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The Implementation of a High Efficiency Full-Bridge Converter
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作者 Joy Iong-Zong Chen 《Engineering(科研)》 2011年第4期331-339,共9页
A high efficiency full-bridge converter is investigated and implemented in this paper. The measured data result from the other converter implemented by IC UCC3895 is to compare with that of the previous converter. Thi... A high efficiency full-bridge converter is investigated and implemented in this paper. The measured data result from the other converter implemented by IC UCC3895 is to compare with that of the previous converter. This full-bridge converter proposed and implemented converter can obtain about 96% power efficiency in conversion procedure when compared with that of 90%, which were ever published by the conventional techniques. Apart from, the L-C resonance circuits were developed and embedded into the popular PWM (pulse width modulation) power converter, which is referred as the soft-switching, so as to down sizing the volume of the IC which can totally reduces the power losses caused in the duration of a semi-con- ductor switching. 展开更多
关键词 high efficiency full-bridge converter SWITCHING LOSSES SYNCHRONIZATION FILTER
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ANovel Non-Isolated Cubic DC-DC Converter with High Voltage Gain for Renewable Energy Power Generation System
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作者 Qin Yao Yida Zeng Qingui Jia 《Energy Engineering》 EI 2024年第1期221-241,共21页
In recent years,switched inductor(SL)technology,switched capacitor(SC)technology,and switched inductor-capacitor(SL-SC)technology have been widely applied to optimize and improve DC-DC boost converters,which can effec... In recent years,switched inductor(SL)technology,switched capacitor(SC)technology,and switched inductor-capacitor(SL-SC)technology have been widely applied to optimize and improve DC-DC boost converters,which can effectively enhance voltage gain and reduce device stress.To address the issue of low output voltage in current renewable energy power generation systems,this study proposes a novel non-isolated cubic high-gain DC-DC converter based on the traditional quadratic DC-DC boost converter by incorporating a SC and a SL-SC unit.Firstly,the proposed converter’s details are elaborated,including its topology structure,operating mode,voltage gain,device stress,and power loss.Subsequently,a comparative analysis is conducted on the voltage gain and device stress between the proposed converter and other high-gain converters.Then,a closed-loop simulation system is constructed to obtain simulation waveforms of various devices and explore the dynamic performance.Finally,an experimental prototype is built,experimental waveforms are obtained,and the experimental dynamic performance and conversion efficiency are analyzed.The theoretical analysis’s correctness is verified through simulation and experimental results.The proposed converter has advantages such as high voltage gain,low device stress,high conversion efficiency,simple control,and wide input voltage range,achieving a good balance between voltage gain,device stress,and power loss.The proposed converter is well-suited for renewable energy systems and holds theoretical significance and practical value in renewable energy applications.It provides an effective solution to the issue of low output voltage in renewable energy power generation systems. 展开更多
关键词 Cubic DC-DC converter high voltage gain low device stress high efficiency renewable energy
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Design of High Efficiency DC-DC Converter for Photovoltaic Solar Home Applications
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作者 D.R. Sulaiman H.F. Ameen I.K. Said 《Journal of Energy and Power Engineering》 2010年第11期43-51,共9页
The solar energy conversion system is very interesting alternative on supplement the electric system generation, due to the persistent cost reduction of the overall system and cleaner power generation. To obtain a sta... The solar energy conversion system is very interesting alternative on supplement the electric system generation, due to the persistent cost reduction of the overall system and cleaner power generation. To obtain a stable voltage from an input supply (PV cells) that is higher and lower than the output, a high efficiency and minimum ripple DC-DC converter required in the system for residential power production. Buck-boost converters make it possible to efficiently convert a DC voltage to either a lower or higher voltages. Buck-boost converters are especially useful for PV maximum power tracking purposes, where the objective is to draw maximum possible power from solar panels at all times, regardless of the load. This paper analyzes and describes step by step the process of designing, and simulation of high efficiency low ripple voltage buck-boost DC-DC converter for the photovoltaic solar conversion system applicable to a (typical) single family home based on battery-based systems. The input voltage can typically change from (20 V) initially, down to (5 V), and provide a regulated voltage within the range of the battery (12 V). PLECS simulation results provide strong evidences about the high efficiency, minimum ripple voltage, high accuracy, and the usefulness of the system of the proposed converter when applied to either residential or solar home applications. 展开更多
关键词 Solar systems DC-DC converter design high efficiency and minimum ripple voltage Buck-Boost converter PLECSsimulation software.
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A high performance adaptive on-time controlled valley-current-mode DC–DC buck converter 被引量:3
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作者 Chanrong Jiang Changchun Chai +1 位作者 Chenxi Han Yintang Yang 《Journal of Semiconductors》 EI CAS CSCD 2020年第6期48-55,共8页
This paper presents an AOT-controlled(adaptive-on-time,AOT)valley-current-mode buck converter for portable application.The buck converter with synchronous rectifier not only uses valley-current-mode control but also p... This paper presents an AOT-controlled(adaptive-on-time,AOT)valley-current-mode buck converter for portable application.The buck converter with synchronous rectifier not only uses valley-current-mode control but also possesses hybridmode control functions at the same time.Due to the presence of the zero-current detection circuit,the converter can switch freely between the two operating modes without the need for an external mode selection circuit,which further reduces the design difficulty and chip area.The converter for the application of high power efficiency and wide current range is used to generate the voltage of 0.6–3.0 V with a battery source of 3.3–5.0 V,while the load current range is 0.05–2 A.The circuit can work in continuous conduction mode with constant frequency in high load current range.In addition,a stable output voltage can be obtained with small voltage ripple.In pace with the load current decreases to a critical value,the converter transforms into the discontinuous conduction mode smoothly.As the switching period increases,the switching loss decreases,which can significantly improve the conversion efficiency.The proposed AOT controlled valley current mode buck converter is integrated with standard 0.18μm process and the simulation results show that the converter provides well-loaded regulations with power efficiency over 95%.When the circuit switches between the two conduction modes drastically,the response time can be controlled within 30μs.The undershoot voltage is controlled within 25 mV under a large current hopping range. 展开更多
关键词 adaptive on-time buck converter fast response constant frequency high efficiency
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Design of a 10 kV SiC MOSFET-based high-density, high-efficiency, modular medium-voltage power converter
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作者 Slavko Mocevic Jianghui Yu +15 位作者 Boran Fan Keyao Sun Yue Xu Joshua Stewart Yu Rong He Song Vladimir Mitrovic Ning Yan Jun Wang Igor Cvetkovic Rolando Burgos Dushan Boroyevich Christina DiMarino Dong Dong Jayesh Kumar Motwani Richard Zhang 《iEnergy》 2022年第1期100-113,共14页
Simultaneously imposed challenges of highvoltage insulation,high dv/dt,highswitching frequency,fast protection,and thermal management associated with the adoption of 10 kV SiC MOSFET,often pose nearly insurmountable b... Simultaneously imposed challenges of highvoltage insulation,high dv/dt,highswitching frequency,fast protection,and thermal management associated with the adoption of 10 kV SiC MOSFET,often pose nearly insurmountable barriers to potential users,undoubtedly hindering their penetration in mediumvoltage(MV)power conversion.Key novel technologies such as enhanced gatedriver,auxiliary power supply network,PCB planar dcbus,and highdensity inductor are presented,enabling the SiCbased designs in modular MV converters,overcoming aforementioned challenges.However,purely substituting SiC design instead of Sibased ones in modular MV converters,would expectedly yield only limited gains.Therefore,to further elevate SiCbased designs,novel highbandwidth control strategies such as switchingcycle control(SCC)and integrated capacitorblocked transistor(ICBT),as well as highperformance/highbandwidth communication network are developed.All these technologies combined,overcome barriers posed by stateoftheart Si designs and unlock system level benefits such as very high power density,highefficiency,fast dynamic response,unrestricted line frequency operation,and improved power quality,all demonstrated throughout this paper. 展开更多
关键词 SiC MOSFET modular multilevel converter(MMC) switching-cycle control(SCC) integrated capacitor-blocked transistor(ICBT) PEBB medium-voltage(MV) high density high efficiency
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Tunable circularly-polarized turnstile-junction mode converter for high-power microwave applications
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作者 Xiao-Yu Wang Yu-Wei Fan +2 位作者 Ting Shu Cheng-Wei Yuan Qiang Zhang 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第6期502-506,共5页
Frequency tunability has become a subject of concern in the field of high-power microwave(HPM) source research.However, little information about the corresponding mode converter is available. A tunable circularly-po... Frequency tunability has become a subject of concern in the field of high-power microwave(HPM) source research.However, little information about the corresponding mode converter is available. A tunable circularly-polarized turnstilejunction mode converter(TCTMC) for high-power microwave applications is presented in this paper. The input coaxial TEM mode is transformed into TE(10) mode with different phase delays in four rectangular waveguides and then converted into a circularly-polarized TE(11) circular waveguide mode. Besides, the rods are added to reduce or even eliminate the reflection. The innovations in this study are as follows. The tunning mechanism is added to the mode converter, which can change the effective length of rectangular waveguide and the distance between the rods installed upstream and the closest edge of the rectangular waveguide, thus improving the conversion efficiency and bandwidth. The conversion efficiency of TCTMC can reach above 98% over the frequency range of 1.42 GHz–2.29 GHz, and the frequency tunning bandwidth is about 47%. Significantly, TCTMC can obtain continuous high conversion efficiency of different frequency points with the change of tuning mechanism. 展开更多
关键词 mode converter high conversion efficiency frequency tuning performance
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Numerical simulation of the flow field of a flat torque converter 被引量:6
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作者 闫清东 刘城 魏巍 《Journal of Beijing Institute of Technology》 EI CAS 2012年第3期309-314,共6页
A flexible flat torque converter was proposed to fulfill the requirement of miniaturization and power density maximization for automobiles.Constructed by two arcs joined by lines,the torus was designed directly from d... A flexible flat torque converter was proposed to fulfill the requirement of miniaturization and power density maximization for automobiles.Constructed by two arcs joined by lines,the torus was designed directly from design path.The influence of flatness on the performance of the torque converter was evaluated.The software CFX and standard k-ε model were adopted to simulate the internal flow fields of the torque converter under different flatness ratios.The results indicated that the performance of the torque converter got worse as the flatness declined,but the capacity of pump increased.The efficiency and the torque ratio dropped slightly as the flatness ratio decreased.So the torque converter could be squashed appropriately to get high power density without too much efficiency sacrifice.But when the flatness ratio was below 0.2,there was a significant drop in the efficiency. 展开更多
关键词 torque converter 3D flow simulation flatness ratio efficiency high power density
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一种星载高效率电源的样机研制
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作者 陈善华 徐国林 +3 位作者 蒋华 花韬 郭博 杜长雷 《现代雷达》 CSCD 北大核心 2024年第5期104-108,共5页
针对星载合成孔径雷达电源高效率抗辐射的需求,对适用于星载领域的各种电源拓朴结构进行了对比分析,提出一种同步整流正激变换器拓扑方案。该方案采用单管栅极电荷保持驱动拓扑,解决了变压器死区时间续流管驱动问题,并对电路原理以及抗... 针对星载合成孔径雷达电源高效率抗辐射的需求,对适用于星载领域的各种电源拓朴结构进行了对比分析,提出一种同步整流正激变换器拓扑方案。该方案采用单管栅极电荷保持驱动拓扑,解决了变压器死区时间续流管驱动问题,并对电路原理以及抗辐射加固方法进行详细说明,给出电路组成、关键器件和参数计算方法。根据所提方案制作了一台输入50 V~70 V、输出5 V/6 A的样机。实验结果表明:该电源具有高效率和抗辐射的特点,验证了技术方案的准确性,可以满足星载电源的需求。 展开更多
关键词 正激变换器 同步整流 抗辐射 高效率
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高频链AC-DC矩阵变换器的变控制频率软开关调制策略
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作者 梅杨 魏铮 +1 位作者 刘璟琳 鲁乔初 《电机与控制学报》 EI CSCD 北大核心 2024年第4期158-166,共9页
针对高频链AC-DC矩阵变换器的高效率要求,提出了一种变控制频率软开关调制策略。该调制策略在基于零矢量嵌入的分段同步控制策略基础上,以单控制周期平均功率不变为原则,通过改变控制周期长度,并调整一个控制周期内的电压矢量排布,优化... 针对高频链AC-DC矩阵变换器的高效率要求,提出了一种变控制频率软开关调制策略。该调制策略在基于零矢量嵌入的分段同步控制策略基础上,以单控制周期平均功率不变为原则,通过改变控制周期长度,并调整一个控制周期内的电压矢量排布,优化脉冲宽度,使变换器在换流时全部开关器件的零电压开通成为可能。通过仿真分析和实验证明,采用本文提出的变控制频率调制策略,变换器在整流和逆变模式下,均可实现网侧电流三相平衡正弦,功率因数达到0.981,输出电压纹波小,最高效率达到96.9%,实现了高性能、高效率运行。 展开更多
关键词 AC-DC变换器 高效率 软开关 移相控制 控制周期
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高频双频Buck变换器平面集成磁件优化设计
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作者 高圣伟 于冠恒 赵虹宇 《天津工业大学学报》 CAS 北大核心 2024年第3期66-74,共9页
针对目前开关器件和磁性元件性能不足导致双频Buck变换器的效率和功率密度低的问题,研究了一种高效高功率密度的双频Buck变换器。变换器将工作在连续导通(CCM)模式,采用解耦合的平面集成电感器完成系统磁元件的集成,结合磁件的集成方法... 针对目前开关器件和磁性元件性能不足导致双频Buck变换器的效率和功率密度低的问题,研究了一种高效高功率密度的双频Buck变换器。变换器将工作在连续导通(CCM)模式,采用解耦合的平面集成电感器完成系统磁元件的集成,结合磁件的集成方法、有限的PCB层数和变换器的特性给出双频Buck变换器的参数,然后,提出了一种双频Buck变换器平面磁件的设计方法,并完成系统磁元件的优化设计。最后,基于第3代半导体SiC器件以及平面集成磁件,设计了额定功率200 W、开关频率400 kHz的双频Buck变换器。结果表明:该变换器峰值效率将达到96.1%,功率密度为46.1 W/in^(3)(1 in=25.4 mm),验证了双频Buck变换器设计方法的正确性和有效性。 展开更多
关键词 双频BUCK变换器 平面磁件 高频高效高功率密度 SIC器件
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一种组合式宽输入高效率DC-DC变换器 被引量:1
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作者 李劲晖 贲洪奇 +1 位作者 朱俊函 宁继超 《电机与控制学报》 EI CSCD 北大核心 2024年第3期13-23,共11页
针对车载DC-DC变换器输入电压变化范围大的问题,提出一种组合式宽输入高效率DC-DC变换器。该变换器包括飞跨电容(FC)型三电平Buck电路和LLC谐振电路两部分,FC三电平Buck电路输出端口与LLC谐振电路输入端口串联,通过控制FC三电平Buck电... 针对车载DC-DC变换器输入电压变化范围大的问题,提出一种组合式宽输入高效率DC-DC变换器。该变换器包括飞跨电容(FC)型三电平Buck电路和LLC谐振电路两部分,FC三电平Buck电路输出端口与LLC谐振电路输入端口串联,通过控制FC三电平Buck电路占空比实现输出电压调节以适应宽输入电压范围,同时三电平结构降低了开关管电压应力、减小了损耗;LLC谐振电路传输负载所需全部功率,采用定频开环控制以获得高效率和稳定增益,同时实现了电气隔离。详细分析了组合式变换器的拓扑结构、直流增益以及工作效率,并与相同电路构成的级联式变换器进行了效率特性对比,根据组合式变换器的拓扑结构和工作特性,提出一种解耦控制策略,实现输出电压稳定和飞跨电容电压平衡,最后搭建了一个200~400 V输入、12 V/20 A输出的实验电路进行验证,实验结果表明所提组合式变换器的正确性和可行性。 展开更多
关键词 组合式变换器 飞跨电容型三电平Buck LLC 宽输入电压范围 高效率 解耦控制
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基于平面磁元件的LLC变换器相关参数的整体优化设计方法
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作者 周子航 高祎韩 +2 位作者 刘懿静 张欣 马皓 《电工技术学报》 EI CSCD 北大核心 2024年第15期4820-4829,4895,共11页
平面磁心和印制电路板(PCB)绕组的可定制化设计和可重复性制造,为进一步提高LLC变换器的效率和功率密度提供条件。对于工作频率、谐振腔参数、平面磁元件尺寸等数量多、连续性强、对变换器整体效率影响存在耦合关系的设计参数,采用传统... 平面磁心和印制电路板(PCB)绕组的可定制化设计和可重复性制造,为进一步提高LLC变换器的效率和功率密度提供条件。对于工作频率、谐振腔参数、平面磁元件尺寸等数量多、连续性强、对变换器整体效率影响存在耦合关系的设计参数,采用传统的分步优化设计方法难以实现变换器最高整体效率。为此该文提出一种基于平面磁元件的LLC变换器工作频率、谐振腔参数和平面磁元件尺寸的整体优化设计方法,在满足实际工程要求的前提下,以实现理论最高峰值效率为目标,可进一步得到全局最优的设计参数。基于此方法设计一台3 kW高效率、高密度LLC变换器,并进行了实验验证。实验结果表明:变换器功率密度510 W/in^(3)(1in3=1.63871×10^(-5) m^(3)),峰值效率99.0%,满载效率98.3%,与所提出的设计方法得到的理论结果接近,证明了该设计方法的正确性和有效性。 展开更多
关键词 LLC变换器 平面磁元件 参数设计 高效率
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宽增益高效谐振型直流变换器技术
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作者 龚春阳 夏潇 +5 位作者 包俊 郑建 陈辉 陈晓琳 王志新 黄冬梅 《电力系统保护与控制》 EI CSCD 北大核心 2024年第1期133-144,共12页
直流变换器广泛应用于电动汽车充电系统与光伏发电系统,如何适应输入/输出电压大范围变化,实现直流变换器的宽增益和高传输效率为学术界和工业界所关注。其中,LLC、LLC_LC、LLCLC谐振变换器虽具有高功率密度、低电磁干扰等特性,但存在... 直流变换器广泛应用于电动汽车充电系统与光伏发电系统,如何适应输入/输出电压大范围变化,实现直流变换器的宽增益和高传输效率为学术界和工业界所关注。其中,LLC、LLC_LC、LLCLC谐振变换器虽具有高功率密度、低电磁干扰等特性,但存在磁元件与谐振网络参数设计难度大,造成变换器输出不稳定等不足,难以满足实际应用的要求。为此,提出了宽增益高效谐振型直流变换器技术。首先总结了谐振型直流变换器的基本原理,围绕其拓扑结构及调制策略的国内外研究进展,重点就宽增益与高效谐振型直流变换器应用需求进行阐述。然后分析了LLC_LC、LLCLC多模式PWM倍压整流变换器拓扑及调制策略。最后结合仿真与实验验证结果,证明了该宽增益高效谐振型直流变换器拓扑及其调制策略的有效性,最高可实现输出电压范围为1~6.2,转换效率达96.1%,具有较宽广的应用前景。 展开更多
关键词 谐振变换器 宽增益 高效率 拓扑结构 调制策略
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基于超表面的交叉极化转换器设计 被引量:1
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作者 张胜 曹为为 +3 位作者 解鑫 李大妮 于梦杰 程德强 《电子元件与材料》 CAS 北大核心 2024年第2期223-229,共7页
针对目前对极化转换器高性能的需求,提出了一种新型的反射型交叉极化转换器。基于超表面结构,极化转换器由顶层周期排列的金属图案、中间介质板和金属底板三部分组成。研究表明,在9.38~23.78 GHz频率范围内,该结构可实现极化转换率(Pola... 针对目前对极化转换器高性能的需求,提出了一种新型的反射型交叉极化转换器。基于超表面结构,极化转换器由顶层周期排列的金属图案、中间介质板和金属底板三部分组成。研究表明,在9.38~23.78 GHz频率范围内,该结构可实现极化转换率(Polarization Conversion Ratio,PCR)高于95%的交叉极化转换,其中四个谐振峰处极化转换率接近100%。此外,转换带宽为14.4 GHz,相对带宽为86.9%。该结构简单、损耗小、成本低、易于加工与集成,在微波通信、测量和成像等领域有广泛的应用前景。 展开更多
关键词 超表面 极化转换器 交叉极化 超宽带 高效率
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基于MMC与LPA的混合功率放大器研究
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作者 万民 《舰船电子工程》 2024年第7期92-96,132,共6页
论文研究了一种基于模块化多电平变换器(MMC)和线性功率放大器(LPA)的混合功率放大器(HPA)的拓扑结构及其控制策略。混合功率放大器可以直接与高压直流电源相连,并易于进行容量拓展,可靠性高。为提升混合功率放大器的工作效率和保真度,... 论文研究了一种基于模块化多电平变换器(MMC)和线性功率放大器(LPA)的混合功率放大器(HPA)的拓扑结构及其控制策略。混合功率放大器可以直接与高压直流电源相连,并易于进行容量拓展,可靠性高。为提升混合功率放大器的工作效率和保真度,建立了系统综合电路模型,分析了影响功率放大器输出性能的主要因素,提出了相应的控制方法,并给出了控制系统的设计方案。最后通过仿真验证了混合拓扑的可行性和控制方法的正确性,其输出电压波形良好,实现了兼顾高效率和高保真的目的。 展开更多
关键词 混合功率放大器 模块化多电平变换器 线性功率放大器 高保真 高效率
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大功率LLC变换器的谐振参数优化设计
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作者 李练兵 张金龙 +3 位作者 谢朋朋 何桂欣 梁纪峰 王阳 《电测与仪表》 北大核心 2024年第1期71-76,共6页
LLC变换器具有实现原边零电压开通和副边零电流关断的软开关特性,其功率密度高,在车载电源、LED等领域被广泛应用。但LLC谐振变换器由于工作的复杂性,导致谐振参数缺乏一种有效且明确的设计方法。论文基于基波近似法(first harmonic app... LLC变换器具有实现原边零电压开通和副边零电流关断的软开关特性,其功率密度高,在车载电源、LED等领域被广泛应用。但LLC谐振变换器由于工作的复杂性,导致谐振参数缺乏一种有效且明确的设计方法。论文基于基波近似法(first harmonic approximation,FHA)对传统的增益公式进一步化简,提出了一种简单明确的谐振参数设计方法。为了验证此方法设计的参数最优性,制作了一台7.5 kW的实验样机。输出电压范围为100 V~375 V,而且可在200 V~375 V的电压范围内实现7.5 kW的恒功率输出,整机平均效率达到95%以上,峰值效率可达到96.7%。实验结果表明,提出的参数设计方法可最大化地提高变换器效率。 展开更多
关键词 LLC谐振变换器 充电模块 谐振参数设计 高效率
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宽输出高效率双制式隔离升降压变换器的研究
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作者 朱友远 李海洋 +1 位作者 刘丽坤 何浩 《电力电子技术》 2024年第7期68-72,共5页
为了满足新能源领域双制式、大功率、宽输出范围、高效率、高频隔离变换器的需求,提出了一种新型升降压拓扑结构。首先从宽范围输出和高效率设计两个方面对拓扑进行了设计,其次从控制稳定性角度对控制策略进行了分析,然后对拓扑进行了... 为了满足新能源领域双制式、大功率、宽输出范围、高效率、高频隔离变换器的需求,提出了一种新型升降压拓扑结构。首先从宽范围输出和高效率设计两个方面对拓扑进行了设计,其次从控制稳定性角度对控制策略进行了分析,然后对拓扑进行了仿真验证,最后搭建了一台工程化样机进行了试验验证,验证了理论设计的正确性和拓扑的有效性。 展开更多
关键词 变换器 双制式 高效率
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一种双频高效率滤波功率放大器设计
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作者 魏正华 叶小兰 《空天预警研究学报》 CSCD 2024年第4期304-308,共5页
为了解决无线终端难以选择无线工作频率发射信号以及发射机对带外信号抑制不足的难题,设计一种具有二次谐波抑制的双频高效率滤波功率放大器,提出了双功能双频阻抗控制器和双频滤波阻抗变换器的结构及设计方法,通过解析计算方式获取了... 为了解决无线终端难以选择无线工作频率发射信号以及发射机对带外信号抑制不足的难题,设计一种具有二次谐波抑制的双频高效率滤波功率放大器,提出了双功能双频阻抗控制器和双频滤波阻抗变换器的结构及设计方法,通过解析计算方式获取了该结构的全部设计参数.电磁仿真结果表明,工作频率为1.785GHz和2.415GHz的输出功率分别为40.8dBm和40.1dBm,漏极效率分别为62.9%和60.8%,增益分别为10.8dB和10.1dB,在二次谐波频率3.57GHz和4.83GHz的抑制分别达到43.7dBc和69.7dBc. 展开更多
关键词 双频 阻抗变换器 高效率 谐波控制 功率放大器
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便携式XRF能谱仪中锂离子电池恒压转换器的研究
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作者 杨博赞 倪子月 王英倩 《电子技术应用》 2024年第1期109-112,共4页
便携式XRF能谱仪采用锂离子电池供电,锂离子电池放电过程中,输出电压随时间逐渐减小,影响能谱仪检测结果。为消除该不利影响,采用Buck-Boost拓扑结构,基于LTC3789设计宽输入范围、高转换效率的恒压转换器,将锂离子电池转换为恒电压输出... 便携式XRF能谱仪采用锂离子电池供电,锂离子电池放电过程中,输出电压随时间逐渐减小,影响能谱仪检测结果。为消除该不利影响,采用Buck-Boost拓扑结构,基于LTC3789设计宽输入范围、高转换效率的恒压转换器,将锂离子电池转换为恒电压输出。详细介绍了恒压转换器的设计过程,并对其功能和效率进行实验,结果表明:该恒压转换器输出电压稳定,转换效率高,满足使用要求。 展开更多
关键词 恒压转换器 LTC3789 Buck-Boost拓扑 宽输入范围 高转换效率
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A reflecting-type highly efficient terahertz cross-polarization converter based on metamaterials 被引量:3
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作者 Xiaoqing Luo Zhiyong Tan +1 位作者 Chang Wang Juncheng Cao 《Chinese Optics Letters》 SCIE EI CAS CSCD 2019年第9期101-104,共4页
We propose and experimentally demonstrate a wideband linear polarization converter in a reflection mode operating from 2.4 to 4.2 THz with conversion efficiency of more than 80%. Our device can expand the applications... We propose and experimentally demonstrate a wideband linear polarization converter in a reflection mode operating from 2.4 to 4.2 THz with conversion efficiency of more than 80%. Our device can expand the applications to a higher frequency band. A numerical simulation is performed for this metamaterial converter, which shows a good agreement with experimental results. Importantly, a concise and intuitive calculating model is proposed for the Fabry–Pérot cavity. The theoretical results indicate that the underlying reason for the enhanced polarization conversion is the additional phase difference induced by the resonance of the meta-structure and multiple reflections within the Fabry–Pérot cavity. 展开更多
关键词 reflecting-type highly efficient TERAHERTZ CROSS-POLARIZATION converter METAMATERIALS
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