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Performance Analysis and Comparison of Two Fault-Tolerant Model Predictive Control Methods for Five-Phase PMSM Drives 被引量:9
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作者 Wentao Huang Wei Hua Qigao Fan 《CES Transactions on Electrical Machines and Systems》 CSCD 2021年第4期311-320,共10页
Model predictive current control(MPCC)and model predictive torque control(MPTC)are two derivatives of model predictive control.These two control methods have demonstrated their strengths in the fault-tolerant control ... Model predictive current control(MPCC)and model predictive torque control(MPTC)are two derivatives of model predictive control.These two control methods have demonstrated their strengths in the fault-tolerant control of multiphase motor drives.To explore the inherent link,the pros and cons of two strategies,the performance analysis and comparative investigation of MPCC and MPTC are conducted through a five-phase permanent magnet synchronous motor with open-phase fault.In MPCC,the currents of fundamental and harmonic subspaces are simultaneously employed and constrained for a combined regulation of the open-circuit fault drive.In MPTC,apart from the torque and the stator flux related to fundamental subspace,the x-y currents are also considered and predicted to achieve the control of harmonic subspace.The principles of two methods are demonstrated in detail and the link is explored in terms of the cost function.Besides,the performance by two methods is experimentally assessed in terms of steady-state,transition,and dynamic tests.Finally,the advantages and disadvantages of each method are concluded. 展开更多
关键词 Permanent magnet motor five-phase fault-tolerant control model predictive control
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Fault-Tolerant Operation of Five-Phase Permanent Magnet Synchronous Motor with Independent Phase Driving Control 被引量:5
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作者 Yongqing Wei Mingzhong Qiao Peng Zhu 《CES Transactions on Electrical Machines and Systems》 CSCD 2022年第1期105-110,共6页
The multi-phase motor drive system with multiple H-bridge power supply has high fault tolerance,which is widely used in aerospace,electric vehicle,ship integrated power system and other fields.In this paper,a fault-to... The multi-phase motor drive system with multiple H-bridge power supply has high fault tolerance,which is widely used in aerospace,electric vehicle,ship integrated power system and other fields.In this paper,a fault-tolerant control strategy based on decoupling control and stator current compensation is proposed for the propulsion system of five-phase PMSM with independent neutrals.Firstly,the mathematical model of PMSM is established by using vector space decoupling method;Secondly,a stator current compensation method is adopted to carry out fault-tolerant control after the motor has single-phase and two-phase open-circuit faults and the fault-tolerant control system based on decoupling control is established;Finally,the decoupling control model and the fault-tolerant control of stator current compensation are verified by the simulation and experiment.The simulation and experiment results show that the method can reduce the torque ripple caused by the stator winding open-circuit fault,and the operation performance of the motor under fault condition is significantly improved. 展开更多
关键词 five-phase permanent magnet synchronous motor H-bridge inverter Fault-tolerant control Vector space decoupling
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Five-phase Synchronous Reluctance Machines Equipped with a Novel Type of Fractional Slot Winding 被引量:2
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作者 S.M.Taghavi Araghi A.Kiyoumarsi B.Mirzaeian Dehkordi 《CES Transactions on Electrical Machines and Systems》 EI CSCD 2024年第3期264-273,共10页
Multi-phase machines are so attractive for electrical machine designers because of their valuable advantages such as high reliability and fault tolerant ability.Meanwhile,fractional slot concentrated windings(FSCW)are... Multi-phase machines are so attractive for electrical machine designers because of their valuable advantages such as high reliability and fault tolerant ability.Meanwhile,fractional slot concentrated windings(FSCW)are well known because of short end winding length,simple structure,field weakening sufficiency,fault tolerant capability and higher slot fill factor.The five-phase machines equipped with FSCW,are very good candidates for the purpose of designing motors for high reliable applications,like electric cars,major transporting buses,high speed trains and massive trucks.But,in comparison to the general distributed windings,the FSCWs contain high magnetomotive force(MMF)space harmonic contents,which cause unwanted effects on the machine ability,such as localized iron saturation and core losses.This manuscript introduces several new five-phase fractional slot winding layouts,by the means of slot shifting concept in order to design the new types of synchronous reluctance motors(SynRels).In order to examine the proposed winding’s performances,three sample machines are designed as case studies,and analytical study and finite element analysis(FEA)is used for validation. 展开更多
关键词 Finite element analysis five-phase machine Fractional slot concentrated winding(FSCW) Machine slot/pole combination MMF harmonics Synchronous reluctance machine Winding factor
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Speed sensorless FCS-MPTC based on FOSM-MRAS five-phase permanent magnet synchronous motor
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作者 ZHANG Haiming WANG Yunkun +1 位作者 MIAO Zhongcui WANG Zhihao 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2022年第3期309-319,共11页
For the two-level five-phase permanent magnet synchronous motor(FP-PMSM)drive system,an improved finite-control-set model predictive torque control(MPTC)strategy is adopted to reduce torque ripple and improve the cont... For the two-level five-phase permanent magnet synchronous motor(FP-PMSM)drive system,an improved finite-control-set model predictive torque control(MPTC)strategy is adopted to reduce torque ripple and improve the control performance of the system.The mathematical model of model reference adaptive system(MRAS)of FP-PMSM is derived and a method based on fractional order sliding mode(FOSM)is proposed to construct the model reference adaptive system(FOSMMRAS)to improve the motor speed estimation accuracy and eliminate the sliding mode integral saturation effect.The simulation results show that the FP-PMSM speed sensorless FCS-MPTC system based on FOSM-MRAS has strong robustness,good dynamic performance and static performance,and high reliability. 展开更多
关键词 model reference adaptive system(MRAS) finite-control-set model predictive torque control(FCS-MPTC) fractional order sliding mode(FOSM) speed sensorless five-phase permanent magnet synchronous motor(FP-PMSM)
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Comparative Study on Torque Performance of Five-phase Single-Stator and Double-Stator Permanent Magnet Synchronous Motors
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作者 Jing Zhao You Wang +1 位作者 Jingqi Li Hengzai Hu 《CES Transactions on Electrical Machines and Systems》 CSCD 2022年第1期46-52,共7页
This paper compares the torque characteristics of single stator permanent magnet synchronous motor(PMSM)and double-stator PMSM under different split-ratios,air-gap lengths and shaft diameters by finite element method.... This paper compares the torque characteristics of single stator permanent magnet synchronous motor(PMSM)and double-stator PMSM under different split-ratios,air-gap lengths and shaft diameters by finite element method.Firstly,the effects of split-ratio towards the torque characteristics of the two motor structures under different air-gap lengths are researched,the results show that the optimal split-ratios of the two motor structures do not change under different air-gap lengths,and the optimal split-ratio of the double-stator motor is greater than that of single-stator,and the torque of the double-stator motor is greater than that of single-stator motor with arbitrary split-ratio under the same air-gap length;Finally,the effects of the shaft diameter to the torque of the two motor structures are investigated,obtaining that with the increasing of shaft diameter,the electromagnetic torque of the single-stator motor is almost unchanged,however,the torque of the double-stator is gradually reduced,when the shaft diameter reached a certain extent,the electromagnetic torque of the double-stator motor is smaller than that of single-stator motor with the split ratio within a certain range,and the torque/quality ratio of the double-stator motor is smaller than that of single-stator motor with their optimal split ratio separately. 展开更多
关键词 five-phase PMSM DOUBLE-STATOR single-stator split ratio electromagnetic torque
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Encoderless Five-phase PMa-SynRM Drive System Based on Robust Torque-speed Estimator with Super-twisting Sliding Mode Control
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作者 Ghada A.Abdel Aziz Rehan Ali Khan 《CES Transactions on Electrical Machines and Systems》 CSCD 2023年第1期54-62,共9页
In this paper,a robust torque speed estimator(RTSE)for linear parameter changing(LPC)system is proposed and designed for an encoderless five-phase permanent magnet assisted synchronous reluctance motor(5-phase PMa-Syn... In this paper,a robust torque speed estimator(RTSE)for linear parameter changing(LPC)system is proposed and designed for an encoderless five-phase permanent magnet assisted synchronous reluctance motor(5-phase PMa-SynRM).This estimator is utilized for estimating the rotor speed and the load torque as well as can solve the speed sensor fault problem,as the feedback speed information is obtained directly from the virtual sensor.In addition,this technique is able to enhance the 5-phase PMa-SynRM performance by estimating the load torque for the real time compensation.The stability analysis of the proposed estimator is performed via Schur complement along with Lyapunov analysis.Furthermore,for improving the 5-phase PMa-SynRM performance,five super-twisting sliding mode controllers(ST-SMCs)are employed with providing a robust response without the impacts of high chattering problem.A super-twisting sliding mode speed controller(ST-SMSC)is employed for controlling the PMa-SynRM rotor speed,and four super-twisting sliding mode current controllers(ST-SMCCs)are employed for controlling the 5-phase PMa-SynRM currents.The stability analysis and the experimental results indicate the effectiveness along with feasibility of the proposed RTSE and the ST-SMSC with ST-SMCCs approach for a 750-W 5-phase PMa-SynRM under load disturbance,parameters variations,single open-phase fault,and adjacent two-phase open circuit fault conditions. 展开更多
关键词 five-phase permanent magnet assisted synchronous reluctance motor Encoderless control Supertwisting sliding mode control Torque-speed estimator
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Analysis of Direct Torque Control for Marine Five-Phase Induction Motor
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作者 Peiwen Dou Wei Xie Xiaohan Zhang 《Journal of Energy and Power Engineering》 2020年第8期259-267,共9页
Based on the principle of direct torque control,a DTC(Direct Torque Control)system with five-phase induction motor has been studied.Providing direct control of stator flux and electromagnetic torque by optimized volta... Based on the principle of direct torque control,a DTC(Direct Torque Control)system with five-phase induction motor has been studied.Providing direct control of stator flux and electromagnetic torque by optimized voltage vector,five-phase induction motor enhances flexibility of the invert states selection by increasing the number of voltage vectors,resulting in more precise control of stator flux and electromagnetic torque.The model of DTC for five-phase induction motor is constructed on equations and the method of approximate circle of torque track is used to conduct the simulation analysis of the system.The simulation results demonstrate that the DTC for five-phase induction motor control has merits of little calculation compared with vector control,simple structure,fast response and greater dynamic performance. 展开更多
关键词 five-phase induction motor DTC circular flux track MATLAB/SIMULINK
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Exponential response electrical pole-changing method for a five-phase induction machine with a current sliding mode control strategy 被引量:8
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作者 Jia-qiang YANG Rong-sen YIN +1 位作者 Xiao-jun ZHANG Jin HUANG 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2017年第8期1151-1166,共16页
Electrical pole-changing technology leads to torque ripple and speed fluctuation despite broadening the constant power speed range of the multiphase induction machine (IM) system. To reduce the torque ripple and spe... Electrical pole-changing technology leads to torque ripple and speed fluctuation despite broadening the constant power speed range of the multiphase induction machine (IM) system. To reduce the torque ripple and speed fluctuation of the machine, we investigate an exponential response electrical pole-changing method for five-phase IM with a current sliding-mode control strategy. This control strategy employs the dual-plane (dr-q1 and d2-q2) vector control method, which allows the IM to operate under different pole modes. Current sliding-mode controllers are applied instead of conventional proportional integral (PI) controllers to adjust the current vectors, and exponential current response achieves a smooth transition between the d1-q1 and d2-q2 planes. Compared with the step response pole-changing with PI control method, the proposed pole-changing method greatly reduces the torque ripple and speed fluctuation of the IM during the pole-changing process. Experimental results verify the ex- ceptional performance of the proposed electrical pole-changing strategy. 展开更多
关键词 five-phase induction machine Pole-change Sliding-mode control Exponential response Torque ripple reduction
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Fault-tolerant Deadbeat Model Predictive Current Control for a Five-phase PMSM with Improved SVPWM 被引量:5
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作者 Suleman Saeed Wenxiang Zhao +2 位作者 Huanan Wang Tao Tao Faisal Khan 《Chinese Journal of Electrical Engineering》 CSCD 2021年第3期111-123,共13页
The main drawbacks of traditional finite set model predictive control are high computational load,large torque ripple,and variable switching frequency.A less complex deadbeat(DB)model predictive current control(MPCC)w... The main drawbacks of traditional finite set model predictive control are high computational load,large torque ripple,and variable switching frequency.A less complex deadbeat(DB)model predictive current control(MPCC)with improved space vector pulse-width modulation(SVPWM)under a single-phase open-circuit fault is proposed.The proposed method predicts the reference voltage vector in the a-β subspace by employing the deadbeat control principle on the machine predictive model;thus,the exhaustive exploration procedure is avoided to relieve the computational load.To perform the constant switching frequency operation and achieve better steady-state performance,a modified SVPWM strategy is developed with the same conventional structure,which modulates the reference voltage vector.This new approach is based on a redesigned and adjusted post-fault virtual voltage vector space distribution that eliminates the y-axis harmonic components in the x-y subspace and ensures the generation of symmetrical PWM pulses.Meanwhile,the combined merits of the DB,MPCC,and SVPWM methods are realized.To verify the effectiveness of the proposed control scheme,comparative experiments are performed on a five-phase permanent magnet synchronous motor(PMSM)drive system. 展开更多
关键词 five-phase FAULT-TOLERANT permanent magnet deadbeat model predictive control space vector modulation
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Field-Oriented Control and Direct Torque Control for a Five-Phase Fault-Tolerant Flux-Switching Permanent-Magnet Motor 被引量:2
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作者 Binyu Wu Dezhi Xu +2 位作者 Jinghua Ji Wenxiang Zhao Qingwang Jiang 《Chinese Journal of Electrical Engineering》 CSCD 2018年第4期48-56,共9页
This paper presents a comparative performance analysis of a new five-phase fault-tolerant flux-switching permanent-magnet(FT-FSPM)motor for high-reliability applications under the two most popular control schemes,name... This paper presents a comparative performance analysis of a new five-phase fault-tolerant flux-switching permanent-magnet(FT-FSPM)motor for high-reliability applications under the two most popular control schemes,namely,field-oriented control(FOC)and direct torque control(DTC)based on stator-flux orientation.Firstly,the new motor topology and structural characteristics are briefly presented.Secondly,the d-and q-axis for the FT-FSPM motor are defined,which is crucial to the mathematical model and control scheme,and the mathematical models are derived.Then,two control schemes,i.e.,FOC and DTC,and the main system are proposed.The operational principles of the two control schemes are presented,and space vector pulse width modulation(SVPWM)based on four neighboring vectors is adopted to reduce current harmonics and torque ripples.Finally,the simulated and experimental results are given,and performance analysis of the two control schemes are compared and discussed.The results reveal that FOC scheme has the sinusoidal phase current and low torque ripples,while the DTC scheme has fast dynamic response,verifying the effectiveness of the two proposed control schemes.This paper is a primary investigation for more possible improvements in the control schemes of the five-phase FS-FTPM motor. 展开更多
关键词 FLUX-SWITCHING five-phase motor permanent-magnet motor filed-oriented control direct torque control
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Microstructures and dynamic processes within the five-phase system:Regarding COVID-19 as a complex system 被引量:1
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作者 Fengbin Wang Xue Zhang 《Frontiers of Business Research in China》 2020年第3期303-323,共21页
The research uses the development of 2019 novel coronavirus disease(COVID-19)in the human body as an example to explore the microstructures and dynamic processes of a concise complex system from the lens of the five-p... The research uses the development of 2019 novel coronavirus disease(COVID-19)in the human body as an example to explore the microstructures and dynamic processes of a concise complex system from the lens of the five-phase system.Based on the structural balance theory and system dynamics,the research finds that Iransitive triads and cyclic triads in the fivephase system are both imbalanced.The integration of these differentiated triads comprises of a balaneed intermediate form in the shape of quadrangular cycles.These cycles serve as microstructures of the five-phase system,due to the inherent balancing feedback mechanism,and support the generation of resultants.The alter nation of quadra ngular cycles drives the spirali ng development of the whole system.By orderly and regular in terweaving of sig ned directed links,the research provides a holistic,process-oriented demonstrati on for the developme nt processes of COVID-19.It clarifies that the esse nee of the five-phase system is phase-tra nsition processes with the quadrangular cycle as carrier and supporter,rather than the static aggregati on of five elements.The research deep ens the understanding of system non linearity by visualizi ng the circular causality and promotes the academic dialogue between the Western process theory and the Chinese inherited notion of the fivephase system. 展开更多
关键词 five-phase system 2019 novel coronavirus disease(COVID-19) Balancing feedback Microstructure Spiraling process
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Dual-frequency Discontinuous Space Vector Pulse Width Modulation for Five-phase Voltage Source Inverters with Harmonic Injection
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作者 Tianyu Pu Feifei Bu +1 位作者 Haijun Xu Wenxin Huang 《CSEE Journal of Power and Energy Systems》 SCIE CSCD 2021年第3期665-675,共11页
This paper proposes a dual-frequency discontinuous space vector pulse width modulation(DFDSVPWM)for a five-phase voltage source inverter with harmonic injection.In this modulation,for dual-frequency voltage output and... This paper proposes a dual-frequency discontinuous space vector pulse width modulation(DFDSVPWM)for a five-phase voltage source inverter with harmonic injection.In this modulation,for dual-frequency voltage output and reduction of switching losses,two different zero-vector-inserted modes are flexibly employed by alternatively using two types of zero vectors.Based on the comparison with continuous SVPWM,the idea and principle of the proposed DFDSVPWM are analyzed and an example of PWM signals for one bridge is also presented.For switching losses analysis,the impact factors and the calculation method are investigated and the corresponding implementation is given as well.The simulation and experimental results from a prototype verify the correctness and effectiveness of the proposed modulation and it has the advantages of outputting dual-frequency voltage and reducing switching losses. 展开更多
关键词 Discontinuous space vector pulse width modulation dual frequency five-phase voltage source inver terharmonic injection switching losses
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Short-circuit fault-tolerant control for five-phase fault-tolerant permanent magnet motors with trapezoidal back-EMF
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作者 Qian Chen Yuhang Xia +2 位作者 Jiabin Wang Wenxiang Zhao Guohai Liu 《Fundamental Research》 CAS 2022年第6期964-973,共10页
When a short-circuit fault occurs in a phase,the faulty phase needs to be removed artificially from the system because of the loss of the capability to generate torque.In this case,both the short-circuit current and p... When a short-circuit fault occurs in a phase,the faulty phase needs to be removed artificially from the system because of the loss of the capability to generate torque.In this case,both the short-circuit current and phase-loss fault would generate additional torque ripples.In this study,a novel fault-tolerant control strategy is introduced to achieve low torque ripple operation of five-phase fault-tolerant permanent magnet synchronous motors with trapezoidal back electromotive force(FTPMSM-TEMF)in the event of a short-circuit fault.The key concept of this method is to compensate for the torque ripples caused by the short-circuit current and the adverse effect of the phase-loss.Based on the torque expression under fault conditions,the torque ripple caused by the short-circuit current can be offset by injecting a certain pulsating component into the torque expression in the phase-loss condition.This would result in smooth operation under fault conditions.Moreover,to track the fault-tolerant alternating currents,the model of the deadbeat current predictive control is extended and restructured for the fault condition.The effectiveness and feasibility of the proposed fault-tolerant strategy are verified by experimental results. 展开更多
关键词 Short-circuit fault five-phase fault-tolerant permanent magnet synchronous motor Trapezoidal back electromotive force FAULT-TOLERANT Deadbeat current predictive control
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马宝璋基于五行调周法治疗不明原因不孕的临证经验
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作者 时思毛 尤佳慧 +1 位作者 杨新鸣 马红丽 《时珍国医国药》 北大核心 2026年第1期154-159,共6页
总结马宝璋教授基于五行调周法论治不明原因性不孕的经验。马宝璋教授认为月经周期与五行有关,故将月经分为五期,有针对性的用药。月经期属金,治宜活血化瘀、祛瘀生新,用桃红四物汤合失笑散加减;卵泡发育期属木,治宜补肾填精、疏肝行气... 总结马宝璋教授基于五行调周法论治不明原因性不孕的经验。马宝璋教授认为月经周期与五行有关,故将月经分为五期,有针对性的用药。月经期属金,治宜活血化瘀、祛瘀生新,用桃红四物汤合失笑散加减;卵泡发育期属木,治宜补肾填精、疏肝行气,用当归地黄饮合逍遥散加减;排卵期属水,治宜滋肾益阴、理气活血,用左归丸加减;黄体期属火,治宜补肾助阳、益气养血,用右归丸合二仙汤加减;经前期属土,治宜健脾养胃,调和阴阳,用四君子汤加减,形成周期性治疗,以达调经助孕之目的,临床上取得较好的疗效,并附案例一则予以说明。 展开更多
关键词 不明原因不孕 五行调周法 名医经验 马宝璋 调周助运
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中日古代都城礼制文化比较研究
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作者 高崇文 《考古与文物》 北大核心 2026年第1期107-112,共6页
日本古代都城与中国早期都城相比,有其独特性,更有其相似性。尤其是都城的设计理念,既遵照了《考工记》所记载的都城设计方式,又体现了中国古代“阴阳五行”“象天立宫”等思想。它在许多方面都源于中国早期都城的设计理念,表现出浓厚... 日本古代都城与中国早期都城相比,有其独特性,更有其相似性。尤其是都城的设计理念,既遵照了《考工记》所记载的都城设计方式,又体现了中国古代“阴阳五行”“象天立宫”等思想。它在许多方面都源于中国早期都城的设计理念,表现出浓厚的礼制文化内涵,从而反映出中日两国古代文化的密切关系。 展开更多
关键词 中日古代都城 礼制文化 阴阳五行 象天立宫 匠人营国
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名中医陆曙基于五维辨治理论诊治缺血性心肌病经验
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作者 王慧 蓝弘毅 陆曙 《陕西中医》 2026年第2期242-247,共6页
缺血性心肌病(ICM)是冠状动脉粥样硬化终末阶段,是全球心力衰竭三大主因之一,已成为世界范围内发病率较高的疾病之一,其患病率及病死率呈上升趋势,现有药物-血运重建-器械综合策略仍存残余风险与再住院难题。中医药在增效减副、改善ICM... 缺血性心肌病(ICM)是冠状动脉粥样硬化终末阶段,是全球心力衰竭三大主因之一,已成为世界范围内发病率较高的疾病之一,其患病率及病死率呈上升趋势,现有药物-血运重建-器械综合策略仍存残余风险与再住院难题。中医药在增效减副、改善ICM患者症状、提高生活质量方面显示出独特价值。陆曙教授融合龙砂医派学术特色,创新性地提出涵盖“时效、质效、功效、药效、量效”的“五维辨治”诊疗体系。该体系以“司天、司人、司病症”为核心,系统整合了五运六气时空因素、个体体质差异、传统病证方证、现代药理研究及药物效价关系,旨在实现“五效合一”。时空维度从运气方、经方的时效性,并结合运气气化之开阖枢,从人体本质出发分析禀赋体质不同,结合病证不同发展阶段,药理角度以自拟方剂参芪养心汤为例,在药物效价角度参合药量,配伍及服药频次。并展示了如何基于此五维框架,灵活运用经方、时方及自拟方,显著改善患者心功能、缓解症状并提升生活质量。单维或多维共用来诊治ICM,为ICM的个体化、精准化治疗提供了富有启发的系统思路和可操作的临床范式,以期全面有效,同时也为其他疾病的中西医结合诊治提供了系统化的创新路径。 展开更多
关键词 缺血性心肌病 陆曙 五维辨治 五运六气 冠状动脉粥样硬化
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数智赋能的“五维六阶”智慧教学模式探索
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作者 孙庚 张理锟 +2 位作者 黄岚 刘雪洁 吴静 《计算机教育》 2026年第1期78-82,共5页
分析数智时代课程教学全流程的需求,提出数智赋能的“五维六阶”智慧教学模式,以计算机专业研究生基础课程数据通信为例,从五维教学预设和六阶教学实施两方面介绍教学模式实践,最后说明教学效果。
关键词 数智赋能 五维六阶 智慧教学模式 教学预设 教学实施
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五相内置式永磁电机单相开路低转矩脉动容错控制
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作者 周鹏 覃一泓 +2 位作者 梁锦华 陈曦 许海平 《电机与控制学报》 北大核心 2026年第1期84-94,共11页
针对五相内置式永磁同步电机发生单相开路故障时转矩输出能力降低以及转矩脉动变大的问题,提出了基于永磁转矩脉动为零的开路容错矢量控制策略。首先,构建故障后的降阶解耦变换矩阵,建立同步坐标系下的电机模型。其次,根据故障前后磁动... 针对五相内置式永磁同步电机发生单相开路故障时转矩输出能力降低以及转矩脉动变大的问题,提出了基于永磁转矩脉动为零的开路容错矢量控制策略。首先,构建故障后的降阶解耦变换矩阵,建立同步坐标系下的电机模型。其次,根据故障前后磁动势不变的原则,建立基于降阶解耦变换的容错矢量控制策略,并推导出使转矩脉动为零的电流约束方程组;分析表明,使得转矩脉动严格为零的方程组无解;通过比较可知,永磁转矩脉动比磁阻转矩脉动大,因此选择使永磁转矩脉动为零的容错控制策略,并在此基础上求解使输出转矩平均值最大化的容错电流。最后,对所提控制策略进行仿真及实验验证,实验结果表明该方法能够改善电机剩余健康相电流的对称性,电流有效值的平均值下降22.21%,电机的转矩脉动下降53%,提升了故障状态下的转矩输出能力。 展开更多
关键词 单相开路故障 降阶解耦变换 容错矢量控制 转矩脉动抑制 五相内置式永磁同步电机
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角接五相电机单相开路故障零序环流抑制方法
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作者 周亚蒙 田兵 +1 位作者 谭强 王涛 《电力工程技术》 北大核心 2026年第2期60-69,共10页
角接五相电机在单相绕组开路故障下存在典型零序环流,会引起相电流畸变和转矩波动等问题。为此,文中提出一种近似线性化控制方法,并结合比例-积分(proportional-integral,PI)控制实现对交变零序环流的有效抑制。首先,基于现有的星接五... 角接五相电机在单相绕组开路故障下存在典型零序环流,会引起相电流畸变和转矩波动等问题。为此,文中提出一种近似线性化控制方法,并结合比例-积分(proportional-integral,PI)控制实现对交变零序环流的有效抑制。首先,基于现有的星接五相电机容错控制模型,通过增设绕组相电流和电压的变换矩阵,给出一种角接五相电机的容错解耦控制方案;然后,推导零序环流和零序电磁转矩的非线性数学模型,并依据位置角度细分方法将非线性零序模型近似线性化,结合多维度PI控制器实现零序环流抑制;最后,进行仿真验证。实验结果表明,零序环流在未抑制前呈现具有一定幅值且基频波动的交流特性,在实行抑制方法之后,零序环流近乎为0。相电流由抑制前的严重失衡和幅值过大状态转变为正常状态,转矩波动问题也明显改善。因此,在角接五相电机发生单相开路故障时,可以使用主动抑制零序环流的容错控制方法改善相电流畸变和转矩波动问题。 展开更多
关键词 角接五相电机 容错控制 零序环流 近似线性化 比例-积分(PI)控制 矢量控制
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五运六气理论在疾病预测模型中的研究进展
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作者 李佩洋 郭宇祺 张真 《中国民族民间医药》 2026年第3期71-74,共4页
五运六气理论是中医学的重要组成部分。近年来,随着“未病先防”理念的传播,五运六气理论在疾病防治中的价值逐渐得到重视。通过梳理相关文献,文章整理了五运六气理论的历史发展过程,分析了构建五运六气理论模型的必要性及其特点,并总... 五运六气理论是中医学的重要组成部分。近年来,随着“未病先防”理念的传播,五运六气理论在疾病防治中的价值逐渐得到重视。通过梳理相关文献,文章整理了五运六气理论的历史发展过程,分析了构建五运六气理论模型的必要性及其特点,并总结了五运六气疾病预测模型在传染性疾病、心血管疾病、呼吸系统疾病、消化系统疾病和内伤杂病及其他方面中的应用。此外,还对五运六气理论的研究价值及难点进行讨论,为五运六气理论在临床的深入研究提供参考。 展开更多
关键词 五运六气 运气学说 综述
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