANG Shanghong ZHAO 《Chinese Journal of Aeronautics》 2025年第8期433-448,共16页
Micro-nano Earth Observation Satellite(MEOS)constellation has the advantages of low construction cost,short revisit cycle,and high functional density,which is considered a promising solution for serving rapidly growin... Micro-nano Earth Observation Satellite(MEOS)constellation has the advantages of low construction cost,short revisit cycle,and high functional density,which is considered a promising solution for serving rapidly growing observation demands.The observation Scheduling Problem in the MEOS constellation(MEOSSP)is a challenging issue due to the large number of satellites and tasks,as well as complex observation constraints.To address the large-scale and complicated MEOSSP,we develop a Two-Stage Scheduling Algorithm based on the Pointer Network with Attention mechanism(TSSA-PNA).In TSSA-PNA,the MEOS observation scheduling is decomposed into a task allocation stage and a single-MEOS scheduling stage.In the task allocation stage,an adaptive task allocation algorithm with four problem-specific allocation operators is proposed to reallocate the unscheduled tasks to new MEOSs.Regarding the single-MEOS scheduling stage,we design a pointer network based on the encoder-decoder architecture to learn the optimal singleMEOS scheduling solution and introduce the attention mechanism into the encoder to improve the learning efficiency.The Pointer Network with Attention mechanism(PNA)can generate the single-MEOS scheduling solution quickly in an end-to-end manner.These two decomposed stages are performed iteratively to search for the solution with high profit.A greedy local search algorithm is developed to improve the profits further.The performance of the PNA and TSSA-PNA on singleMEOS and multi-MEOS scheduling problems are evaluated in the experiments.The experimental results demonstrate that PNA can obtain the approximate solution for the single-MEOS scheduling problem in a short time.Besides,the TSSA-PNA can achieve higher observation profits than the existing scheduling algorithms within the acceptable computational time for the large-scale MEOS scheduling problem. 展开更多
关键词 Micro-nano earth observation satellite observation scheduling Large-scale scheduling two-stage optimization Pointer network Attention mechanism
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Study on Optimization of Two-Stage Phase Change Heat Storage Coupled Solar-Air Source Heat Pump Heating System in Severe Cold Region
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作者 Xueli Wang Yan Jia Degong Zuo 《Energy Engineering》 2025年第4期1603-1627,共25页
The development of efficient and clean heating technologies is crucial for reducing carbon emissions in regions with severe cold regions.This research designs a novel two-stage phase change heat storage coupled solar-... The development of efficient and clean heating technologies is crucial for reducing carbon emissions in regions with severe cold regions.This research designs a novel two-stage phase change heat storage coupled solar-air source heat pump heating system structure that is specifically designed for such regions.The two-stage heat storage device in this heating system expands the storage temperature range of solar heat.The utilization of the two-stage heat storage device not onlymakes up for the instability of the solar heating system,but can also directlymeet the building heating temperature,and can reduce the influence of low-temperature outdoor environments in severe cold regions on the heating performance of the air source heat pump by using solar energy.Therefore,the two-stage phase change heat storage coupled to the solar energy-air source heat pump heating system effectively improves the utilization rate of solar energy.A numerical model of the system components and their integration was developed using TRNSYS software in this study,and various performance aspects of the system were simulated and analyzed.The simulation results demonstrated that the two-stage heat storage device can effectively store solar energy,enabling its hierarchical utilization.The low-temperature solar energy stored by the two-stage phase change heat storage device enhances the coefficient of performance of the air source heat pump by 11.1%in severe cold conditions.Using the Hooke-Jeeves optimization method,the annual cost and carbon emissions are taken as optimization objectives,with the optimized solar heat supply accounting for 52.5%.This study offers valuable insights into operational strategies and site selection for engineering applications,providing a solid theoretical foundation for the widespread implementation of this system in severe cold regions. 展开更多
关键词 two-stage heat storage building heating Hooke-Jeeves optimization phase change heat storage device severe cold region
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Two-Stage capacity allocation optimization method for user-level integrated energy systems considering user satisfaction and thermal inertia
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作者 Shunyu Li Jing Zhang +5 位作者 Yu He Gang Lv Ying Liu Xiangxie Hu Zhiyang Wang Xuan Ao 《Global Energy Interconnection》 2025年第2期300-315,共16页
Integrated-energy systems(IESs)are key to advancing renewable-energy utilization and addressing environmental challenges.Key components of IESs include low-carbon,economic dispatch and demand response,for maximizing r... Integrated-energy systems(IESs)are key to advancing renewable-energy utilization and addressing environmental challenges.Key components of IESs include low-carbon,economic dispatch and demand response,for maximizing renewable-energy consumption and supporting sustainable-energy systems.User participation is central to demand response;however,many users are not inclined to engage actively;therefore,the full potential of demand response remains unrealized.User satisfaction must be prioritized in demand-response assessments.This study proposed a two-stage,capacity-optimization configuration method for user-level energy systems con-sidering thermal inertia and user satisfaction.This method addresses load coordination and complementary issues within the IES and seeks to minimize the annual,total cost for determining equipment capacity configurations while introducing models for system thermal inertia and user satisfaction.Indoor heating is adjusted,for optimizing device output and load profiles,with a focus on typical,daily,economic,and environmental objectives.The studyfindings indicate that the system thermal inertia optimizes energy-system scheduling considering user satisfaction.This optimization mitigates environmental concerns and enhances clean-energy integration. 展开更多
关键词 Integrated energy system Demand response User satisfaction Thermal inertia two-stage capacity-optimization configuration method Clean energy integration
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Two-stage optimization of route,speed,and energy management for hybrid energy ship under sea conditions
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作者 Xiaoyuan Luo Jiaxuan Wang +1 位作者 Xinyu Wang Xinping Guan 《iEnergy》 2025年第3期174-192,共19页
As future ship system,hybrid energy ship system has a wide range of application prospects for solving the serious energy crisis.However,current optimization scheduling works lack the consideration of sea conditions an... As future ship system,hybrid energy ship system has a wide range of application prospects for solving the serious energy crisis.However,current optimization scheduling works lack the consideration of sea conditions and navigational circumstances.There-fore,this paper aims at establishing a two-stage optimization framework for hybrid energy ship power system.The proposed framework considers multiple optimizations of route,speed planning,and energy management under the constraints of sea conditions during navigation.First,a complex hybrid ship power model consisting of diesel generation system,propulsion system,energy storage system,photovoltaic power generation system,and electric boiler system is established,where sea state information and ship resistance model are considered.With objective optimization functions of cost and greenhouse gas(GHG)emissions,a two-stage optimization framework consisting of route planning,speed scheduling,and energy management is constructed.Wherein the improved A-star algorithm and grey wolf optimization algorithm are introduced to obtain the optimal solutions for route,speed,and energy optimization scheduling.Finally,simulation cases are employed to verify that the proposed two-stage optimization scheduling model can reduce load energy consumption,operating costs,and carbon emissions by 17.8%,17.39%,and 13.04%,respectively,compared with the non-optimal control group. 展开更多
关键词 Hybrid ship power system two-stage optimization dispatch speed scheduling sea conditions modified A-star algorithm improved grey wolf optimization algorithm
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Two-Stage Optimal Dispatching of Electricity-Hydrogen-Waste Multi-Energy System with Phase Change Material Thermal Storage
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作者 Linwei Yao Xiangning Lin +1 位作者 Huashen He Jiahui Yang 《Energy Engineering》 2025年第8期3285-3308,共24页
In order to address the synergistic optimization of energy efficiency improvement in the waste incineration power plant(WIPP)and renewable energy accommodation,an electricity-hydrogen-waste multi-energy system integra... In order to address the synergistic optimization of energy efficiency improvement in the waste incineration power plant(WIPP)and renewable energy accommodation,an electricity-hydrogen-waste multi-energy system integrated with phase change material(PCM)thermal storage is proposed.First,a thermal energy management framework is constructed,combining PCM thermal storage with the alkaline electrolyzer(AE)waste heat recovery and the heat pump(HP),while establishing a PCM-driven waste drying system to enhance the efficiency of waste incineration power generation.Next,a flue gas treatment method based on purification-separation-storage coordination is adopted,achieving spatiotemporal decoupling between waste incineration and flue gas treatment.Subsequently,a two-stage optimal dispatching strategy for the multi-energy system is developed:the first stage establishes a dayahead economic dispatch model with the objective of minimizing net system costs,while the second stage introduces model predictive control(MPC)to realize intraday rolling optimization.Finally,The optimal dispatching strategies under different scenarios are obtained using the Gurobi solver,followed by a comparative analysis of the optimized operational outcomes.Simulation results demonstrate that the proposed system optimizes the output and operational states of each unit,simultaneously reducing carbon trading costs while increasing electricity sales revenue.The proposed scheduling strategy demonstrates effective grid peak-shaving functionality,thereby simultaneously improving the system’s economic performance and operational flexibility while providing an innovative technical pathway for municipal solid waste(MSW)resource utilization and low-carbon transformation of energy systems. 展开更多
关键词 Waste incineration power plant waste drying phase change material thermal storage alkaline electrolyzer waste heat recovery two-stage optimal dispatching
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Development of the two-stage SCR control strategy to satisfy ultra-low NO_(x) emission regulation for heavy-duty diesel engine
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作者 Jincheng Li Gang Li +3 位作者 Haibo Sun Linpeng Li Zunqing Zheng Mingfa Yao 《Journal of Environmental Sciences》 2025年第10期360-370,共11页
The emission regulations for heavy-duty diesel engines regarding nitrogen oxide(NO_(x))are becoming increasingly stringent,particularly in relation to cold start cycles.While the twostage selective catalytic reduction... The emission regulations for heavy-duty diesel engines regarding nitrogen oxide(NO_(x))are becoming increasingly stringent,particularly in relation to cold start cycles.While the twostage selective catalytic reduction(SCR)has the potential to achieve ultra-low NO_(x) emissions,several challenges remain,including the accurate prediction of ammonia(NH_(3))storage mass and the co-control of the two-stage SCR.The first step in this study involved the establishment of a rapid control prototype platform to facilitate the development and validation of a two-stage SCR control strategy.Secondly,an initial method for predicting the NH_(3) storage based on the mass conservation law was proposed,which was subsequently improved by filling and emptying experiments.The third step involved the development of a two-stage SCR co-control strategy,including obtaining the steady-state NH_(3) storage target value,dynamic correction for NH_(3) storage target value,regulation of NH_(3) storage,and control of the close-coupled SCR urea injector state.Finally,the two-stage SCR urea injection control strategy was certified under the world harmonized transient cycle(WHTC).The results demonstrate that the composite value of engine outlet NO_(x) emissions under cold and hot start WHTC cycles is 13 g/(kW·h).Meanwhile,the composite value of tailpipe NO_(x) emissions under cold and hot start WHTC cycles is 0.065 g/(kW·h),representing only 14%of the EU VI limit value of 0.46 g/(kW·h).Thus,the findings demonstrate that integrating an accurate NH_(3) storage prediction method with the two-stage SCR co-control function is crucial for heavy-duty diesel engines to achieve ultra-low NO_(x) emissions. 展开更多
关键词 Heavy-duty diesel engine Ultra-low nitrogen oxide emission Close-coupled selective catalytic REDUCTIoN Ammonia storage mass two-stage selective catalytic reduction control strategy
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An interacting multiple model-based two-stage Kalman filter for vehicle positioning 被引量:2
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作者 徐启敏 李旭 +1 位作者 李斌 宋向辉 《Journal of Southeast University(English Edition)》 EI CAS 2017年第2期177-181,共5页
To address the problem that a general augmented state Kalman filter or a two-stage Kalman filter cannot achieve satisfactory positioning performance when facing uncertain noise of the micro-electro-mechanical system(... To address the problem that a general augmented state Kalman filter or a two-stage Kalman filter cannot achieve satisfactory positioning performance when facing uncertain noise of the micro-electro-mechanical system(MEMS) inertial sensors, a novel interacting multiple model-based two-stage Kalman filter(IMM-TSKF) is proposed to adapt to the uncertain inertial sensor noise. Three bias filters are developed based on different noise characteristics to cover a wide range of noise levels. Then, an accurate estimation of biases is calculated by the interacting multiple model algorithm to correct the bias-free filter. Thus, the vehicle positioning system can achieve good performance when suffering from uncertain inertial sensor noise. The experimental results indicate that the average position error of the proposed IMMTSKF is 25% lower than that of the general TSKF. 展开更多
关键词 interacting multiple model(IMM) two-stage filter uncertain noise vehicle positioning
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Production of Light Olefins from Biosyngas by Two-stage Catalytic Conversion Process via Dimethyl Ether 被引量:1
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作者 李宇萍 涂军令 +4 位作者 王铁军 马隆龙 张兴华 章青 蔡炽柳 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2014年第2期227-232,I0004,共7页
NiSAPO-34 and NiSAPO-34/HZSM-5 were prepared and evaluated for the performance of dimethyl ether (DME) conversion to light olefins (DTO). The processes of two-stage light olefin production, DME synthesis and the f... NiSAPO-34 and NiSAPO-34/HZSM-5 were prepared and evaluated for the performance of dimethyl ether (DME) conversion to light olefins (DTO). The processes of two-stage light olefin production, DME synthesis and the following DTO, were also investigated using biosyngas as feed gas over Cu/Zn/A1/HZSM-5 and the optimized 2%NiSAPO-34/HZSM- 5. The results indicated that adding 2%Ni to SAPO-34 did not change its topology structure, but resulted in the forming of the moderately strong acidity with decreasing acid amounts, which slightly enhanced DME conversion activity and C2=-C3= selectiw ity. Mechanically mixing 2%NiSAPO-34 with HZSM-5 at the weight ratio of 3.0 further prolonged DME conversion activity to be more than 3 h, which was due to the stable acid sites from HZSM-5. The highest selectivity to light olefins of 90.8% was achieved at 2 h time on stream. The application of the optimized 2%NiSAPO-34/HZSM-5 in the second-stage reactor for DTO reaction showed that the catalytic activity was steady for more than 5 h and light olefin yield was as high as 84.6 g/m3syngas when the biosyngas (H2/CO/CO2/N2/CH4=41.5/26.9/14.2/14.6/2.89, vol%) with low H/C ratio of 1.0 was used as feed gas. 展开更多
关键词 Light olefins two-stage conversion Dimethyl ether Biosyngas NiSAPo-34/HZSM-5
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小麦秸秆与生物炭配比对石灰性潮土N_(2)O气体排放的影响
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作者 吕金岭 张燕 +4 位作者 纪朝凤 骆晓声 李太魁 肖强 董文旭 《农业资源与环境学报》 北大核心 2026年第2期424-433,共10页
为探明秸秆与秸秆生物炭配比对典型碱性土壤N_(2)O排放的影响,本研究以石灰性潮土为研究对象,设置CK(空白对照)、CK200(200 mg·kg^(-1)硫酸铵溶液,以N计,下同)、C(小麦秸秆生物炭+CK200)、S(小麦秸秆+CK200)以及三种组合方式(3/4SC... 为探明秸秆与秸秆生物炭配比对典型碱性土壤N_(2)O排放的影响,本研究以石灰性潮土为研究对象,设置CK(空白对照)、CK200(200 mg·kg^(-1)硫酸铵溶液,以N计,下同)、C(小麦秸秆生物炭+CK200)、S(小麦秸秆+CK200)以及三种组合方式(3/4SC、1/2SC和1/4SC)共计7个处理,开展室内培养试验。结果显示,小麦秸秆与秸秆生物炭配比显著促进了石灰性潮土N_(2)O气体排放,尤其3/4SC处理的N_(2)O累积排放量达到1459μg·kg^(-1),是S处理的2.0倍;其次为1/2SC处理,N_(2)O累积排放量为909μg·kg^(-1),是S处理的1.2倍;再次为1/4SC处理,N_(2)O排放略高于S处理,但无显著差异(P>0.05);而C处理的N_(2)O累积排放量显著低于S处理,仅是S处理的0.72倍。线性相关性结果显示,除CK处理外,氮添加处理的N_(2)O排放量与NO_(2)^(-)-N和NO_(3)^(-)-N含量存在显著的线性相关性(P<0.05),而与NH_(4)^(+)-N含量无显著的线性相关性(P>0.05);同时发现,相比S处理,1/2SC和C处理的AOA和nirS、nirK、nosZ功能基因的丰度显著降低(P<0.05),但AOB功能基因丰度无明显差异,说明生物炭对石灰性潮土硝化作用中氨氧化过程影响不大;1/2SC和C处理相比S处理拥有更低的反硝化功能基因nirS、nirK和nosZ拷贝数(P<0.05),说明秸秆生物炭添加抑制石灰性潮土反硝化功能微生物的丰度;同时1/2SC处理的(nirS+nirK)与nosZ的比值(6.6)高于S处理(5.3)和C处理(4.8),说明全量炭添加可以抑制石灰性潮土反硝化过程N_(2)O的产生,但两者配比可能加剧反硝化过程N_(2)O的产生。研究表明,小麦秸秆与秸秆生物炭配比在常规氮添加下并未抑制石灰性潮土N_(2)O气体排放,甚至加剧N_(2)O的排放,纯秸秆生物炭还田更有益于石灰性潮土N_(2)O的减排。 展开更多
关键词 小麦秸秆 生物炭 配比 N_(2)o排放量 石灰性潮土 功能基因
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有机肥和生物菌剂对菜地土壤N_(2)O排放及土壤团聚体的影响
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作者 马静 陆昕昱 +1 位作者 宋俊杰 孙丽英 《农业环境科学学报》 北大核心 2026年第1期251-261,共11页
为探究不同施肥处理对菜地土壤N_(2)O排放、产量及土壤团聚体的影响,本研究以南京地区菜地为研究对象,设置不施氮肥(CK)、施化学氮肥(U)、化学氮肥和生物菌剂配施(UM)、有机肥替代25%化学氮肥(O)、有机肥替代25%化学氮肥和生物菌剂配施(... 为探究不同施肥处理对菜地土壤N_(2)O排放、产量及土壤团聚体的影响,本研究以南京地区菜地为研究对象,设置不施氮肥(CK)、施化学氮肥(U)、化学氮肥和生物菌剂配施(UM)、有机肥替代25%化学氮肥(O)、有机肥替代25%化学氮肥和生物菌剂配施(OM)5个处理。采用静态暗箱-气相色谱法,观测菜地土壤N_(2)O的排放,并分析不同施肥处理对菜地土壤N_(2)O排放量、综合温室效应(GWP)、温室气体排放强度(GHGI)、产量、土壤团聚体组成、经济效益等的影响。结果表明:与U处理相比,O处理土壤N_(2)O累积排放量增长了12.70%,UM和OM处理土壤N_(2)O累积排放量均有所降低,其中,UM处理降低了16.67%,OM处理显著降低了23.81%(P<0.05)。在各施肥处理中,OM处理产量最高,为11.9 t·hm^(-2),O处理次之,为11.2 t·hm^(-2)。此外,O和OM处理降低了<0.25 mm团聚体占比,提高了土壤中大团聚体占比,增加了土壤团聚体稳定性。研究表明,有机肥配施生物菌剂处理可以减缓菜地土壤N_(2)O排放并提高作物产量和经济效益,是实现农业低碳高产的一种可行性措施。 展开更多
关键词 有机肥 生物菌剂 N_(2)o 团聚体 产量
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活性炭负载纳米铁材料对人工湿地脱氮和N_(2)O排放的影响
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作者 郝桂珍 范慧双 +2 位作者 张南南 李振河 徐利 《环境工程技术学报》 北大核心 2026年第1期148-157,共10页
人工湿地是污水处理厂尾水深度处理的有效手段,但尾水中碳氮比(C/N)较低且化学需氧量(COD)难以被利用,导致传统人工湿地处理该类尾水时存在硝化、反硝化反应不完全的问题,且有大量N_(2)O气体(温室气体)产生并逸出至大气,生态效益欠佳。... 人工湿地是污水处理厂尾水深度处理的有效手段,但尾水中碳氮比(C/N)较低且化学需氧量(COD)难以被利用,导致传统人工湿地处理该类尾水时存在硝化、反硝化反应不完全的问题,且有大量N_(2)O气体(温室气体)产生并逸出至大气,生态效益欠佳。针对该问题,制备了活性炭负载纳米铁材料Fe-AC,设计构建了三组人工湿地(CW1、CW2、CW3),分别填加纯砾石(空白对照)、砾石+3%Fe-AC、砾石+8%Fe-AC,模拟污水处理厂尾水的低C/N水质,利用铁与碳两极间的电位差形成的微电解原理强化人工湿地的脱氮过程,探究不同Fe-AC投加比例对人工湿地脱氮和N_(2)O减排的影响,并分析其影响机制。结果表明:Fe-AC在人工湿地中可自发形成原电池释放电子和[H],作为电子供体促进氮的转化和提高微生物的活性。在人工湿地模拟进水COD 28 mg/L、TN 18 mg/L,即C/N=1.5的条件下,CW1、CW2、CW3的出水COD分别稳定在6.0、4.5、4.0 mg/L,去除率达到72%、83%、85%;总氮(TN)浓度分别稳定在14.0、0.5、0.4 mg/L,去除率达到22%、97%、97%,加入Fe-AC的人工湿地对COD和TN的去除效果显著;CW1、CW2和CW3的N_(2)O排放量分别为1 330.87、629.86、576.49μg/(m^(2)·h),与空白对照组(CW1)相比,CW2和CW3对N_(2)O的减排率分别达到52.72%和56.52%,加入Fe-AC对人工湿地N_(2)O的减排效果明显;加入Fe-AC的CW2和CW3内部拟杆菌门和甲基营养型菌属的丰度明显提高,其他与反硝化和有机物降解有关的功能菌也得到筛选和优化。综合三组人工湿地的运行效果,CW2中加入3%的Fe-AC即可满足对人工湿地脱氮效果的提升和N_(2)O气体的减排,比CW3中8%的Fe-AC更加经济合理。 展开更多
关键词 人工湿地 铁碳微电解 低碳氮比 N_(2)o 反硝化
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废弃煤矿巷道CO_(2)“封存-利用”技术探索及转化效率研究
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作者 来兴平 雷彤 +3 位作者 张楠 胡添龙 介凯 刘旭超 《西安科技大学学报》 北大核心 2026年第1期15-26,共12页
为应对全球二氧化碳减排的需求,探索利用废弃煤矿地下空间实现CO_(2)封存与资源化利用的新路径,以提升其环境与资源效益。提出了包含捕集、封存、转化、分离系统的废弃煤矿巷道CO_(2)“封存-利用”一体化技术,基于几何相似理论与固体氧... 为应对全球二氧化碳减排的需求,探索利用废弃煤矿地下空间实现CO_(2)封存与资源化利用的新路径,以提升其环境与资源效益。提出了包含捕集、封存、转化、分离系统的废弃煤矿巷道CO_(2)“封存-利用”一体化技术,基于几何相似理论与固体氧化物电解池(SOEC)技术构建巷道反应硐室与实验室微型反应腔之间尺度映射关系,形成室内试验-井下应用的参数对应体系;通过开展恒电流共电解试验以及气相色谱对气体成分分析,系统揭示反应温度与CO_(2)/H_(2)O气体比例对CO_(2)转化效率的影响。结果表明:在保持A/V不变的条件下,巷道反应硐室尺寸为2.4 m×6 m×3.6 m,对应有效反应面积为384 m^(2);法拉第效率随着温度的升高呈现出“先下降后升高”的特征,随着CO_(2)/H_(2)O气体比例的增加而降低,CO_(2)转化率随着温度升高而显著提升,随着CO_(2)/H_(2)O气体比例增加而降低,在温度为850℃、气体比例CO_(2)∶H_(2)O=1∶1的共电解条件下,CO_(2)实现最优转化效率,转化率达72.22%,法拉第效率为61.77%。研究为实现废弃煤矿巷道CO_(2)封存与高值化利用提供了理论依据与技术支撑。 展开更多
关键词 废弃煤矿 固体氧化物电解池 Co_(2)/H_(2)o共电解 法拉第效率 Co_(2)转化率 相似理论
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一步法制备Ag_(2)O/Cl-GCN聚氨酯泡沫及其光敏抗菌活性
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作者 陈黄琴 张洋林 +3 位作者 周士忠 刘坤 唐冬旭 李月生 《湖北科技学院学报》 2026年第2期106-114,共9页
为开发具备优异光敏抗菌功能的新型聚氨酯泡沫材料,本研究通过在聚氨酯(PU)合成过程中引入不同浓度(1 wt%、2 wt%、5 wt%)氧化银/氯掺杂石墨相氮化碳(Ag_(2)O/Cl-GCN)填料,一步法制备Ag_(2)O/Cl-GCN改性聚氨酯泡沫(APU),并同时赋予其高... 为开发具备优异光敏抗菌功能的新型聚氨酯泡沫材料,本研究通过在聚氨酯(PU)合成过程中引入不同浓度(1 wt%、2 wt%、5 wt%)氧化银/氯掺杂石墨相氮化碳(Ag_(2)O/Cl-GCN)填料,一步法制备Ag_(2)O/Cl-GCN改性聚氨酯泡沫(APU),并同时赋予其高效可见光抗菌能力。系统考察了填料浓度对APU泡沫材料热性能、抗菌性能(光照/黑暗条件)及细胞毒性的影响。采用热重分析、傅立叶变换红外光谱、X射线衍射、扫描电子显微镜、平板计数法、MTT及细胞活死染色等种表征技术进行分析。结果表明:相较于空白PU,所有APU泡沫均展现出显著的抗菌性能,抗菌率与Ag_(2)O/Cl-GCN填料浓度正相关,且光照下抗菌效果远优于黑暗条件。然而,填料添加量增加导致材料细胞毒性相应上升。综合权衡抗菌效能与生物安全性,2 wt%添加量的APU展现出最优综合性能。Ag_(2)O/Cl-GCN复合硬质聚氨酯泡沫材料具有优异的光敏抗菌性能和良好的生物相容性,有望成为各种医疗用品、汽车内饰等领域的理想材料。 展开更多
关键词 聚氨酯泡沫 光敏抗菌 抗菌性能 Ag_(2)o/Cl-GCN
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