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Design and validation of RLC equivalent circuit model based on long-wave infrared metamaterial absorber
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作者 ZHAO Ji-Cong DANG Yan-Meng +3 位作者 HOU Hai-Yang LIN Ye-Fan SUN Hai-Yan ZHANG Kun 《红外与毫米波学报》 北大核心 2025年第1期129-137,共9页
In this paper,we propose an RLC equivalent circuit model theory which can accurately predict the spectral response and resonance characteristics of metamaterial absorption structures,extend its design,and characterize... In this paper,we propose an RLC equivalent circuit model theory which can accurately predict the spectral response and resonance characteristics of metamaterial absorption structures,extend its design,and characterize the parameters of the model in detail.By employing this model,we conducted computations to characterize the response wavelength and bandwidth of variously sized metamaterial absorbers.A comparative analysis with Finite Difference Time Domain(FDTD)simulations demonstrated a remarkable level of consistency in the results.The designed absorbers were fabricated using micro-nano fabrication processes,and were experimentally tested to demonstrate absorption rates exceeding 90%at a wavelength of 9.28μm.The predicted results are then compared with test results.The comparison reveals good consistency in two aspects of the resonance responses,thereby confirming the rationality and accuracy of this model. 展开更多
关键词 METAMATERIAL surface plasmons magnetic dipoles RLC circuit model
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Coherence-protected operations in hybrid superconducting circuit-magnon system
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作者 Le-Tian Zhu Xing-Yu Zhu +2 位作者 Zhu-Cheng Yue Tao Tu Chuan-Feng Li 《Chinese Physics B》 2025年第3期251-257,共7页
Hybrid systems consisting of superconducting circuits and magnon systems are a promising platform for quantum technology.However,realizing high-fidelity magnon state preparation and manipulation remains an outstanding... Hybrid systems consisting of superconducting circuits and magnon systems are a promising platform for quantum technology.However,realizing high-fidelity magnon state preparation and manipulation remains an outstanding challenge due to the complexity of interactions and noise sources in hybrid systems.Here,we propose a coherence-preserving magnon state manipulation scheme.By engineering a superconducting-magnon coupling pulse and combining it with dynamical decoupling pulses,we design a composite pulse sequence.We demonstrate the manipulation and preparation of non-classical states of magnons with a fidelity of up to 98%under realistic conditions.These designs significantly improve the fidelity of manipulation and robustness to noise in hybrid systems compared to existing schemes.These results pave the way for practical applications of quantum magnonics platforms. 展开更多
关键词 circuit QED quantum information with hybrid systems entanglement production
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Interplay between topology and localization on superconducting circuits
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作者 关欣 霍炳燕 陈刚 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第6期240-246,共7页
Topological insulators occupy a prominent position in the realm of condensed matter physics. Nevertheless, the presence of strong disorder has the potential to disrupt the integrity of topological states, leading to t... Topological insulators occupy a prominent position in the realm of condensed matter physics. Nevertheless, the presence of strong disorder has the potential to disrupt the integrity of topological states, leading to the localization of all states.This study delves into the intricate interplay between topology and localization within the one-dimensional Su–Schrieffer–Heeger(SSH) model, which incorporates controllable off-diagonal quasi-periodic modulations on superconducting circuits.Through the application of external alternating current(ac) magnetic fluxes, each transmon undergoes controlled driving,enabling independent tuning of all coupling strengths. Within a framework of this model, we construct comprehensive phase diagrams delineating regions characterized by extended topologically nontrivial states, critical localization, and coexisting topological and critical localization phases. The paper also addresses the dynamics of qubit excitations, elucidating distinct quantum state transfers resulting from the intricate interplay between topology and localization. Additionally, we propose a method for detecting diverse quantum phases utilizing existing experimental setups. 展开更多
关键词 TOPOLOGY LOCALIZATION superconducting circuits
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In-situ deposited anti-aging TiN capping layer for Nb superconducting quantum circuits
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作者 Hao-Ran Tao Lei Du +8 位作者 Liang-Liang Guo Yong Chen Hai-Feng Zhang Xiao-Yan Yang Guo-Liang Xu Chi Zhang Zhi-Long Jia Peng Duan Guo-Ping Guo 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第9期133-137,共5页
The performance of Nb superconducting quantum devices is predominantly limited by dielectric loss at the metal–air interface,where Nb2O5 is considered the main loss source.Here,we suppress the formation of native oxi... The performance of Nb superconducting quantum devices is predominantly limited by dielectric loss at the metal–air interface,where Nb2O5 is considered the main loss source.Here,we suppress the formation of native oxides by in-situ deposition of a TiN capping layer on the Nb film.With TiN capping layers,no Nb2O5 forms on the surface of the Nb film.The quality factor Qi of the Nb resonator increases from 5.6×10^(5) to 7.9×10^(5) at low input power and from 6.8×10^(6) to 1.1×10^(7)at high input power.Furthermore,the TiN capping layer also shows good aging resistance in Nb resonator devices,with no significant performance fluctuations after one month of aging.These findings highlight the effectiveness of TiN capping layers in enhancing the performance and longevity of Nb superconducting quantum devices. 展开更多
关键词 ANTI-AGING oxidation dielectric loss Nb superconducting quantum circuits
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The circuitry landscape of perovskite solar cells:An in-depth analysis
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作者 Siddhi Vinayak Pandey Daniel Prochowicz +4 位作者 Apurba Mahapatra Saravanan Pandiaraj Abdullah N.Alodhayb Seckin Akin Pankaj Yadav 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第7期393-413,共21页
The extensive research and development in perovskite solar cells (PSCs) have rekindled the hopes of converting solar energy into electricity.An elusive understanding of underlying mechanisms is required for the develo... The extensive research and development in perovskite solar cells (PSCs) have rekindled the hopes of converting solar energy into electricity.An elusive understanding of underlying mechanisms is required for the development of efficient PSCs.Over the years,Impedance Spectroscopy (IS) characterization,along with complementary techniques,has proven to be an effective way to understand and analyze the charge transport and recombination at interface and bulk of PSCs.The IS of PSCs have been analyzed,interpreted,and improvised continuously,revealing intricate details about the work.However,there is a lack of centralized source of these details,which make it tougher to account for the generalized approach to understand the device properties.The present work is focused on compiling the research done on various PSC device architectures via IS to construct a comprehensive foundation of information on impedance plots,equivalent circuits,and associated processes. 展开更多
关键词 Impedance Spectroscopy Perovskite solar cells Equivalent circuits
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Correction of microwave pulse reflection by digital filters in superconducting quantum circuits
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作者 Liang-Liang Guo Peng Duan +9 位作者 Lei Du Hai-Feng Zhang Hao-Ran Tao Yong Chen Xiao-Yan Yang Chi Zhang Zhi-Long Jia Wei-Cheng Kong Zhao-Yun Chen Guo-Ping Guo 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第9期117-123,共7页
Reducing the control error is vital for high-fidelity digital and analog quantum operations.In superconducting circuits,one disagreeable error arises from the reflection of microwave signals due to impedance mismatch ... Reducing the control error is vital for high-fidelity digital and analog quantum operations.In superconducting circuits,one disagreeable error arises from the reflection of microwave signals due to impedance mismatch in the control chain.Here,we demonstrate a reflection cancelation method when considering that there are two reflection nodes on the control line.We propose to generate the pre-distortion pulse by passing the envelopes of the microwave signal through digital filters,which enables real-time reflection correction when integrated into the field-programmable gate array(FPGA).We achieve a reduction of single-qubit gate infidelity from 0.67%to 0.11%after eliminating microwave reflection.Real-time correction of microwave reflection paves the way for precise control and manipulation of the qubit state and would ultimately enhance the performance of algorithms and simulations executed on quantum processors. 展开更多
关键词 reflection cancelation digital filter single-qubit gate superconducting circuit
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Quantum algorithm for minimum dominating set problem with circuit design
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作者 张皓颖 王绍轩 +2 位作者 刘新建 沈颖童 王玉坤 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第2期178-188,共11页
Using quantum algorithms to solve various problems has attracted widespread attention with the development of quantum computing.Researchers are particularly interested in using the acceleration properties of quantum a... Using quantum algorithms to solve various problems has attracted widespread attention with the development of quantum computing.Researchers are particularly interested in using the acceleration properties of quantum algorithms to solve NP-complete problems.This paper focuses on the well-known NP-complete problem of finding the minimum dominating set in undirected graphs.To expedite the search process,a quantum algorithm employing Grover’s search is proposed.However,a challenge arises from the unknown number of solutions for the minimum dominating set,rendering direct usage of original Grover’s search impossible.Thus,a swap test method is introduced to ascertain the number of iterations required.The oracle,diffusion operators,and swap test are designed with achievable quantum gates.The query complexity is O(1.414^(n))and the space complexity is O(n).To validate the proposed approach,qiskit software package is employed to simulate the quantum circuit,yielding the anticipated results. 展开更多
关键词 quantum algorithm circuit design minimum dominating set
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Analysis of multiple-faults of high-voltage circuit breakers based on non-negative matrix decomposition
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作者 Yongrong Zhou Zhaoxing Ma +1 位作者 Hao Chen Ruihua Wang 《Global Energy Interconnection》 EI CSCD 2024年第2期179-189,共11页
High-voltage circuit breakers are the core equipment in power networks,and to a certain extent,are related to the safe and reliable operation of power systems.However,their core components are prone to mechanical faul... High-voltage circuit breakers are the core equipment in power networks,and to a certain extent,are related to the safe and reliable operation of power systems.However,their core components are prone to mechanical faults.This study proposes a component separation method to detect multiple mechanical faults in circuit breakers that can achieve online real-time monitoring.First,a model and strategy are presented for obtaining mechanical voiceprint signals from circuit breakers.Subsequently,the component separation method was used to decompose the voiceprint signals of multiple faults into individual component signals.Based on this,the recognition of the features of a single-fault voiceprint signal can be achieved.Finally,multiple faults in high-voltage circuit breakers were identified through an experimental simulation and verification of the circuit breaker voiceprint signals collected from the substation site.The research results indicate that the proposed method exhibits excellent performance for multiple mechanical faults,such as spring structures and loose internal components of circuit breakers.In addition,it provides a reference method for the real-time online monitoring of high-voltage circuit breakers. 展开更多
关键词 High voltage circuit breaker Signal separation MONITOR Multiple faults Power system
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Quantum circuit-based proxy blind signatures:A novel approach and experimental evaluation on the IBM quantum cloud platform
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作者 娄小平 昝慧茹 徐雪娇 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第5期247-253,共7页
This paper presents a novel approach to proxy blind signatures in the realm of quantum circuits,aiming to enhance security while safeguarding sensitive information.The main objective of this research is to introduce a... This paper presents a novel approach to proxy blind signatures in the realm of quantum circuits,aiming to enhance security while safeguarding sensitive information.The main objective of this research is to introduce a quantum proxy blind signature(QPBS)protocol that utilizes quantum logical gates and quantum measurement techniques.The QPBS protocol is constructed by the initial phase,proximal blinding message phase,remote authorization and signature phase,remote validation,and de-blinding phase.This innovative design ensures a secure mechanism for signing documents without revealing the content to the proxy signer,providing practical security authentication in a quantum environment under the assumption that the CNOT gates are securely implemented.Unlike existing approaches,our proposed QPBS protocol eliminates the need for quantum entanglement preparation,thus simplifying the implementation process.To assess the effectiveness and robustness of the QPBS protocol,we conduct comprehensive simulation studies in both ideal and noisy quantum environments on the IBM quantum cloud platform.The results demonstrate the superior performance of the QPBS algorithm,highlighting its resilience against repudiation and forgeability,which are key security concerns in the realm of proxy blind signatures.Furthermore,we have established authentic security thresholds(82.102%)in the presence of real noise,thereby emphasizing the practicality of our proposed solution. 展开更多
关键词 proxy blind signature quantum circuits quantum computation IBM quantum cloud platform
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Reduced-order method for nuclear reactor primary circuit calculation
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作者 Ze-Long Zhao Ya-Hui Wang +2 位作者 Zhe-Xian Liu Hong-Hang Chi Yu Ma 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2024年第11期28-45,共18页
Accurate real-time simulations of nuclear reactor circuit systems are particularly important for system safety analysis and design.To effectively improve computational efficiency without reducing accuracy,this study e... Accurate real-time simulations of nuclear reactor circuit systems are particularly important for system safety analysis and design.To effectively improve computational efficiency without reducing accuracy,this study establishes a thermal-hydraulics reduced-order model(ROM)for nuclear reactor circuit systems.The full-order circuit system calculation model is first established and verified and then used to calculate the thermal-hydraulic properties of the circuit system under different states as snapshots.The proper orthogonal decomposition method is used to extract the basis functions from snapshots,and the ROM is constructed using the least-squares method,effectively reducing the difficulty in constructing the ROM.A comparison between the full-order simulation and ROM prediction results of the AP1000 circuit system shows that the proposed ROM can improve computational efficiency by 1500 times while achieving a maximum relative error of 0.223%.This research develops a new direction and perspective for the digital twin modeling of nuclear reactor system circuits. 展开更多
关键词 Reactor system model Primary circuit Reduced-order Proper orthogonal decomposition Least-squares method
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Total ionizing dose effect modeling method for CMOS digital-integrated circuit
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作者 Bo Liang Jin-Hui Liu +3 位作者 Xiao-Peng Zhang Gang Liu Wen-Dan Tan Xin-Dan Zhang 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2024年第2期32-46,共15页
Simulating the total ionizing dose(TID)of an electrical system using transistor-level models can be difficult and expensive,particularly for digital-integrated circuits(ICs).In this study,a method for modeling TID eff... Simulating the total ionizing dose(TID)of an electrical system using transistor-level models can be difficult and expensive,particularly for digital-integrated circuits(ICs).In this study,a method for modeling TID effects in complementary metaloxide semiconductor(CMOS)digital ICs based on the input/output buffer information specification(IBIS)was proposed.The digital IC was first divided into three parts based on its internal structure:the input buffer,output buffer,and functional area.Each of these three parts was separately modeled.Using the IBIS model,the transistor V-I characteristic curves of the buffers were processed,and the physical parameters were extracted and modeled using VHDL-AMS.In the functional area,logic functions were modeled in VHDL according to the data sheet.A golden digital IC model was developed by combining the input buffer,output buffer,and functional area models.Furthermore,the golden ratio was reconstructed based on TID experimental data,enabling the assessment of TID effects on the threshold voltage,carrier mobility,and time series of the digital IC.TID experiments were conducted using a CMOS non-inverting multiplexer,NC7SZ157,and the results were compared with the simulation results,which showed that the relative errors were less than 2%at each dose point.This confirms the practicality and accuracy of the proposed modeling method.The TID effect model for digital ICs developed using this modeling technique includes both the logical function of the IC and changes in electrical properties and functional degradation impacted by TID,which has potential applications in the design of radiation-hardening tolerance in digital ICs. 展开更多
关键词 CMOS digital-integrated circuit Total ionizing dose IBIS model Behavior-physical hybrid model Physical parameters
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Effect and mechanism of on-chip electrostatic discharge protection circuit under fast rising time electromagnetic pulse
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作者 Mao Xinyi Chai Changchun +3 位作者 Li Fuxing Lin Haodong Zhao Tianlong Yang Yintang 《强激光与粒子束》 CAS CSCD 北大核心 2024年第10期44-52,共9页
The electrostatic discharge(ESD)protection circuit widely exists in the input and output ports of CMOS digital circuits,and fast rising time electromagnetic pulse(FREMP)coupled into the device not only interacts with ... The electrostatic discharge(ESD)protection circuit widely exists in the input and output ports of CMOS digital circuits,and fast rising time electromagnetic pulse(FREMP)coupled into the device not only interacts with the CMOS circuit,but also acts on the protection circuit.This paper establishes a model of on-chip CMOS electrostatic discharge protection circuit and selects square pulse as the FREMP signals.Based on multiple physical parameter models,it depicts the distribution of the lattice temperature,current density,and electric field intensity inside the device.At the same time,this paper explores the changes of the internal devices in the circuit under the injection of fast rising time electromagnetic pulse and describes the relationship between the damage amplitude threshold and the pulse width.The results show that the ESD protection circuit has potential damage risk,and the injection of FREMP leads to irreversible heat loss inside the circuit.In addition,pulse signals with different attributes will change the damage threshold of the circuit.These results provide an important reference for further evaluation of the influence of electromagnetic environment on the chip,which is helpful to carry out the reliability enhancement research of ESD protection circuit. 展开更多
关键词 fast rising time electromagnetic pulse damage effect electrostatic discharge protection circuit damage location prediction
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Fluid-chemical modeling of the near-cathode sheath formation process in a high current broken in DC air circuit breaker
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作者 彭世东 李静 +3 位作者 段薇 曹云东 刘树鑫 黄浩 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第1期523-538,共16页
When the contacts of a medium-voltage DC air circuit breaker(DCCB) are separated, the energy distribution of the arc is determined by the formation process of the near-electrode sheath. Therefore, the voltage drop thr... When the contacts of a medium-voltage DC air circuit breaker(DCCB) are separated, the energy distribution of the arc is determined by the formation process of the near-electrode sheath. Therefore, the voltage drop through the near-electrode sheath is an important means to build up the arc voltage, which directly determines the current-limiting performance of the DCCB. A numerical model to describe the near-electrode sheath formation process can provide insight into the physical mechanism of the arc formation, and thus provide a method for arc energy regulation. In this work, we establish a two-dimensional axisymmetric time-varying model of a medium-voltage DCCB arc when interrupted by high current based on a fluid-chemical model involving 16 kinds of species and 46 collision reactions. The transient distributions of electron number density, positive and negative ion number density, net space charge density, axial electric field, axial potential between electrodes, and near-cathode sheath are obtained from the numerical model. The computational results show that the electron density in the arc column increases, then decreases, and then stabilizes during the near-cathode sheath formation process, and the arc column's diameter gradually becomes wider. The 11.14 V–12.33 V drops along the17 μm space charge layer away from the cathode(65.5 k V/m–72.5 k V/m) when the current varies from 20 k A–80 k A.The homogeneous external magnetic field has little effect on the distribution of particles in the near-cathode sheath core,but the electron number density at the near-cathode sheath periphery can increase as the magnetic field increases and the homogeneous external magnetic field will lead to arc diffusion. The validity of the numerical model can be proven by comparison with the experiment. 展开更多
关键词 near-cathode sheath atmospheric pressure air arc fluid-chemical model high current DC air circuit breaker(DCCB)
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闪烁探测器全硬件自动检测控制电路设计
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作者 李波 李晏敏 +7 位作者 赵娟 李洪涛 马烈华 艾杰 王城 张波涛 彭旭升 李涛 《强激光与粒子束》 北大核心 2025年第3期71-75,共5页
为满足中子测试装置对闪烁探测器的高可靠度要求,研制了一种全硬件自动检测控制电路。提出采用多谐振荡器产生设定时间周期的自检脉冲信号,利用比较器、单稳态触发器等电路对闪烁探测器主通道工作状态进行实时监测和判断,在主通道故障... 为满足中子测试装置对闪烁探测器的高可靠度要求,研制了一种全硬件自动检测控制电路。提出采用多谐振荡器产生设定时间周期的自检脉冲信号,利用比较器、单稳态触发器等电路对闪烁探测器主通道工作状态进行实时监测和判断,在主通道故障时通过模拟开关实现主通道信号和备用通道信号之间进行自动切换控制。解决了目前自动检测控制电路实现通道切换输出电路复杂、体积大、辐射环境适应性较差等问题,实现了闪烁探测器通道的冗余设计,提高了闪烁探测器的工作可靠度。该电路成功使探测器工作可靠度达到99.9%以上,满足了实验要求。 展开更多
关键词 闪烁探测器 全硬件电路 自动检测控制电路 高可靠度
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可级联的压控晶闸管同步驱动电路
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作者 王文东 吴朝阳 +2 位作者 王淦平 吴编 杨周炳 《强激光与粒子束》 北大核心 2025年第2期136-139,共4页
针对压控晶闸管脉冲工作特性和串联使用需求,设计了一种可级联的驱动电路,实现了多级串联压控晶闸管的同步开通。首先,介绍了电路拓扑及工作原理,利用推挽结构的平面耦合电感器隔离初、次级信号并传递驱动能量,解决了串联驱动小型化和... 针对压控晶闸管脉冲工作特性和串联使用需求,设计了一种可级联的驱动电路,实现了多级串联压控晶闸管的同步开通。首先,介绍了电路拓扑及工作原理,利用推挽结构的平面耦合电感器隔离初、次级信号并传递驱动能量,解决了串联驱动小型化和低压供电条件下快前沿输出的问题;其次,通过计算和仿真确定了电路参数和主要器件选型;最后,使用6级串联的MCT作为放电开关搭建了测试电路,在充电电压8.4 kV、工作重复频率20 Hz条件下,4Ω电阻负载上获得了幅值为1.958 kA的准方波脉冲电流。 展开更多
关键词 驱动电路 MOS栅控晶闸管 串联 同步 准方波脉冲
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大功率重复频率高电压脉冲充电电源研制
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作者 甘延青 罗光耀 +5 位作者 李飞 张北镇 李春霞 王淦平 金晓 宋法伦 《强激光与粒子束》 北大核心 2025年第3期18-25,共8页
针对重复频率Marx型脉冲功率源的应用需求,采用固态调制恒流充电与脉冲变压器感应叠加相结合的技术方式,开展了大功率重复频率高电压脉冲充电电源技术研究。分析了基于BUCK-BOOST拓扑电路的恒流充电技术,给出了高电压脉冲变压器、脉冲... 针对重复频率Marx型脉冲功率源的应用需求,采用固态调制恒流充电与脉冲变压器感应叠加相结合的技术方式,开展了大功率重复频率高电压脉冲充电电源技术研究。分析了基于BUCK-BOOST拓扑电路的恒流充电技术,给出了高电压脉冲变压器、脉冲调制模块、BUCK-BOOST充电模块、控制单元等关键参数设计,完成了大功率重复频率脉冲充电电源样机研制。样机设计指标最大输出平均功率250kW,最高重复频率100Hz。在0.5μF负载电容上进行了充电测试,获得了电压约100kV、脉冲前沿约300μs的脉冲输出。该脉冲充电电源在脉冲变压器初级设计中采用了多模块并联的设计思路,即减小了装置体积又降低了高电压绝缘风险,在输出功率大、电压高的条件下,实现了紧凑化、模块化设计。 展开更多
关键词 脉冲充电电源 BUCK-BOOST电路 脉冲功率技术 重频充电
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短脉冲高产额中子发生器驱动电源研制
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作者 董攀 王韬 +3 位作者 李杰 刘平 何佳龙 叶龙建 《强激光与粒子束》 北大核心 2025年第3期13-17,共5页
真空弧中子发生器是一种短脉冲高产额的中子源,被广泛应用在石油测井、元素活化分析等领域。真空弧中子发生器的典型特点是放电弧流大、脉宽短,为此研制了一套大电流的真空弧放电及其引出电源,包含触发模块、主弧模块和引出模块等。触... 真空弧中子发生器是一种短脉冲高产额的中子源,被广泛应用在石油测井、元素活化分析等领域。真空弧中子发生器的典型特点是放电弧流大、脉宽短,为此研制了一套大电流的真空弧放电及其引出电源,包含触发模块、主弧模块和引出模块等。触发模块为LRC放电,输出电压峰值大于5kV。主弧模块采用LRCD半周期放电方式产生主弧电流,电流峰值大于600A,半高宽大于0.5μs。引出模块使用多倍压整流电路,将交流高压整流成所需的高压直流,输出电压峰值大于120kV,负载电流大于2A。根据设计方案建立了仿真模型,仿真结果表明该电源能很好地输出设定的电参数。最后制备了一套大电流真空弧放电及引出电源,测试结果表明该电源输出参数和设计值一致,可用来作为真空弧中子发生器驱动电源。 展开更多
关键词 真空弧放电 大电流 LRC脉冲放电 LRCD放电 倍压电路
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基于WOA-VMD和贝叶斯估计的保护测量回路误差评估
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作者 李振兴 柳灿 +2 位作者 翁汉琍 李振华 龚世玉 《三峡大学学报(自然科学版)》 北大核心 2025年第2期97-105,共9页
变电站保护测量回路受测量误差影响,保护灵敏度降低,对于重载线路可能引起保护误动,会造成严重后果.为推动保护测量的状态监视,提出一种基于鲸鱼优化(whale optimization algorithm,WOA)的变分模态分解(variational mode decomposition,... 变电站保护测量回路受测量误差影响,保护灵敏度降低,对于重载线路可能引起保护误动,会造成严重后果.为推动保护测量的状态监视,提出一种基于鲸鱼优化(whale optimization algorithm,WOA)的变分模态分解(variational mode decomposition,VMD)和贝叶斯估计的保护测量回路误差评估方法.针对保护测量回路的电流数据,引入WOA并结合包络熵作为适应度函数确定VMD的关键参数,基于WOA-VMD将原电流数据分解为本征模态;进一步为解决特征数目过多所带来的复杂数据分析问题,引入皮尔逊相关系数方法计算其各组系数优选特征量;最终利用贝叶斯估计法量化分析优选后的特征量信号实现误差判定.实验结果表明,本文的评估方法能够准确监测保护测量回路2%的误差偏移. 展开更多
关键词 保护测量回路 误差评估 鲸鱼优化算法 包络熵 皮尔逊相关系数 贝叶斯估计法
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Semi-Z源逆变器的改进脉宽调制策略及参数优化设计方法
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作者 李宁 杨家林 +2 位作者 张岩 卓超然 张常杰 《太阳能学报》 北大核心 2025年第2期245-254,共10页
Semi-Z源逆变器的现有调制策略存在开关电压应力大且难以实现闭环控制的固有不足。针对以上不足,提出一种低电压应力的Semi-Z源逆变器调制策略。通过建立稳态电路模型,分析Semi-Z源电压增益和器件应力特性,对占空比进行平均化处理,进而... Semi-Z源逆变器的现有调制策略存在开关电压应力大且难以实现闭环控制的固有不足。针对以上不足,提出一种低电压应力的Semi-Z源逆变器调制策略。通过建立稳态电路模型,分析Semi-Z源电压增益和器件应力特性,对占空比进行平均化处理,进而减小开关器件电压应力。此外,针对Semi-Z源逆变器在重载及高输出交流频率的应用环境中,依然存在无源元件需求过大的问题,特别设计并提出一套高效的无源元件参数优化方案。最后,根据所提出的调制策略,设计搭建200 W试验样机,验证所提的调制策略和参数设计方案的正确性和综合性能优势。 展开更多
关键词 逆变器 脉宽调制 电路分析 电压应力 线性控制
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基于可重配置环形振荡器的TSV诊断方法
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作者 陈田 章云飞 +4 位作者 刘军 鲁迎春 吴大平 陈炜坤 邵宇寒 《微电子学与计算机》 2025年第3期92-99,共8页
硅通孔(Through Silicon Via,TSV)是堆叠形成三维芯片(Three-Dimensional Chips,3D ICs)的关键部件,因此在制造过程中检测出TSV故障是十分重要的。目前的测试方法存在测试成本较高、难以使用同一结构对TSV键合的全过程进行测试以及无法... 硅通孔(Through Silicon Via,TSV)是堆叠形成三维芯片(Three-Dimensional Chips,3D ICs)的关键部件,因此在制造过程中检测出TSV故障是十分重要的。目前的测试方法存在测试成本较高、难以使用同一结构对TSV键合的全过程进行测试以及无法分辨TSV故障的类型等问题。为此,提出了一种基于可重配置的环形振荡器结构的TSV检测方法。该方法能够在TSV制造的各个阶段同时测试多个TSV,并且根据键合前和键合后振荡周期的变化,判断TSV故障的类型,定位发生故障的TSV。HSPICE的仿真结果表明,所提结构可以有效检测并定位TSV各阶段的故障。 展开更多
关键词 三维集成电路 硅通孔 环形振荡器
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