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C^3I系统中加载电磁兼容模块的探讨 被引量:2
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作者 陈印杰 孙剑平 《舰船科学技术》 北大核心 2005年第2期81-83,86,共4页
舰载电子设备间的电磁兼容性是影响现代主战舰艇作战效能发挥的重要因素。为有效发挥舰载C3I系统的作战效能,必须进行严格的系统电磁兼容性设计。本文对舰载C3I系统中电磁兼容管理模块的结构设计和所依据的基本数学模型进行了探讨,并在... 舰载电子设备间的电磁兼容性是影响现代主战舰艇作战效能发挥的重要因素。为有效发挥舰载C3I系统的作战效能,必须进行严格的系统电磁兼容性设计。本文对舰载C3I系统中电磁兼容管理模块的结构设计和所依据的基本数学模型进行了探讨,并在对电磁兼容管理方式分析的基础上,提出了管理方式的选择方法和管理原则,最后分析了模块对舰载电子设备实施电磁兼容管理的流程。 展开更多
关键词 c^3I系统 电磁兼容管理 模块
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低频输电技术原理之三——M^(3)C基本控制策略与子模块电压平衡控制 被引量:18
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作者 徐政 张哲任 《浙江电力》 2021年第10期30-41,共12页
低频海底电缆输电技术在远海风电送出和海上风电场构网方面具有竞争优势,而M^(3)C(模块化多电平矩阵变换器)是低频输电技术的核心元件。针对M^(3)C的控制策略与子模块电压平衡控制展开研究:控制器仍然采用电压源换流器中常用的双环控制... 低频海底电缆输电技术在远海风电送出和海上风电场构网方面具有竞争优势,而M^(3)C(模块化多电平矩阵变换器)是低频输电技术的核心元件。针对M^(3)C的控制策略与子模块电压平衡控制展开研究:控制器仍然采用电压源换流器中常用的双环控制器结构,外环控制器设计与常规方法相同,内环控制器设计分成外部量控制与内部量控制分别进行。其中,内环外部量控制器设计在dq坐标系下进行,内环内部量控制器设计直接在αβ坐标系下进行。此外,针对全桥子模块的特点,通过定义3个特征量,提出一种简单有效、基于最近电平逼近且可满足子模块电压平衡控制要求的桥臂子模块投切策略。 展开更多
关键词 低频输电 M^(3)c 全桥子模块 双环控制 电容电压平衡
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χ-C_3模
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作者 杨世洲 《甘肃科学学报》 2002年第2期12-14,共3页
作为 C3-模的推广 ,定义了 χ- C3模 ,得到了 χ- C3模的一个等价命题 ,证明了在一定条件下 χ- C3的 1型 χ- C1 1 模的直和因子是 1型 χ- C1 1
关键词 c3-模 模类 x-c3 1型x-c11模
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铁路扣件多缺陷识别的改进 YOLOv5s 检测算法
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作者 李磊 连正浦 +2 位作者 李怡迩 孙建锋 高硕学 《实验室研究与探索》 北大核心 2026年第3期100-108,127,共10页
针对铁路钢轨扣件缺陷检测中存在漏检、误检及模型复杂度高等问题,提出一种用于铁路扣件多缺陷识别的改进YOLOv5s算法。该算法设计了双向减权多尺度特征融合(BiDW-MFF)结构作为YOLOv5s的颈部网络,以增强多尺度特征提取能力;构建C3-ST-Re... 针对铁路钢轨扣件缺陷检测中存在漏检、误检及模型复杂度高等问题,提出一种用于铁路扣件多缺陷识别的改进YOLOv5s算法。该算法设计了双向减权多尺度特征融合(BiDW-MFF)结构作为YOLOv5s的颈部网络,以增强多尺度特征提取能力;构建C3-ST-Res模块替换部分C3模块,从而降低模型参数量;设计了一种动态损失函数SDIoU,通过引入自适应权重机制提升边界框回归精度。实验结果表明,改进后模型的平均检测精度达到91.7%,较原YOLOv5s提升11.5个百分点,且参数量与权重大小分别降低4.2%和3.5%。与SSD、Faster R-CNN及YOLOv3等主流算法相比,所提算法在检测性能与模型效率方面均表现出明显优势,可为钢轨扣件缺陷智能检测提供有效技术支撑。 展开更多
关键词 铁路扣件 c3-st-res模块 双向减权多尺度特征融合 SDIoU动态损失函数
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C3-Modules 被引量:11
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作者 Ismail Amin Yasser Ibrahim Mohamed Yousif 《Algebra Colloquium》 SCIE CSCD 2015年第4期655-670,共16页
One of the continuity conditions identified by Utumi on self-injective rings is the C3-condition, where a module M is called a C3-module if whenever A and B are direct summands of M and A A B = 0, then A B is a summa... One of the continuity conditions identified by Utumi on self-injective rings is the C3-condition, where a module M is called a C3-module if whenever A and B are direct summands of M and A A B = 0, then A B is a summand of M. In addition to injective and direct-injective modules, the class of C3-modules includes the semisimple, continuous, indecomposable and regular modules. Indeed, every commutative ring is a C3-ring. In this paper we provide a general and unified treatment of the above mentioned classes of modules in terms of the C3-condition, and establish new characterizations of several well known classes of rings. 展开更多
关键词 injective and quasi-injective modules c2-modules and c3-modules
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先进的棒材生产设备——3-辊减径定径轧机组 被引量:4
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作者 W.-JAmmerling F.Alzetta 《冶金设备》 2000年第4期33-37,共5页
介绍KOKS/DANELI公司先进的3 -辊RSB棒线材轧机的特点,以及目前世界上棒线材生产工艺中最具特色的轧辊系列、C -模块传动、快速换辊和机架更换的摇控系统,低温精轧和低成本、高回报率的特点等进行了论述。
关键词 棒线材轧制 3-辊减径-定径轧机组 c-模块传动
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A novel mode of WRKY1 regulating PR1‑mediated immune balance to defend against powdery mildew in apple
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作者 Liming Lan Lifang Cao +10 位作者 Lulu Zhang Weihong Fu Changguo Luo Chao Wu Xianqi Zeng Shenchun Qu Xinyi Yu Wenyi Deng Xu Xu Binhua Cai Sanhong Wang 《Molecular Horticulture》 2025年第1期280-300,共21页
Powdery mildew(PM),caused by the biotrophic fungus Podospharea leucotricha,poses a significant threat to apple production.Salicylic acid(SA)signaling plays a crucial role in enhancing resistance to biotrophic pathogen... Powdery mildew(PM),caused by the biotrophic fungus Podospharea leucotricha,poses a significant threat to apple production.Salicylic acid(SA)signaling plays a crucial role in enhancing resistance to biotrophic pathogens.While PR1,a defense protein induced by SA,is essential for plant immunity,its excessive accumulation can be detrimental.However,the mechanism of PR1-mediated immune balance remains unclear.This study identified a key transcription factor,WRKY1,which enhances the SA accumulation by modulating the SA biosynthesis gene EPS1,while simultaneously regulating the WRKY40-NPR3g module to prevent sustained PR1 expression caused by continuous SA accumulation.Specifically,the transcription factor WRKY40 upregulates NPR3g expression,and NPR3g interacts with NPR1 in an SA-dependent manner.Then,two TGA2c variants that interact with NPR1 to activate PR1 expression were identified:canonical TGA2c-1 and alternative splicing of TGA2c-2 with an exon deletion.SA does not influence the NPR1-TGA2c-1 interaction but is essential for the NPR1-TGA2c-2 interaction.Notably,NPR3g reduces PR1 levels by selectively disrupting the NPR1-TGA2c-2 complex through competition for the BTB-POZ domain of NPR1.In conclusion,this study identifies a novel mechanism by which WRKY1 modulates PR1-mediated immune balance to defend against PM. 展开更多
关键词 Apple powdery mildew Salicylic acid PR1 Plant immunity Immune balance WRKY40-NPR3g module NPR1 TGA2c variants Alternative splicing BTB-POZ domain EPS1 WRKY1 Immune defense mechanism
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Tuning the electronic properties of hydrogen passivated C3N nanoribbons through van der Waals stacking
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作者 Jia Liu Xian Liao +2 位作者 Jiayu Liang Mingchao Wang Qinghong Yuan 《Frontiers of physics》 SCIE CSCD 2020年第6期13-24,共12页
The two-dimensional(2D)C3 N has emerged as a material with promising applications in high performance device owing to its intrinsic bandgap and tunable electronic properties.Although there are several reports about th... The two-dimensional(2D)C3 N has emerged as a material with promising applications in high performance device owing to its intrinsic bandgap and tunable electronic properties.Although there are several reports about the bandgap tuning of C3 N via stacking or forming nanoribbon,bandgap modulation of bilayer C3 N nanoribbons(C3NNRS)with various edge structures is still far from well understood.Here,based on extensive first-principles calculations,we demonstrated the effective bandgap engineering of C3 N by cutting it into hydrogen passivated C3 NNRS and stacking them into bilayer heterostructures.It was found that armchair(AC)C3 NNRS with three types of edge structures are all semiconductors,while only zigzag(ZZ)C3NNRS with edges composed of both C and N atoms(ZZCN/CN)are semiconductors.The bandgaps of all semiconducting C3 NNRS are larger than that of C3 N nanosheet.More interestingly,AC-C3 NNRS with CN/CN edges(AC-CN/CN)possess direct bandgap while ZZ-CN/CN have indirect bandgap.Compared with the monolayer C3 NNR,the bandgaps of bilayer C3NNRS can be greatly modulated via different stacking orders and edge structures,varying from 0.43 eV for ZZ-CN/CN with AB’-stacking to 0.04 eV for AC-CN/CN with AA-stacking.Particularly,transition from direct to indirect bandgap was observed in the bilayer AC-CN/CN heterostructure with AA^stacking,and the indirect-to-direct transition was found in the bilayer ZZ-CN/CN with ABstacking.This work provides insights into the effective bandgap engineering of C3 N and offers a new opportunity for its applications in nano-electronics and optoelectronic devices. 展开更多
关键词 first-principles DFT calculations hydrogenated c3N nanoribbons HETEROSTRUcTURE bandgap modulation
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