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81.
考虑到地磁感应电流(geomagnetically induced current, GIC)具有低频性,过去一直将其近似等效为高压直流输电(high voltage direct current, HVDC)诱发的不平衡电流进行研究。然而,与HVDC型直流偏磁相比,GIC型直流偏磁具有显著的随机性与时变性,因此简单地将两者完全等效处理并不合理,在特定场景下应加以区分。为此,首先,从理论上分析了两种类型直流偏磁在诱发原因及特点上的差异。其次,通过研究直流偏磁对变压器本体以及电流互感器的不利影响,进一步探究两种类型直流偏磁对电网一/二次设备的影响差异,为后续的偏磁治理提供有效参考。最后,基于PSCAD/EMTDC仿真平台搭建了等效仿真模型,并通过仿真验证了理论分析的正确性。 相似文献
82.
Yi Lu Hao Zhang Yida Wang Xiaorong Zhu Weiping Xiao Haolan Xu Gaoran Li Yafei Li Deqi Fan Haibo Zeng Zupeng Chen Xiaofei Yang 《Advanced functional materials》2023,33(21):2215061
The rational design of economic and high-performance electrocatalytic water-splitting systems is of great significance for energy and environmental sustainability. Developing a sustainable energy conversion-assisted electrocatalytic process provides a promising novel approach to effectively boost its performance. Herein, a self-sustained water-splitting system originated from the heterostructure of perovskite oxide with 2D Ti3C2Tx MXene on Ni foam (La1-xSrxCoO3/Ti3C2Tx MXene/Ni) that shows high activity for solar-powered water evaporation and simultaneous electrocatalytic water splitting is presented. The all-in-one interfacial electrocatalyst exhibits highly improved oxygen evolution reaction (OER) performance with a low overpotential of 279 mV at 10 mA cm−2 and a small Tafel slope of 74.3 mV dec−1, superior to previously reported perovskite oxide-based electrocatalysts. Density functional theory calculations reveal that the integration of La0.9Sr0.1CoO3 with Ti3C2Tx MXene can lower the energy barrier for the electron transfer and decrease the OER overpotential, while COMSOL simulations unveil that interfacial solar evaporation could induce OH− enrichment near the catalyst surfaces and enhance the convection flow above the catalysts to remove the generated gas, remarkably accelerating the kinetics of electrocatalytic water splitting. 相似文献
83.
Run Wang Hengyang Xiang Yan Li Yihui Zhou Qingsong Shan Yuqin Su Zhi Li Yongjin Wang Haibo Zeng 《Advanced functional materials》2023,33(21):2215189
Perovskite light-emitting diodes (PeLEDs) show promising prospects in the wide color gamut display owing to their ultra-narrow full width at half maximum (FWHM). However, up to now, all perovskite white LEDs integrated by standard red, green, and blue perovskite emitters, namely, monolithic white PeLEDs (WPeLEDs), have been rarely reported, owing to facing some issues, e.g., solvent incompatibility in solution technique, ion exchange, and energy transfer between different emission centers. Herein, centered on these issues, an optimal intermediate connection layer (ICL) of Po-T2T/LiF/Ag/HAT-CN/MoO3 is adopted to successfully develop monolithic tandem multicolor PeLEDs and WPeLEDs for the first time. The multicolor PeLEDs can achieve the best external quantum efficiency of 1.8% and the highest luminance of 4844 cd m−2. Besides, the red/green/blue (R/G/B) monolithic tandem WPeLED shows a standard white International Commission on Illumination coordinate of (0.33, 0.33) and achieves an extremely wide color gamut reaching National Television Standards Committee of 130%. This study is the first to realize the standard R/G/B co-electroluminescence in a monolithic perovskite device and offers a feasible strategy for developing wide-color gamut perovskite displays. 相似文献
84.
Xianhong Zheng Songlin Zhang Mengjuan Zhou Haibo Lu Shuai Guo Yaoxin Zhang Changlong Li Swee Ching Tan 《Advanced functional materials》2023,33(19):2214880
Breathable, flexible, and highly sensitive pressure sensors have drawn increasing attention due to their potential in wearable electronics for body-motion monitoring, human-machine interfaces, etc. However, current pressure sensors are usually assembled with polymer substrates or encapsulation layers, thus causing discomfort during wearing (i.e., low air/vapor permeability, mechanical mismatch) and restricting their applications. A breathable and flexible pressure sensor is reported with nonwoven fabrics as both the electrode (printed with MXene interdigitated electrode) and sensing (coated with MXene/silver nanowires) layers via a scalable screen-printing approach. Benefiting from the multi-layered porous structure, the sensor demonstrates good air permeability with high sensitivity (770.86–1434.89 kPa−1), a wide sensing range (0–100 kPa), fast response/recovery time (70/81 ms), and low detection limit (≈1 Pa). Particularly, this sensor can detect full-scale human motion (i.e., small-scale pulse beating and large-scale walking/running) with high sensitivity, excellent cycling stability, and puncture resistance. Additionally, the sensing layer of the pressure sensor also displays superior sensitivity to humidity changes, which is verified by successfully monitoring human breathing and spoken words while wearing a sensor-embedded mask. Given the outstanding features, this breathable sensor shows promise in the wearable electronic field for body health monitoring, sports activity detection, and disease diagnosis. 相似文献
85.
With the rapid development of swarm intelligence, consensus problem for multi-agent systems (MASs) has attracted substantial attention. To deal with the leader-following consensus problems in stochastic dynamical MASs with fixed and switching topologies, this article designed proportional-integral (PI) control protocols. On the basis of algebraic graph theory and stochastic analysis techniques, by selecting appropriate Lyapunov functions, it is theoretically shown that leader-following consensus of MASs with stochastic dynamics underlying fixed and switching topologies can be achieved in mean square, respectively. Sufficient criteria are derived for selecting the PI control gains. Finally, the theoretical results are illustrated through several numerical simulations. 相似文献
88.
开展保底电网的研究是落实国家能源局关于坚强局部电网规划建设实施方案的重要举措,储能技术的应用可完善严重故障下保底电网按局部电网独立运行的能力。针对这一问题,提出了一种电化学储能在保底变电站中的配置方案与控制策略。首先,探讨了电化学储能在保底变电站中的接入方式,并根据灾害期间的供电负荷发展水平制定了电化学储能的容量配置方案;然后,提出了电流补偿方法、相位补偿方法以及相位预同步方法等,以实现保底变电站在并网转孤网、孤网转并网运行期间的平滑切换,完善了储能系统的抗灾控制策略;最后,以广东沿海某地区电网的保底变电站为例仿真验证了所提方法的有效性。 相似文献
89.
随着城市经济发展与终端用能电气化的普及,以制冷用电为首的电负荷需求持续增加且峰谷差情况愈发严重化,导致现有配电网运行负担逐渐加重。在此背景下,将综合能源站(IES)作为多能流耦合节点,在配电网中引入多能协调互补及蓄能移峰功能,计及多个阶段负荷发展及多类型负荷特征,提出在IES柔性调控作用下的配电网多阶段规划方法。基于IES能流结构及其运行机制,分别在不同气候类型地区负荷模拟场景下,以总规划期内投资与运行经济性最优为目标,建立由线路、变电站和IES构成决策对象的配电网双层多阶段规划模型,规划与运行层模型通过决策变量关联达成一体化协同求解。通过修改后的IEEE 33节点配电系统对所提方法的有效性进行校验,并进一步将所提方法应用于某地实际152节点配电系统,分析不同负荷特征下配电网规划运行效益、负荷峰谷差调节效果及IES运行状况,得出计及IES的城市配电网规划方法的实用性结论。 相似文献
90.
针对双边LCC补偿方式的无线电能传输变换器,提出了一种谐振网络设计方法:基于抑制谐波电流、压缩磁元件体积以及在最大传输距离与最大横向偏移状态传输功率可接近额定功率的考虑,依据额定传输功率、开关频率等约束条件,确定谐振网络全部元件(包括松耦合变压器)的电参数。在此基础上提出了一种相应的带磁芯平面螺旋线圈松耦合变压器尺寸设计方案:依据松耦合变压器处于最大传输距离、最大横向偏移状态时的互感值,从理论上估算出其尺寸范围,再以少量有限元仿真搜索到其最佳尺寸。设计并制作了一台额定输出功率为4.5 kW的样机,验证了所提设计方法的正确性。 相似文献