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Test and evaluation of long-endurance rotary modulation inertial navigation system 长航时旋转调制惯性导航系统的试验与评价
Q3 Materials Science Pub Date : 2023-01-01 DOI: 10.37188/ope.20233117.2525
Xudong YU, Ding LI, Lifu GAO, Wen LEI
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引用次数: 0
Nonlinear decoupling of 3d force sensors based on WSO-ELM 基于WSO-ELM的三维力传感器非线性解耦
Q3 Materials Science Pub Date : 2023-01-01 DOI: 10.37188/ope.20233118.2664
Shizheng SUN, Ke PANG, Jingtong YU, Renxiang CHEN
é’ˆå¯¹ä¸‰ç»´åŠ›ä¼ æ„Ÿå™¨ç»´é—´è€¦åˆå¹²æ‰°é—®é¢˜ï¼Œä»¥åŸºäºŽå ‰çº¤å¸ƒæ‹‰æ ¼å ‰æ (Fiber Bragg Grating, FBGï¼‰çš„ä¸€ä½“å¼ä¸‰ç»´åŠ›ä¼ æ„Ÿå™¨ä¸ºç ”ç©¶å¯¹è±¡ï¼Œæå‡ºäº†ä¸€ç§åŸºäºŽç™½é²¨ä¼˜åŒ–ç®—æ³•çš„ä¼˜åŒ–æžé™å­¦ä¹ æœºï¼ˆWhite Shark Optimizer-Extreme Learning Machine, WSO-ELMï¼‰çš„éžçº¿æ€§è§£è€¦ç®—æ³•ã€‚é¦–å ˆï¼Œè®¾è®¡äº†åŸºäºŽFBGçš„ä¸€ä½“å¼ä¸‰ç»´åŠ›ä¼ æ„Ÿå™¨ï¼Œé˜æ˜Žè¯¥ä¼ æ„Ÿå™¨æ³¢é•¿æ¼‚ç§»é‡ä¸Žä¸‰ç»´åŠ›çš„æ˜ å°„å ³ç³»ï¼›ç„¶åŽï¼Œæ­å»ºé™æ€æ ‡å®šå®žéªŒç³»ç»Ÿï¼Œåˆ†æžä¸‰ç»´åŠ›è€¦åˆç‰¹å¾ï¼Œå¹¶å»ºç«‹WSO-ELMç®—æ³•ä¸‰ç»´åŠ›ä¼ æ„Ÿå™¨è§£è€¦æ¨¡åž‹ï¼Œåˆ©ç”¨ç™½é²¨ä¼˜åŒ–ç®—æ³•ï¼ˆWhite Shark Optimizer, WSO)稳定、高效特点优化模型,寻找ELMç¥žç»ç½‘ç»œéšå«å±‚ç¥žç»å ƒæ•°ä¸Žè§£è€¦æ—¶é—´çš„æœ€ä½³å‚æ•°ç»„åˆï¼Œå¼€å±•åŸºäºŽWSO-ELMçš„ä¸‰ç»´åŠ›ä¼ æ„Ÿå™¨éžçº¿æ€§è§£è€¦ç ”ç©¶ï¼›æœ€åŽï¼Œè¯¥ä¼ æ„Ÿå™¨è§£è€¦åŽæœ€å¤§å¹³å‡I类误差达到0.51%,最大平均II类误差达到0.65%,实现了基于WSO-ELM的三维力非线性解耦。为验证解耦效果,将WSO-ELMç®—æ³•ä¸Žæžé™å­¦ä¹ æœºç¥žç»ç½‘ç»œæ¨¡åž‹ã€åå‘ä¼ æ’­ç¥žç»ç½‘ç»œã€æœ€å°äºŒä¹˜æ³•è§£è€¦æ•ˆæžœè¿›è¡Œå¯¹æ¯”å®žéªŒã€‚å®žéªŒç»“æžœè¡¨æ˜Žï¼šWSO-ELMç®—æ³•å ·æœ‰è¾ƒå¥½çš„è§£è€¦æ•ˆæžœï¼Œèƒ½æœ‰æ•ˆæž„å»ºä¸‰ç»´åŠ›ç»´é—´è€¦åˆå ³ç³»ï¼ŒåŒæ—¶é™ä½Žä¼ æ„Ÿå™¨è€¦åˆå¹²æ‰°ï¼Œæé«˜ä¼ æ„Ÿå™¨çš„æµ‹é‡ç²¾åº¦ï¼Œå ·æœ‰è‰¯å¥½çš„éžçº¿æ€§è§£è€¦èƒ½åŠ›ã€‚
Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating 光纤布拉格光栅 Fiber Bragg Grating Fiber Bragg GratingELM:White Shark Optimiser,WSO:White Shark Optimizer,WSO:White Shark Optimizer,WSO:White Shark Optimizer,WSO:White Shark Optimizer,WSO:White Shark Optimizer。ELM公司的ELM-WSO-0.51%: 0.
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引用次数: 0
Velocity measurements in supersonic mixing layer using femtosecond laser electronic excitation tagging 超声速混合层中飞秒激光电子激励标记的速度测量
Q3 Materials Science Pub Date : 2023-01-01 DOI: 10.37188/ope.20233119.2781
Li CHEN, Yimin YIN, Yudong LI, Meng LI, Shuang CHEN
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引用次数: 0
Visual composite positioning for precision microassembly 用于精密微装配的视觉复合定位
Q3 Materials Science Pub Date : 2023-01-01 DOI: 10.37188/ope.20233119.2857
Xiaodong WANG, Shipeng CUI, Zheng XU, Shiqin LU
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引用次数: 0
Study on the film-forming process of high-viscosity adhesive droplets by extrusion 高粘度胶滴挤压成膜工艺研究
Q3 Materials Science Pub Date : 2023-01-01 DOI: 10.37188/ope.20233120.2986
Zheng XU, Wenxin HE, Leijie CUI, Xiaodong WANG, Shiqin LU
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引用次数: 0
Design and performance analysis of high-voltage drive system for thousand-element adaptive optics 千元自适应光学器件高压驱动系统的设计与性能分析
Q3 Materials Science Pub Date : 2023-01-01 DOI: 10.37188/ope.20233117.2493
Meng SHAO, Hongwen LI, Jianli WANG, Leqiang YANG, Kainan YAO, Yongting DENG
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引用次数: 0
Joint self-attention and branch sampling for object detection on drone imagery 无人机图像目标检测的联合自关注与分支采样
Q3 Materials Science Pub Date : 2023-01-01 DOI: 10.37188/ope.20233118.2723
Yunzuo ZHANG, Cunyu WU, Yameng LIU, Tian ZHANG, Yuxin ZHENG
æ— äººæœºå›¾åƒç›®æ ‡æ£€æµ‹åœ¨è¯¸å¤šé¢†åŸŸè¢«å¹¿æ³›åº”ç”¨ï¼Œä½†å—åˆ¶äºŽå›¾åƒèƒŒæ™¯å¤æ‚ã€ç›®æ ‡å¯†é›†ï¼Œç›®æ ‡å°ºåº¦å˜åŒ–å‰§çƒˆï¼ŒçŽ°æœ‰çš„æ— äººæœºå›¾åƒç›®æ ‡æ£€æµ‹ç®—æ³•æ£€æµ‹æ•ˆæžœä¸å¤Ÿç²¾å‡†ã€‚ä¸ºè§£å†³æ­¤ç±»é—®é¢˜ï¼Œæå‡ºäº†ä¸€ç§è”åˆè‡ªæ³¨æ„åŠ›å’Œåˆ†æ”¯é‡‡æ ·çš„æ— äººæœºå›¾åƒç›®æ ‡æ£€æµ‹æ–¹æ³•ã€‚é¦–å ˆï¼Œè®¾è®¡äº†è‡ªæ³¨æ„åŠ›å’Œå·ç§¯ç›¸èžåˆçš„åµŒå¥—æ®‹å·®ç»“æž„ä»¥å®žçŽ°å ¨å±€ä¿¡æ¯å’Œå±€éƒ¨ä¿¡æ¯çš„æœ‰æ•ˆç»“åˆï¼Œè®©æ¨¡åž‹èšç„¦äºŽå¾ æµ‹ç›®æ ‡ï¼Œä»Žè€Œæ·¡åŒ–å¤æ‚èƒŒæ™¯çš„å½±å“ã€‚å ¶æ¬¡ï¼Œè®¾è®¡äº†ä¸€ç§åŸºäºŽåˆ†æ”¯é‡‡æ ·çš„ç‰¹å¾èžåˆæ¨¡å—ä»¥å¼¥è¡¥ç›®æ ‡ä¿¡æ¯ä¸¢å¤±ã€‚æœ€åŽï¼Œå¼•å ¥æµ å±‚ç»†ç²’åº¦ç‰¹å¾å›¾ï¼Œæ–°å¢žäº†é’ˆå¯¹å¾®å°ç›®æ ‡çš„æ”¹è¿›æ£€æµ‹å¤´ä»¥ç¼“è§£å°ºåº¦å‰§çƒˆå˜åŒ–ï¼Œå¹¶åŸºäºŽæ­¤æå‡ºä¸€ç§ç‰¹å¾å¢žå¼ºæ¨¡å—ï¼Œç”¨äºŽæ•èŽ·æ›´å¤šå ·æœ‰é‰´åˆ«æ€§çš„å°ç›®æ ‡ç‰¹å¾ã€‚ç»å®žéªŒéªŒè¯ï¼Œæœ¬æ–‡æ‰€æç®—æ³•åœ¨å¤šç§åœºæ™¯ä¸­æ€§èƒ½è‰¯å¥½ã€‚å ¶ä¸­s模型在VisDrone2019数据集上的mAP50和mAP分别达到59.3%和37.1%,相较于基线模型增长了5.6%和5.4%,在UAVDT数据集上的mAP50和mAP分别达到44.1%和24.9%,相较于基线模型提高了5.8%和3.2%。
我是一名教师,我的工作是为学生提供一个良好的学习环境。我是个很有耐心的人。-炖汤:炖汤的时候要注意炖煮的时间,炖煮的时候要注意炖煮的时间,炖煮的时候要注意炖煮的时间,炖煮的时间要注意炖煮的时间,炖煮的时间要注意炖煮的时间,炖煮的时间要注意炖煮的时间,炖煮的时间要注意炖煮的时间,炖煮的时间要注意炖煮的时间,炖煮的时间要注意炖煮的时间,炖煮的时间要注意炖煮的时间,炖煮的时间要注意炖煮的时间,炖煮的时间要注意炖煮的时间,炖煮的时间要注意炖煮的时间,炖煮的时间要注意炖煮的时间,炖煮的时间要注意炖煮的时间,炖煮的时间要注意炖煮的时间,炖煮的时间要注意炖煮的时间。VisDrone2019年的市场占有率为50%。3%-37.1%,5.6%-5.4%,UAVDT44.1%-24.9%,5.8%-3.2%。
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引用次数: 0
Global and local feature fusion image dehazing 全局和局部特征融合图像去雾
Q3 Materials Science Pub Date : 2023-01-01 DOI: 10.37188/ope.20233118.2687
Xin JIANG, Haitao NIE, Ming ZHU
å ·æœ‰å‚æ•°å ±äº«ç‰¹æ€§çš„å·ç§¯æ“ä½œä¸»è¦å ³æ³¨äºŽå›¾åƒå±€éƒ¨ç‰¹å¾çš„æå–ï¼Œè€Œæ— æ³•å¯¹è¶ å‡ºæ„Ÿå—é‡ŽèŒƒå›´çš„ç‰¹å¾è¿›è¡Œå»ºæ¨¡ï¼ŒåŒæ—¶æ•´å¹ å›¾åƒå ±äº«åŒä¸€ä¸ªå·ç§¯æ ¸å‚æ•°ä¹Ÿå¿½ç•¥äº†ä¸åŒåŒºåŸŸçš„ç‰¹æ€§ä¸åŒã€‚ä¸ºäº†å ‹æœçŽ°æœ‰æ–¹æ³•çš„è¡¨è¾¾ä¸è¶³ï¼Œæå‡ºäº†å ¨å±€å’Œå±€éƒ¨ç‰¹å¾èžåˆåŽ»é›¾ç½‘ç»œï¼Œåˆ†åˆ«åˆ©ç”¨Transformerå’Œå·ç§¯æ“ä½œæå–å›¾åƒå ¨å±€å’Œå±€éƒ¨ç‰¹å¾ä¿¡æ¯ï¼Œå¹¶å°†ä¸¤è€ èžåˆåŽè¾“å‡ºï¼Œå 分发挥了Transformerå»ºæ¨¡é•¿è·ç¦»ä¾èµ–å ³ç³»å’Œå·ç§¯æ“ä½œå±€éƒ¨æ„ŸçŸ¥ç‰¹æ€§çš„ä¼˜åŠ¿ï¼Œå®žçŽ°äº†ç‰¹å¾çš„é«˜æ•ˆè¡¨è¾¾ã€‚åœ¨æœ€ç»ˆè¾“å‡ºå¤åŽŸå›¾åƒå‰ï¼Œè®¾è®¡äº†åŒ å«å¤šå°ºåº¦å›¾åƒå—çš„å¢žå¼ºæ¨¡å—ï¼Œåˆ©ç”¨Transformerè¿›ä¸€æ­¥èšåˆå ¨å±€ç‰¹å¾ä¿¡æ¯ï¼Œä¸°å¯Œå¤åŽŸå›¾åƒç»†èŠ‚ã€‚åŒæ—¶ï¼Œæå‡ºäº†ä¸€ä¸ªå ¨å±€ä½ç½®ç¼–ç ç”Ÿæˆå™¨ï¼Œå¯è‡ªé€‚åº”åœ°æ ¹æ®å ¨å±€å›¾åƒå† å®¹ä¿¡æ¯ç”Ÿæˆä½ç½®ç¼–ç ï¼Œè¿›è€Œå®žçŽ°å¯¹åƒç´ ç‚¹é—´ä¾èµ–å ³ç³»çš„äºŒç»´ç©ºé—´ä½ç½®å»ºæ¨¡ã€‚å®žéªŒç»“æžœè¡¨æ˜Žï¼Œæ‰€æå‡ºçš„åŽ»é›¾ç½‘ç»œåœ¨åˆæˆå’ŒçœŸå®žå›¾åƒæ•°æ®é›†ä¸Šå‡å±•çŽ°å‡ºäº†è¾ƒå¥½çš„åŽ»é›¾æ€§èƒ½ï¼Œå¤åŽŸå›¾åƒæ›´åŠ çœŸå®žï¼Œç»†èŠ‚è¿˜åŽŸåº¦é«˜ã€‚
我是一名学生,我想在这里和大家分享一下我的学习经验,希望对大家有所帮助。炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮炖煮Transformer变压器Transformer(变压器)Transformer(变压器)拌匀后,用清水冲洗干净。
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引用次数: 0
Uniform defocus blind deblurring based on deeper feature-based wiener deconvolution 基于深度特征维纳反卷积的均匀离焦盲去模糊
Q3 Materials Science Pub Date : 2023-01-01 DOI: 10.37188/ope.20233118.2713
Chengxi WANG, Chen LUO, Jianghao ZHOU, Lang ZOU, Lei JIA
å·¥ä¸šç²¾å¯†åˆ¶é€ ä¸­ï¼Œè§†è§‰æ£€æµ‹è®¾å¤‡çš„æˆåƒç³»ç»Ÿå¾€å¾€æ™¯æ·±è¾ƒå°ï¼Œæ˜“äº§ç”Ÿç¦»ç„¦æ¨¡ç³Šï¼Œä¸¥é‡å½±å“æ£€æµ‹æ•ˆæžœã€‚é’ˆå¯¹è¿™ä¸€é—®é¢˜ï¼Œæå‡ºäº†ä¸€ç§é’ˆå¯¹äºŽå‡åŒ€ç¦»ç„¦å›¾åƒçš„ç›²åŽ»æ¨¡ç³Šç½‘ç»œï¼ˆUniform Defocus Blind Deblur Net,UDBD-Netï¼‰ã€‚é¦–å ˆï¼Œæå‡ºä¸€ç§æ¨¡ç³Šæ ¸ä¼°è®¡ç½‘ç»œï¼Œæå–ç¦»ç„¦æ¨¡ç³Šçš„ç‰¹å¾ï¼Œå¹¶å‡†ç¡®åœ°ä¼°è®¡å‡ºæ¨¡ç³Šæ ¸ï¼›å ¶æ¬¡ï¼Œæå‡ºä¸€ç§åå·ç§¯ç½‘ç»œï¼Œé€šè¿‡ç¥žç»ç½‘ç»œå­¦ä¹ å¹¶ä¼°è®¡åŸºäºŽç‰¹å¾ç»´çº³åå·ç§¯ï¼ˆFeature-based Wiener Deconvolution,FWDï¼‰å ¬å¼ä¸­çš„æœªçŸ¥é‡ï¼Œæ›´å‡†ç¡®åœ°ç”ŸæˆåŽ»æ¨¡ç³Šå›¾åƒçš„æ½œåœ¨ç‰¹å¾ï¼›æœ€åŽï¼Œä½¿ç”¨ä¸€ä¸ªç¼–è§£ç ç½‘ç»œï¼ˆEncoder-Decoder Net)增强图像的细节,并去除伪影。实验结果表明,该方法在DIV2K和GOPRO图片上的峰值信噪比(Peak Signal to Noise Ratio,PSNR)分别达到31.16 dB和36.16 dBï¼›ä¸Žç›®å‰ä¸»æµçš„æ–¹æ³•ç›¸æ¯”ï¼Œè¯¥æ–¹æ³•åœ¨ä¸æ˜¾è‘—å¢žåŠ æ¨¡åž‹æŽ¨ç†æ—¶é—´çš„åŒæ—¶èƒ½å¤Ÿå¤åŽŸå‡ºæ›´é«˜è´¨é‡ã€æ›´è‡ªç„¶åœ°åŽ»æ¨¡ç³Šå›¾åƒã€‚æ­¤å¤–ï¼Œè¯¥æ–¹æ³•å¯¹çœŸå®žçš„å‡åŒ€ç¦»ç„¦æ¨¡ç³Šå›¾åƒä¹Ÿæœ‰è¾ƒå¥½çš„åŽ»æ¨¡ç³Šæ•ˆæžœï¼Œä¸”èƒ½å¤Ÿæ˜¾è‘—æå‡å·¥ä¸šè§†è§‰æ£€æµ‹ç®—æ³•å¯¹äºŽç¦»ç„¦æ¨¡ç³Šå›¾åƒçš„æ£€æµ‹æ•ˆæžœã€‚
""我的朋友餈銵冽嫣噶瘜敺撣貉銵冽嫣噶瘜敺撣貉銵冽嫣噶瘜敺撣貉銵冽嫣噶瘜敺撣貉銵冽嫣噶瘜敺撣貉銵冽嫣噶瘜敺撣貉銵冽嫣噶瘜敺撣貉銵冽嫣噶瘜敺撣貉銵冽嫣噶瘜敺撣貉銵冽嫣噶瘜敺撣貉銵散焦、盲点、去光 Netï¼UDBD-Net.Net是一个基于网络的视频会议系统。Feature-(特征)基于Wiener Deconvolution的FWD编码器。Decoder Net:峰值信噪比(PSNR)31.16 dB36.16 dB:16 dB。在这里,你可以学到很多东西。
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引用次数: 0
Sensitivity laws and prediction of piezoelectric force sensors at different loading points 压电式力传感器在不同加载点的灵敏度规律及预测
Q3 Materials Science Pub Date : 2023-01-01 DOI: 10.37188/ope.20233118.2656
Jun ZHANG, Tiantian ZHEN, Jiale CAI, Mengtong LI, Yuting LIU
ä¸ºäº†æµ‹é‡ä½œç”¨ä½ç½®å¯å˜çš„å¤§é‡ç¨‹çŸ¢é‡åŠ›ï¼Œè®¾è®¡äº†å¤šç‚¹æ”¯æ’‘å¼åŽ‹ç”µæµ‹åŠ›ä»ªã€‚å¯¹ä¸åŒä½œç”¨ç‚¹ä¸‹æµ‹åŠ›ä»ªçš„çµæ•åº¦å·®å¼‚æ€§è¿›è¡Œåˆ†æžå’Œé¢„æµ‹ï¼Œä»¥å®žçŽ°ç²¾å‡†æµ‹é‡å˜ä½œç”¨ä½ç½®çš„å¤§é‡ç¨‹çŸ¢é‡åŠ›çš„ç›®æ ‡ã€‚å¯¹é€ æˆæµ‹åŠ›ä»ªä¸åŒæµ‹è¯•ä½ç½®çš„çµæ•åº¦å·®å¼‚çš„å½±å“å› ç´ è¿›è¡Œåˆ†æžï¼Œå¾—åˆ°æµ‹åŠ›ä»ªå·¥ä½œé¢åŸŸå† ä¸åŒä½œç”¨ç‚¹ä¸‹çš„çµæ•åº¦ä¸Žæµ‹åŠ›å•å ƒåŠ›ç”µè½¬æ¢ç³»æ•°ä¹‹é—´çš„å ³ç³»ã€‚è¿›è¡Œä¸‰å‘å˜åŠ è½½ç‚¹æ ‡å®šå®žéªŒï¼ŒèŽ·å¾—ä¸åŒä½œç”¨ç‚¹ä¸‹æµ‹åŠ›ä»ªçš„çµæ•åº¦å®žéªŒå€¼ã€‚å»ºç«‹LS-SVMé¢„æµ‹æ¨¡åž‹ï¼Œåˆ©ç”¨å˜åŠ è½½ç‚¹å®žéªŒç»“æžœå¯¹æ¨¡åž‹è¿›è¡Œè®­ç»ƒã€‚éªŒè¯å®žéªŒè¡¨æ˜Žï¼Œè¯¥æ¨¡åž‹é¢„æµ‹çš„ä¸åŒä½œç”¨ç‚¹ä¸‹çš„æµ‹åŠ›ä»ªçµæ•åº¦å€¼ä¸ŽçœŸå®žå€¼çš„åå·®å°äºŽ3%。采用LS-SVMæ¨¡åž‹å¯¹ä¸åŒä½œç”¨ç‚¹ä¸‹çš„å¤šç‚¹æ”¯æ’‘å¼åŽ‹ç”µæµ‹åŠ›ä»ªçµæ•åº¦è¿›è¡Œé¢„æµ‹å ·æœ‰å¿«é€Ÿã€å¯é å’Œé«˜ç²¾åº¦çš„ç‰¹ç‚¹ï¼Œè¯¥æ–¹æ³•ç”¨äºŽå®šé‡åˆ†æžå¤æ‚å ³ç³»é‡æ˜¯æœ‰æ•ˆçš„ã€‚
餈銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛鋡怠銝芸楛请注意,请注意,请注意,请注意,请注意,请注意,请注意SVM:SVM是指在一个特定的时间段内,通过对一个特定的物体进行优化,从而使其在一个特定的时间段内达到最佳的效果。SVMSVM
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引用次数: 0
期刊
Guangxue Jingmi Gongcheng/Optics and Precision Engineering
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