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角度控制椎弓根螺钉置入工具结合3D模型及导板辅助置钉的精准度
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作者 杨镇源 张继伟 +3 位作者 张凯东 马冰清 张彦军 李军杰 《中国组织工程研究》 北大核心 2026年第15期3906-3912,共7页
背景:椎弓根螺钉目前广泛应用于脊柱外科临床,其精准置入为关注焦点。此次研究探寻了一种新的椎弓根螺钉置入方法,以期提高临床置钉的准确率。目的:观察应用自主研制的角度控制椎弓根螺钉置入工具结合3D模型及导板在辅助椎弓根螺钉置入... 背景:椎弓根螺钉目前广泛应用于脊柱外科临床,其精准置入为关注焦点。此次研究探寻了一种新的椎弓根螺钉置入方法,以期提高临床置钉的准确率。目的:观察应用自主研制的角度控制椎弓根螺钉置入工具结合3D模型及导板在辅助椎弓根螺钉置入中的应用价值。方法:选择2023年3月至2024年6月接受椎弓根螺钉内固定治疗的患者共计96例,随机分成2组,辅助组和徒手组各48例。辅助组使用角度控制椎弓根螺钉置入工具配合3D模型和导板辅助螺钉置入,徒手组则依赖C型臂X射线机进行定位,徒手置入螺钉。所有患者均进行CT检查以评估两种方式下单枚螺钉置入时间及精确度,另外对比C型臂X射线机使用频率。结果与结论:①辅助组共置入286枚螺钉,置钉用时(2.51±1.26)min/枚,精确置入成功率达到95.8%,C型臂透视次数为(1.45±2.12)次/枚;徒手组共置入螺钉264枚,置入用时为(3.27±1.54)min/枚,精确置入成功率为87.2%,C型臂透视次数是(2.19±1.73)次/枚;②相较而言,辅助组在这3个指标上均表现出显著优势:单枚螺钉置入时间更短,置钉准确率更高,且C型臂透视次数也相对较低,与徒手组相比差异有显著性意义(P<0.05);③提示在实施脊柱椎弓根钉置入时,利用角度控制的椎弓根螺钉置入工具配合3D模型和导板能有效提升置钉的精确度,降低所需时间,并且减少辐射暴露的风险,这无疑具备极高的临床实用意义。 展开更多
关键词 椎弓根螺钉 内固定 角度控制 3d模型 导板 置钉
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个性化3D打印导板引导下胸腰椎手术皮质骨轨迹螺钉置入准确性
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作者 朱寅 王黎明 +4 位作者 沙卫平 宋锦程 林小龙 曹泽 盛晓磊 《中国组织工程研究》 北大核心 2026年第15期3862-3870,共9页
背景:与传统椎弓根螺钉相比,皮质骨轨迹螺钉通道全程均为皮质骨,具有更牢靠的生物力学优势,然而安全、准确地置入皮质骨轨迹螺钉对脊柱外科医师技术要求较高。理论上在3D打印个性化导板引导下能有效提高一次性置钉的准确度、简化置钉操... 背景:与传统椎弓根螺钉相比,皮质骨轨迹螺钉通道全程均为皮质骨,具有更牢靠的生物力学优势,然而安全、准确地置入皮质骨轨迹螺钉对脊柱外科医师技术要求较高。理论上在3D打印个性化导板引导下能有效提高一次性置钉的准确度、简化置钉操作、提高手术效率,但目前国内外相关报道较少。目的:探讨应用个性化3D打印导板辅助皮质骨轨迹螺钉置入治疗合并骨质疏松胸腰椎骨折的准确性与安全性。方法:选择2020年1月至2024年1月行皮质骨轨迹螺钉内固定的58例合并骨质疏松的胸腰椎(T_(11)-L_(4))骨折患者,共置入348枚螺钉。根据置钉方案分为2组,3D导板组30例行个性化3D打印导板辅助置钉,共置入螺钉180枚;对照组28例行徒手方式置钉,共计置入螺钉168枚。通过比较两组间手术相关指标、置钉情况、伤椎的复位与脊柱后凸畸形矫正情况以及术后疗效等,评估不同置钉方案的效果和适用性。结果与结论:①3D导板组在切口长度、手术时间、置钉时间、术中透视次数、术中出血量、术后引流量以及住院天数方面均显著优于对照组(P<0.05),但是两组的总费用相比差异无显著性意义(P>0.05);②3D导板组的置钉准确率高于对照组,螺钉对上关节突的侵犯率低于对照组,差异有显著性意义(P<0.05);③术后评估结果显示,两组在伤椎前缘高度百分比、Cobb角、目测类比评分以及Oswestry功能障碍指数方面均较术前有所改善,且差异有显著性意义(P<0.05);组间相比,3D导板组的Oswestry功能障碍指数更低,显示出更佳的胸腰椎功能(P<0.05),而在术后伤椎前缘高度百分比、Cobb角及目测类比评分方面,两组之间无显著性差异(P>0.05);④在围术期及随访期间,两组患者均未出现并发症;⑤提示个性化3D打印导板辅助皮质骨轨迹螺钉置入治疗合并骨质疏松的胸腰椎骨折是一种可行的方式,具有微创、高效、精准及安全等优势,可获得满意的临床效果。 展开更多
关键词 胸腰椎骨折 骨质疏松 皮质骨轨迹螺钉 内固定 3d打印导板 置钉准确性
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3D打印钛合金骨小梁臼杯假体联合加味补肾活血汤应用于老年髋关节置换的安全性
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作者 王江静 赵娜 +1 位作者 胡晓娜 赵娜 《中国组织工程研究》 北大核心 2026年第3期612-619,共8页
背景:由3D打印的钛合金骨小梁臼杯假体具有优越的生物学特性,有助于干细胞成骨分化;补肾活血汤有补肾壮筋、活血止痛之功,而目前两者联合在老年髋关节置换术中的应用罕见报道。目的:评价3D打印钛合金骨小梁臼杯假体联合加味补肾活血汤... 背景:由3D打印的钛合金骨小梁臼杯假体具有优越的生物学特性,有助于干细胞成骨分化;补肾活血汤有补肾壮筋、活血止痛之功,而目前两者联合在老年髋关节置换术中的应用罕见报道。目的:评价3D打印钛合金骨小梁臼杯假体联合加味补肾活血汤在老年髋关节置换过程中的应用价值及安全性。方法:选择河北省沧州中西医结合医院2022年1月至2024年1月收治且行髋关节置换治疗的200例老年患者,随机分为对照组和试验组,每组100例。对照组行Pinnaele臼杯假体髋关节置换联合加味补肾活血汤治疗,试验组行3D打印钛合金骨小梁臼杯假体髋关节置换联合加味补肾活血汤治疗,髋关节置换术前连续用药1周,术后连续用药4周。比较两组患者疼痛、肿胀情况、血液流变学、炎症因子、骨代谢、关节内应力、髋关节外展肌力差异,评价两种治疗方案的临床疗效及安全性。结果与结论:①术后4周,试验组患者疼痛目测类比评分、患肢肿胀度、全血黏度、血浆黏度均低于对照组(P<0.05);试验组患者白细胞介素6水平低于对照组,白细胞介素10水平高于对照组(P<0.05);试验组Ⅰ型胶原羧基端肽β特殊序列、抗酒石酸酸性磷酸酶5b水平低于对照组,骨钙素、骨特异性磷酸酶、Ⅰ型前胶原氨基端前肽水平高于对照组(P<0.05);试验组关节内应力、髋关节外展肌力高于对照组(P<0.05);②术后3个月,试验组治疗优良率高于对照组,术后切口血肿、感染等安全性评价事件发生率低于对照组(P<0.05);③提示3D打印钛合金骨小梁臼杯假体联合加味补肾活血汤可改善老年髋关节置换患者血液流变学,抑制炎症反应,减轻术后疼痛、肿胀,改善骨代谢状态,从而促进术后髋关节功能恢复,且不良事件发生率降低,安全性较高。 展开更多
关键词 老年 髋关节置换 3d打印 钛合金骨小梁臼杯假体 加味补肾活血汤 骨科植入物
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The Electric Vehicle Surge:Effective Solutions for Charging Challenges with Advanced Converter Technologies 被引量:1
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作者 Rajanand Patnaik Narasipuram Md M.Pasha +1 位作者 Saleha Tabassum Amit Singh Tandon 《Energy Engineering》 2025年第2期431-469,共39页
The global adoption of Electric Vehicles(EVs)is on the rise due to their advanced features,with projections indicating they will soon dominate the private vehicle market.However,improper management of EV charging can ... The global adoption of Electric Vehicles(EVs)is on the rise due to their advanced features,with projections indicating they will soon dominate the private vehicle market.However,improper management of EV charging can lead to significant issues.This paper reviews the development of high-power,reliable charging solutions by examining the converter topologies used in rectifiers and converters that transfer electricity from the grid to EV batteries.It covers technical details,ongoing developments,and challenges related to these topologies and control strategies.The integration of rapid charging stations has introduced various Power Quality(PQ)issues,such as voltage fluctuations,harmonic distortion,and supra-harmonics,which are discussed in detail.The paper also highlights the benefits of controlled EV charging and discharging,including voltage and frequency regulation,reactive power compensation,and improved power quality.Efficient energy management and control strategies are crucial for optimizing EV battery charging within microgrids to meet increasing demand.Charging stations must adhere to specific converter topologies,control strategies,and industry standards to function correctly.The paper explores microgrid architectures and control strategies that integrate EVs,energy storage units(ESUs),and Renewable Energy Sources(RES)to enhance performance at charging points.It emphasizes the importance of various RES-connected architectures and the latest power converter topologies.Additionally,the paper provides a comparative analysis of microgrid-based charging station architectures,focusing on energy management,control strategies,and charging converter controls.The goal is to offer insights into future research directions in EV charging systems,including architectural considerations,control factors,and their respective advantages and disadvantages. 展开更多
关键词 Electric vehicles convertERS RECTIFIERS power and voltage levels efficiency supra-harmonics
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Field Testing Methodology for Wave Energy Converters Using the MIKE 21 Model 被引量:1
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作者 Ning Jia Xiangnan Wang +1 位作者 Linsheng Han Hainan Xia 《Energy Engineering》 2025年第6期2389-2400,共12页
With the depletion of fossil fuels and increasing environmental concerns,the development of renewable energy,such as wave energy,has become a critical component of global energy strategies.However,challenges persist i... With the depletion of fossil fuels and increasing environmental concerns,the development of renewable energy,such as wave energy,has become a critical component of global energy strategies.However,challenges persist in the field testing methodologies for wave energy converters(WECs).In this paper,a numerical wave field of the Dawanshan Island Sea Area in Zhuhai City is constructed based on the MIKE21 SW wave model and by using an NCEP wind field driving model.In conjunction with the IEC-62600-100 standard,by taking site testing of the“Wanshan”wave energy converter on which a sea trial has been conducted in Dawanshan Island of Zhuhai city as an example,research on-site testing method for a wave energy converter has been carried out.The wave measurement position for the“Wanshan”converter was determined by combining statistically analyzed field data with a validated numerical wave model.By comparing a valid wave height at the position where a wave rider is located with a valid wave height at the position where the“Wanshan”wave energy converter is situated,the correlation coefficient between simulation and observed data reached 0.90,with a root-mean-square error of 0.19.The representativeness of wave measurement data during site testing is verified and can be used as a basis for calculating the input energy of the“Wanshan”wave energy converter. 展开更多
关键词 Wave energy converter site testing MIKE21 SW model
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Hydrodynamic Performance and Structural Response of a Sharp Eagle Wave Energy Converter Platform Under Extreme Sea States 被引量:1
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作者 YUE Wan-zhen WANG Kun-lin +4 位作者 JIANG Jia-qiang SHENG Song-wei LU Wen-zhao HE Teng YANG Xian-yuan 《China Ocean Engineering》 2025年第2期373-382,共10页
This paper presents a new type of triangular Sharp Eagle wave energy converter(WEC)platform.On the basis of the linear potential flow theory and the finite element analysis method,the hydrodynamic performance and stru... This paper presents a new type of triangular Sharp Eagle wave energy converter(WEC)platform.On the basis of the linear potential flow theory and the finite element analysis method,the hydrodynamic performance and structural response of the platform are studied,considering the actual platform motion and free surface rise under extreme sea states.First,the effects of the wave frequency and direction on the wave-induced loads and dynamic responses were examined.The motion at a wave direction angle of 0°is relatively low.On this basis,the angle constrained by the two sides of the Sharp Eagle floaters should be aligned with the main wave direction to avoid significant platform motion under extreme sea states.Additionally,the structural response of the platform,including the wave-absorbing floaters,is investigated.The results highlighted that the conditions or locations where yielding,buckling,and fatigue failures occur were different.In this context,the connection area of the Sharp Eagle floaters and platform is prone to yielding failure under oblique wave action,whereas the pontoon and side of the Sharp Eagle floaters are prone to buckling failure during significant vertical motion.Additionally,fatigue damage is most likely to occur at the connection between the middle column on both sides of the Sharp Eagle floaters and the pontoons.The findings of this paper revealed an intrinsic connection between wave-induced loads and the dynamic and structural responses of the platform,which provides a useful reference for the improved design of WECs. 展开更多
关键词 wave energy converter extreme sea states finite element analysis dynamic response structural response
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Factor analysis and machine learning for predicting endpoint carbon content in converter steelmaking 被引量:1
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作者 Lihua Zhao Shuai Yang +3 位作者 Yongzhao Xu Zhongliang Wang Xin Liu Yanping Bao 《International Journal of Minerals,Metallurgy and Materials》 2025年第10期2469-2482,共14页
The endpoint carbon content in the converter is critical for the quality of steel products,and accurately predicting this parameter is an effective way to reduce alloy consumption and improve smelting efficiency.Howev... The endpoint carbon content in the converter is critical for the quality of steel products,and accurately predicting this parameter is an effective way to reduce alloy consumption and improve smelting efficiency.However,most scholars currently focus on modifying methods to enhance model accuracy,while overlooking the extent to which input parameters influence accuracy.To address this issue,in this study,a prediction model for the endpoint carbon content in the converter was developed using factor analysis(FA)and support vector machine(SVM)optimized by improved particle swarm optimization(IPSO).Analysis of the factors influencing the endpoint carbon content during the converter smelting process led to the identification of 21 input parameters.Subsequently,FA was used to reduce the dimensionality of the data and applied to the prediction model.The results demonstrate that the performance of the FA-IPSO-SVM model surpasses several existing methods,such as twin support vector regression and support vector machine.The model achieves hit rates of 89.59%,96.21%,and 98.74%within error ranges of±0.01%,±0.015%,and±0.02%,respectively.Finally,based on the prediction results obtained by sequentially removing input parameters,the parameters were classified into high influence(5%-7%),medium influence(2%-5%),and low influence(0-2%)categories according to their varying degrees of impact on prediction accuracy.This classi-fication provides a reference for selecting input parameters in future prediction models for endpoint carbon content. 展开更多
关键词 convertER endpoint carbon content parameter classification factor analysis improved particle swarm optimization support vector machine
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3D打印聚乳酸骨支架修复骨缺损 被引量:1
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作者 杨凤丽 周朝 +4 位作者 熊伟 周宇翔 李登顺 王鑫 李展振 《中国组织工程研究》 北大核心 2026年第2期507-515,共9页
背景:3D打印的骨组织工程支架在骨缺损修复的研究和临床治疗中具有明显优势。聚乳酸作为3D打印骨支架的重要原料之一,在进行骨缺损修复时应用潜力巨大,但临床患者的骨缺损诱因不同,对聚乳酸骨支架的综合性能提出了不同要求。目的:对3D... 背景:3D打印的骨组织工程支架在骨缺损修复的研究和临床治疗中具有明显优势。聚乳酸作为3D打印骨支架的重要原料之一,在进行骨缺损修复时应用潜力巨大,但临床患者的骨缺损诱因不同,对聚乳酸骨支架的综合性能提出了不同要求。目的:对3D打印技术和聚乳酸支架的发展及支架在骨髓炎、骨肿瘤、骨坏死和骨质疏松等骨病环境下进行骨修复时所选用的设计策略进行归纳与综述。方法:从中国知网、万方、PubMed、Science Direct与Web of Science数据库中检索和筛选发表时间为1994-2024年的相关文献。英文检索词:“3D printing,Polylactic acid,Bone tissue engineering scaffold,Osteomyelitis,Bone tumor,Osteonecrosis,Osteoporosis,Bone defect”,中文检索词:“3D打印,聚乳酸,骨组织工程支架,骨髓炎,骨肿瘤,骨坏死,骨质疏松,骨缺损”,对筛选出的62篇文献进行系统归纳与分析。结果与结论:①聚乳酸因具有无毒性、可加工性强、生物相容性好以及能在人体环境中自我降解的特性,被认为是理想的人工骨支架设计原料。3D打印技术的应用使得聚乳酸骨支架能够满足仿生人工骨修复材料的多层多孔结构设计要求,并优化了力学性能,以更好地进行骨修复。②根据不同的骨病微环境,适时调整聚乳酸支架的功能设计对支架综合成骨效能的发挥十分重要。文章讨论了聚乳酸支架在骨髓炎、骨肿瘤、骨坏死和骨质疏松等骨病环境下的应用,强调了针对不同骨病所导致的骨缺损,合理把握骨病治疗与骨组织再生的时间节点的重要性。③尽管聚乳酸支架在骨修复中显示出潜力,但仍存在一些问题,如需要进一步优化支架的结构设计以适配新骨再生,增强支架的生物活性,并兼顾其他功能(如抗菌、抗肿瘤及抗骨质疏松等)以适应不同病理环境下骨组织修复的需求。 展开更多
关键词 3d打印 聚乳酸 骨组织工程支架 骨髓炎 骨肿瘤 骨坏死 骨质疏松 骨缺损
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Output Voltage Stabilization of Non-Ideal DC-DC Zeta Converter with Output Voltage Error Elimination via Hybrid Control
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作者 Hafez Sarkawi Noridah Mohd Ridzuan +1 位作者 Muhammad Idzdihar Idris Mohd Syafiq Mispan 《Journal of Power and Energy Engineering》 2025年第1期18-31,共14页
In this paper, we proposed an output voltage stabilization of a DC-DC Zeta converter using hybrid control. We modeled the Zeta converter under continuous conduction mode operation. We derived a switching control law t... In this paper, we proposed an output voltage stabilization of a DC-DC Zeta converter using hybrid control. We modeled the Zeta converter under continuous conduction mode operation. We derived a switching control law that brings the output voltage to the desired level. Due to infinite switching occurring at the desired level, we enhanced the switching control law by allowing a sizeable output voltage ripple. We derived mathematical models that allow one to choose the desired switching frequency. In practice, the existence of the non-ideal properties of the Zeta converter results in steady-state output voltage error. By analyzing the power loss in the zeta converter, we proposed an improved switching control law that eliminates the steady-state output voltage error. The effectiveness of the proposed method is illustrated with simulation results. 展开更多
关键词 Continuous Conduction Mode dC-dC Zeta converter Hybrid Control Output Voltage Error Switching Control Law Switching Frequency
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Intelligent Estimation of ESR and C in AECs for Buck Converters Using Signal Processing and ML Regression
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作者 Acácio M.R.Amaral 《Computers, Materials & Continua》 2025年第11期3825-3859,共35页
Power converters are essential components in modern life,being widely used in industry,automation,transportation,and household appliances.In many critical applications,their failure can lead not only to financial loss... Power converters are essential components in modern life,being widely used in industry,automation,transportation,and household appliances.In many critical applications,their failure can lead not only to financial losses due to operational downtime but also to serious risks to human safety.The capacitors forming the output filter,typically aluminumelectrolytic capacitors(AECs),are among the most critical and susceptible components in power converters.The electrolyte in AECs often evaporates over time,causing the internal resistance to rise and the capacitance to drop,ultimately leading to component failure.Detecting this fault requires measuring the current in the capacitor,rendering the method invasive and frequently impractical due to spatial constraints or operational limitations imposed by the integration of a current sensor in the capacitor branch.This article proposes the implementation of an online noninvasive fault diagnosis technique for estimating the Equivalent Series Resistance(ESR)and Capacitance(C)values of the capacitor,employing a combination of signal processing techniques(SPT)and machine learning(ML)algorithms.This solution relies solely on the converter’s input and output signals,therefore making it a non-invasive approach.The ML algorithm used was linear regression,applied to 27 attributes,21 of which were generated through feature engineering to enhance the model’s performance.The proposed solution demonstrates an R^(2) score greater than 0.99 in the estimation of both ESR and C. 展开更多
关键词 Buck converter boost converter AECs fault detection predictive maintenance signal processing techniques feature engineering linear regression and K-nearest neighbors
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Development of a Buck Converter for Efficient Energy Storage Integration Using Constant Voltage(CV)Methods
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作者 Ricky Alfian Dita Sudirman Palaloi +6 位作者 Rezi Delfianti Catur Harsito Muhammad Nevandra Fithra Pangestu Deo Ferdi Ramadhan Tovva Firdansyah Amijaya Farhan Mudzaffar Dimas Raka Buana Putra 《Energy Engineering》 2025年第6期2355-2370,共16页
Efficient battery charging requires a power conversion system capable of providing precise voltage regulation tailored to the battery’s needs.This study develops a buck converter with a 36 V input for charging a 14 V... Efficient battery charging requires a power conversion system capable of providing precise voltage regulation tailored to the battery’s needs.This study develops a buck converter with a 36 V input for charging a 14 V battery using the Constant Voltage(CV)method.The system is designed to ensure safe and efficient charging while protecting the battery from overcharging and extending its lifespan.In the proposed design,the converter maintains a constant output voltage while the charging current decreases as the battery approaches full capacity.Pulse Width Modulation(PWM)is used as a control strategy to modify the duty cycle of the converter.This keeps the voltage output stable whenever the load changes.The design process involves simulation and experimental validation to evaluate the system’s performance and efficiency.The test results show the significant impact of Proportional-Integral-Derivative(PID)control on the stability of the output voltage to meet the requirements for 14 V battery charging and the efficiency of the battery charging process.The output voltage becomes more stable,with reduced oscillation and minimal steadystate error.The State of Charge(SOC)increases more stably,controllably,and efficiently thanks to the PID controller’s ability to adjust the duty cycle in real time based on system feedback.This dynamic adjustment ensures that the output current and voltage remain within the optimal range,which directly improves the battery charging process.In addition,PID control significantly improves the dynamic response of the system,reducing overshoot and settling time while maintaining precise voltage regulation.This speeds up the battery charging process and contributes to better energy efficiency,reduced power loss,and extended battery life.This research provides a reliable and cost-effective solution for applications in electric vehicles,renewable energy systems,and other battery-powered devices. 展开更多
关键词 Battery charging buck converter constant voltage energy storage system
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LQR Discrete Time Control of a Buck Converter Using a Non-Minimal State Space Representation
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作者 Richard Tymerski 《Journal of Power and Energy Engineering》 2025年第1期32-46,共15页
This paper presents an advanced control strategy for DC-DC buck converters utilizing Non-Minimal State Space (NMSS) representation combined with Proportional-Integral-Plus (PIP) control, optimized through Linear Quadr... This paper presents an advanced control strategy for DC-DC buck converters utilizing Non-Minimal State Space (NMSS) representation combined with Proportional-Integral-Plus (PIP) control, optimized through Linear Quadratic Regulator (LQR) design. The proposed approach leverages NMSS to eliminate the need for state observers, enhancing robustness against model mismatch and improving overall system performance. The PIP controller extends traditional PI control by incorporating additional dynamic feedback. Experimental results demonstrate that the NMSS-PIP-LQR controlled buck converter achieves excellent dynamic performance. The design procedure is fully documented, and microcontroller implementation issues are discussed. 展开更多
关键词 dC-dC Buck converter Non-Minimal State Space (NMSS) Proportional-Integral-Plus (PIP) Control Linear Quadratic Regulator (LQR) F28069M Microcontroller
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Effect of new method of bottom-blowing gas doped oxygen on metallurgical characteristics of metal bath in converter
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作者 Pei-yan Pei Yi Wang +2 位作者 Li-bin Yang Bao Wang Jian-an Zhou 《Journal of Iron and Steel Research International》 2025年第4期894-903,共10页
The top-bottom combined blowing converter mainly adopts the blowing method of top-blowing oxygen and bottom-blowing nitrogen.In the production process,there are some disadvantages,such as a significant temperature dif... The top-bottom combined blowing converter mainly adopts the blowing method of top-blowing oxygen and bottom-blowing nitrogen.In the production process,there are some disadvantages,such as a significant temperature difference between the top and bottom of the molten pool,inadequate gas permeability of bottom blowing,and low decarburization efficiency.Therefore,we propose a novel bottom-blowing gas doped oxygen process to enhance the smelting conditions in the converter.The 500 kg medium frequency induction furnace with top and bottom-blowing function was used to explore the influence of the proportion of bottom-blowing gas doped oxygen on the smelting effect in different smelting cycles.Subsequently,industrial experimental verification was carried out on a 60 t converter.The results of intermediate frequency furnace experiments demonstrate that the bottom-blowing gas doped oxygen process exhibits a superior heating rate and decarburization efficiency during the initial and final stages of blowing compared to pure N2 used for bottom-blowing.Simultaneously,the dephosphorization efficiency exhibited an initial increase followed by a subsequent decrease as the bottom-blowing oxygen content increased.The industrial test of 60 t converter validates the findings above.Moreover,when the oxygen content in bottom-blowing gas is 5%,the average blowing time reduces by 54 s,and the minimum endpoint carbon-oxygen equilibrium reaches 0.00219 under this condition.The results demonstrate that the appropriate amount of oxygen doped in bottom-blowing gas can effectively enhance the metallurgical conditions of the converter and improve production efficiency. 展开更多
关键词 Combined blowing converter Bottom-blowing OXYGEN Carbon-oxygen product Industrial test
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Numerical Simulation of the Flow and Heat Transfer in Novel Circumfluent Cyclone Separator during High-Temperature Converter Gas Recovery
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作者 Ziyi Wang Sen Li +3 位作者 Xiaolin Wei Jing Zhao Bo Li Yuan Yao 《Frontiers in Heat and Mass Transfer》 2025年第1期163-184,共22页
In the novel fully dry converter gas recovery process,a novel circumfluent cyclone separator with an evaporation heating surface can simultaneously realize the dust removal and sensible heat recovery of converter gas.... In the novel fully dry converter gas recovery process,a novel circumfluent cyclone separator with an evaporation heating surface can simultaneously realize the dust removal and sensible heat recovery of converter gas.For this equipment,the distributions of internal flow and wall heat transfer affect the efficiency of dust removal and sensible heat recovery.In this study,based on on-site operation tests,the distributions of internal flow and wall heat transfer in the circumfluent cyclone separator are studied by numerical simulation.The results indicate that the flow rate proportions in different regions of the circumfluent cyclone separator remain constant during the steelmaking process,approximately 80.1%of the converter gas flows through the cone chamber,and 15.4%of the converter gas flows through the annular chamber.The heat transfer rate proportions on the walls of different regions of the circumfluent cyclone separator remain constant during the steelmaking process,and the heat transfer rate proportions on the walls of the cone chamber,straight shell,shell head and outlet pipe are 40.2%,27.0%,17.6%and 15.2%,respectively. 展开更多
关键词 converter gas circumfluent cyclone separator dust removal heat recovery
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Different Types of Electrical Generators for Converting Wave Energy into Electrical Energy–A Review
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作者 Jawad Faiz Shahryar Haghvirdiloo Ali Ghaffarpour 《哈尔滨工程大学学报(英文版)》 2025年第1期76-97,共22页
This review paper examines the various types of electrical generators used to convert wave energy into electrical energy.The focus is on both linear and rotary generators,including their design principles,operational ... This review paper examines the various types of electrical generators used to convert wave energy into electrical energy.The focus is on both linear and rotary generators,including their design principles,operational efficiencies,and technological advancements.Linear generators,such as Induction,permanent magnet synchronous,and switched reluctance types,are highlighted for their direct conversion capability,eliminating the need for mechanical gearboxes.Rotary Induction generators,permanent magnet synchronous generators,and doubly-fed Induction generators are evaluated for their established engineering principles and integration with existing grid infrastructure.The paper discusses the historical development,environmental benefits,and ongoing advancements in wave energy technologies,emphasizing the increasing feasibility and scalability of wave energy as a renewable source.Through a comprehensive analysis,this review provides insights into the current state and future prospects of electrical generators in wave energy conversion,underscoring their potential to significantly reduce reliance on fossil fuels and mitigate environmental impacts. 展开更多
关键词 Wave energy Rotary generators Linear generators Control systems Wave energy converters
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Predicting the Heave Displacement of a Nonbuoyant Wave Energy Converter Using Tree-Based Ensemble Machine Learning Models
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作者 SANTHOSH Nagulan VINU KUMAR Shettahalli Mantaiah SAKTHIVEL MURUGAN Erusagounder 《Journal of Ocean University of China》 2025年第4期897-908,共12页
Scientists have introduced new methods for capturing energy from ocean waves.Specifically,scientists have focused on a type of wave energy converter(WEC)that is nonbuoyant(i.e.,a body that cannot float).Typically,the ... Scientists have introduced new methods for capturing energy from ocean waves.Specifically,scientists have focused on a type of wave energy converter(WEC)that is nonbuoyant(i.e.,a body that cannot float).Typically,the WEC is most effective when it is in resonance,which occurs when the natural frequency of the WEC aligns with that of the ocean waves.Therefore,accurately predicting the movement of the WEC is crucial for adjusting its system to resonate with the incoming waves for optimal performance.In this study,artificial intelligence techniques,such as random forest,extra trees(ET),and support vector machines,are created to forecast the vertical movement of a nonbuoyant WEC.The developed models require two variables as input,namely,the water wave height and its time period.A total of approximately 4500 data points,which include nonlinear water wave height and duration ob-tained from a laboratory experiment,are used as the input for these models,with the resulting vertical movement as the output.When comparing the three models based on their processing speed and accuracy,the ET model stands out as the most efficient.Ultimately,the ET model is tested using data from a real ocean setting. 展开更多
关键词 wave energy converter RESONANCE random forest support vector machines extra trees
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Energy balance of BOF converter during swirl-type oxygen lance blowing process
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作者 Xi Wang Lian-yu Wang +2 位作者 Guang-qiang Liu Wang-zhong Mu Kun Liu 《Journal of Iron and Steel Research International》 2025年第9期2744-2756,共13页
Analysis of the energy balance of various parts during the basic oxygen furnace(BOF)steelmaking is of vital importance for revealing the blowing characteristics of the swirl-type oxygen lance.The energy transfer behav... Analysis of the energy balance of various parts during the basic oxygen furnace(BOF)steelmaking is of vital importance for revealing the blowing characteristics of the swirl-type oxygen lance.The energy transfer behavior between the oxygen jet and the molten bath in the top-blowing steelmaking process was investigated using the volume of fluid method.The energy of the reflected jet and the slag was introduced,and the energy balance model of the BOF converter was modified.The influences of lance height and operation pressure on energy transfer were analyzed.Compared with the traditional oxygen lance,the energy of reflected jet,splashing,and cavity formation of the swirl-type oxygen lance was decreased.However,the energy of jet attenuation,slag,and molten steel increased.The energy proportion of the reflected jet was about 8%,while the energy of slag was 15%of molten steel.The maximum energy was transferred from the jet to the slag and molten steel at H=40de(H is lance height and de is outlet diameter).When the operation pressure increased from 0.8P0 to 1.2P0(P0 is the designed pressure),the energy of slag and molten steel was increased by 33%and 25.9%,respectively. 展开更多
关键词 Energy balance Swirl-type oxygen lance Supersonic jet converter steelmaking Numerical simulation
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Theoretical Investigation on an Oscillating Wave Energy Converter in Different Degrees of Freedom in Front of a Seawall
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作者 WANG Yuhan DONG Sheng 《Journal of Ocean University of China》 2025年第2期289-302,共14页
The interaction between regular waves and an oscillating wave energy converter(WEC)in front of a vertical seawall is investigated using a 2D analytical model.A three-degree of freedom(DOF)WEC and a WEC hinged to the s... The interaction between regular waves and an oscillating wave energy converter(WEC)in front of a vertical seawall is investigated using a 2D analytical model.A three-degree of freedom(DOF)WEC and a WEC hinged to the seawall(constrained to pitch mode)are considered to examine the influence of the DOF of the WEC on the wave energy extraction performance.Results show that the piston-mode water resonance in the gap and the coupled WEC and water column resonant motion significantly influence the wave energy extraction efficiency.At low frequency,the case with a 3-DOF WEC has a broader high-efficiency bandwidth than that with a heaving WEC.However,3-DOF WEC exhibits worse performance at high frequencies.The frequency response of the wave energy capture width ratio(CWR)for the pitching WEC case shows a trimodal trend under the specified conditions.It showcases the best overall wave energy extraction performance in terms of the high-efficiency bandwidth.Furthermore,a parametric study indicates that the gap distance between the WEC and the seawall has tremendous effects on the CWR of both cases.As the position of the hinge point of the pitching WEC changes,the CWR at the low and high frequencies shows opposite trends. 展开更多
关键词 analytical model wave energy converter hinge connection multiple degrees of freedom gap resonance
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Study on Hydrodynamic Characteristics of Raft-Type Wave Energy Converter Based on Same-Direction Parallelogram Under Wave-Current Conditions
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作者 WANG Shu-qi TANG Ji +3 位作者 WANG Jin Ratthakrit REABROY JI Ren-wei WANG Kai 《China Ocean Engineering》 2025年第4期662-674,共13页
Utilizing computational fluid dynamics(CFD),this study analyzes the relative pitching motion amplitude and conversion efficiency of the parallelogram raft wave energy converter(R-WEC)under wave current conditions,exam... Utilizing computational fluid dynamics(CFD),this study analyzes the relative pitching motion amplitude and conversion efficiency of the parallelogram raft wave energy converter(R-WEC)under wave current conditions,examining the effects of power take-off(PTO)parameters,wave parameters,and flow velocity on R-WEC hydrodynamic performance.The research includes an analysis of a single point mooring system to determine optimal mooring conditions.Through comparative analysis of energy conversion efficiency across 10 single mooring modes and nine double-mooring modes,the study evaluates their impact on the R-WEC.Findings demonstrate that flow velocity adversely affects wave energy capture.Energy conversion efficiency exhibits an initial increase followed by a decrease as damping coefficient or wave frequency coefficient increases.An optimal anchor chain unit mass coefficient exists that maximizes R-WEC energy conversion efficiency.The dual mooring system demonstrates marginally enhanced energy conversion efficiency compared with single mooring,with specific impacts on R-wave energy converters(WECs)documented.These findings provide valuable reference data for R-WEC design optimization and operational strategies to enhance conversion efficiency. 展开更多
关键词 raft-type wave energy converter(R-WEC) conversion efficiency wave transmission mooring system
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Research on the Performance Optimization of a Hydraulic PTO System for a“Dolphin 1”Oscillating-Body Wave Energy Converter
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作者 LAI Wen-bin LI Jia-long +2 位作者 RONG Si-zhang YANG Hong-kun ZHENG Xiong-bo 《China Ocean Engineering》 2025年第1期166-178,共13页
In this work,an oscillating-body wave energy converter(OBWEC)with a hydraulic power take-off(PTO)system named“Dolphin 1”is designed,in which the hydraulic PTO system is equivalent to a transfer station and plays a c... In this work,an oscillating-body wave energy converter(OBWEC)with a hydraulic power take-off(PTO)system named“Dolphin 1”is designed,in which the hydraulic PTO system is equivalent to a transfer station and plays a crucial role in ensuring the stability of the electrical energy output and the efficiency of the overall system.A corresponding mathematical model for the hydraulic PTO system has been established,the factors that influence its performance have been studied,and an algorithm for solving the optimal working pressure has been derived in this paper.Moreover,a PID control method to enable the hydraulic PTO system to automatically achieve optimal performance under different wave conditions has been designed.The results indicate that,compared with single-chamber hydraulic cylinders,double-chamber hydraulic cylinders have a wider application range and greater performance;the accumulator can stabilize the output power of the hydraulic PTO system and slightly increase it;excessively large or small hydraulic motor displacement hinders system performance;and each wave condition corresponds to a unique optimal working pressure for the hydraulic PTO system.In addition,the relationship between the optimal working pressure P_(m)and the pressure P_(h)of the wave force acting on the piston satisfies P_(m)^(2)=∫_(t_(1))^(t_(2))P_(h)^(2)dt/(t_(2)-t_(1)).Furthermore,adjusting the hydraulic motor displacement automatically via a PID controller ensures that the actual working pressure of the hydraulic PTO system consistently reaches or approaches its theoretically optimal value under various wave conditions,which is a very effective control method for enhancing the performance of the hydraulic PTO system. 展开更多
关键词 hydraulic PTO system performance optimization wave energy converter optimal working pressure PId control
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