[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"item-2975":3,"related-2975":38},{"id":4,"title":5,"url":6,"summary":7,"summary_zh":8,"content":9,"source_name":10,"source_url":8,"published_at":11,"category":12,"cover_url":8,"hotness":13,"is_selected":14,"score":15,"score_detail":16,"sources":24,"tags":26,"search_phrases":32,"slug":35,"view_count":36,"doi":8,"paper":8,"created_at":37},2975,"新华社：智能农机打开中国田野新可能——吉林玉米地触摸屏收割机与激光除草机器人","http:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279316918\u002Fsmart-gears-open-new-possibilities-in-china-fields","新华社9-19报道吉林松源玉米收获机电子控制系统让驾驶员通过单一屏幕管理收获全过程，本土企业年销量已超2000台。第四代激光除草机器人在公主岭试验田作业，由长春理工大学联合产业伙伴研发，作物识别率超99.5%、每小时可清除5-10万株杂草，2026年底预计进入量产。\"十四五\"期间中国农作物耕种收综合机械化率达76.7%、农业无人机超30万架。",null,"[![Image 1: China News](https:\u002F\u002Fassets.kreatio.net\u002Fnn_logos\u002Fchina-news.png)](http:\u002F\u002Fwww.chinanews.net\u002F)\n\n[![Image 2](https:\u002F\u002Fassets.kreatio.net\u002Fnn_logos\u002Fchina-news.png)](http:\u002F\u002Fwww.chinanews.net\u002F)\n\n*   [Home](http:\u002F\u002Fwww.chinanews.net\u002F)\n*   [Asia Pacific News](http:\u002F\u002Fwww.chinanews.net\u002Fcategory\u002Fasia-pacific-news)\n*   [International News](http:\u002F\u002Fwww.chinanews.net\u002Fcategory\u002Fbreaking-international-news)\n*   [Business News](http:\u002F\u002Fwww.chinanews.net\u002Fcategory\u002Fbreaking-business-news)\n*   [Search News](http:\u002F\u002Fwww.chinanews.net\u002Farchive)\n*   [Network](http:\u002F\u002Fwww.themainstreammedia.com\u002F)\n\n*   [![Image 3: facebook](https:\u002F\u002Fassets.kreatio.net\u002Fweb\u002Fnewsnet\u002Fimages\u002Ffacebook.jpg)](http:\u002F\u002Fwww.facebook.com\u002Fpages\u002FChina-News\u002F114750261922882)\n*   [![Image 4: google](https:\u002F\u002Fassets.kreatio.net\u002Fweb\u002Fnewsnet\u002Fimages\u002Fgoogle_pls.jpg)](https:\u002F\u002Fplus.google.com\u002F109476659167282702082)\n*   [![Image 5: rss](https:\u002F\u002Fassets.kreatio.net\u002Fweb\u002Fnewsnet\u002Fimages\u002Frss_feed.jpg)](https:\u002F\u002Ffeeds.chinanews.net\u002Frss\u002F9366300fc9319e9b)\n*   [![Image 6: twitter](https:\u002F\u002Fassets.kreatio.net\u002Fweb\u002Fnewsnet\u002Fimages\u002Ftwitter.jpg)](https:\u002F\u002Ftwitter.com\u002FChinaNewsNet)\n\nSun, 20 Sept 2026\n\n#### [_«_ Back to Home](http:\u002F\u002Fwww.chinanews.net\u002F)\n\n![Image 7: Smart gears open new possibilities in China's fields](https:\u002F\u002Fchitra-api.kreatio.com\u002Fapi\u002Fv1\u002Fwps\u002Fdb2bc74\u002Faa68d274-a88a-4a03-a6dd-1bf1a811f75a\u002F0\u002FXxjwshE000026-20260919-CBMFN0A001-1156x770.jpg)\n\n## [Smart gears open new possibilities in China's fields](http:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279316918\u002Fsmart-gears-open-new-possibilities-in-china-fields#)\n\nXinhua   \n19 Sep 2026, 14:15 GMT+\n\nCHANGCHUN, Sept. 19 (Xinhua) -- As cornfields in northeast China's Jilin Province turn golden for the autumn harvest, bringing in the crop now requires just a few taps on a touchscreen.\n\nInside a corn harvester at Mushen Agricultural Machinery Co., Ltd. in Songyuan, a major corn-producing area, an electronic control system allows the operator to manage every stage of harvesting through a single screen.\n\n\"Ten years ago, we could sell only a few hundred machines a year. Now, our annual sales have reached more than 2,000 at their peak,\" said Wang Xincheng, general manager of the company.\n\nOver the past decade, the share of domestically produced components used in the company's harvesters has risen by about 15 percentage points to 95 percent, while advances in core components and electronic controls have helped narrow the technological gap with comparable foreign products, Wang said.\n\nSome 200 kilometers away in Gongzhuling, another machine is tackling a different field task -- without the use of chemical herbicides.\n\nAt a test field in Changchun's National Agricultural High-Tech Industry Demonstration Zone, a silver-gray, fully electric self-propelled robot glides between rows of corn. An onboard camera scans the field, an AI system distinguishes weeds from crops, and millimeter-level laser beams remove weeds without touching the corn plants.\n\nDeveloped by Changchun University of Science and Technology and its industry partners, the fourth-generation robot has a crop recognition rate of more than 99.5 percent. In field trials, it could remove 50,000 to 100,000 weeds in an hour.\n\nBy using lasers instead of herbicides, the machine provides a solution to reduce chemical usage and helps protect the fertile black soil of northeast China.\n\n\"We designed the robot around the needs of Chinese farming,\" said Wang Xiantao, a member of the research team. \"Each laser-weeding unit works like a building block, allowing the machine to be adapted for various farming scenarios.\"\n\nHe said the robot is expected to enter mass production by the end of 2026.\n\nThe changes seen in Jilin are also unfolding elsewhere in China. From touchscreen harvesters to laser-weeding robots, machines are taking on more farm work and performing it with greater precision.\n\nDuring the 14th Five-Year Plan period (2021-2025), China's comprehensive mechanization rate for crop plowing, sowing and harvesting reached 76.7 percent, with major grain crops basically achieving full-process mechanization, according to the Ministry of Agriculture and Rural Affairs.\n\nMeanwhile, more than 300,000 agricultural drones are now in use nationwide, the largest number in the world.\n\nChina's 15th Five-Year Plan (2026-2030) calls for high-quality development of agricultural machinery and closer integration of farmland, crop varieties, machinery and farming practices. A specific national plan for crop farming development released recently also calls for the development and application of high-end intelligent machinery for large-scale farmland and lighter, more efficient equipment for hilly and mountainous areas.\n\n\"Rapid advances in information technology and AI are becoming deeply integrated with agricultural production,\" said Xia Xianfei, a researcher with the Nanjing Institute of Agricultural Mechanization under the Ministry of Agriculture and Rural Affairs. Smart equipment such as drones and agricultural robots can take over labor-intensive and repetitive tasks while improving farming efficiency, Xia added.\n\nIn Jilin, where the comprehensive mechanization rate for the plowing, sowing and harvesting of major crops has reached 95 percent, research institutes, universities and manufacturers are being brought together to develop smarter agricultural equipment.\n\nIn Henan, another major corn-producing province, BeiDou navigation, 5G communications, new energy technologies and autonomous driving are being integrated into farm machinery to refine the precision and automation of field operations.\n\nIn Xinjiang, research projects launched this year are targeting unmanned cotton-field operations, intelligent sowing, precise control of water, fertilizer and pesticides, and improvements to domestically produced cotton pickers.\n\nChinese-made agricultural machinery is also reaching overseas markets.\n\nChinese cotton pickers are gaining ground in Central Asia, with manufacturers adapting their machines to local planting patterns and harvesting conditions.\n\nThe Xinjiang branch of China Railway Construction Heavy Industry Co., Ltd. delivered a new batch of cotton pickers to Central Asia in July. Orders from the region account for more than 70 percent of its production capacity this year, according to the company.\n\nFeng Guang, vice president of Xinjiang Boshiran Intelligent Agricultural Machinery Co., Ltd., said Chinese high-end cotton pickers can match leading international products in harvesting efficiency while costing about half as much as comparable European and U.S. machines.\n\nWhat is happening in Jilin, Henan, Xinjiang and many other areas reflects a broad shift in how farming is done -- toward greater precision, automation and intelligence.\n\n### [Share article:](http:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279316918\u002Fsmart-gears-open-new-possibilities-in-china-fields#)\n\n Shares \n\n![Image 8: facebook sharing button](https:\u002F\u002Fplatform-cdn.sharethis.com\u002Fimg\u002Ffacebook.svg)Share\n\n![Image 9: twitter sharing button](https:\u002F\u002Fplatform-cdn.sharethis.com\u002Fimg\u002Ftwitter.svg)Post\n\n![Image 10: reddit sharing button](https:\u002F\u002Fplatform-cdn.sharethis.com\u002Fimg\u002Freddit.svg)Share\n\n![Image 11: flipboard sharing button](https:\u002F\u002Fplatform-cdn.sharethis.com\u002Fimg\u002Fflipboard.svg)Flip\n\n![Image 12: email sharing button](https:\u002F\u002Fplatform-cdn.sharethis.com\u002Fimg\u002Femail.svg)Email\n\n[](https:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279016473\u002Fwhy-becoming-chinese-trend-is-filling-shopping-carts-worldwide)[Why BEIJING, April 28 (Xinhua) -- I'm gonna let you in on a little secret, OK? Tomorrow you are turning Chinese. That's how Sherry Zhu, a Chinese American creator...chinanews](https:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279016473\u002Fwhy-becoming-chinese-trend-is-filling-shopping-carts-worldwide \"Why\")\n\nUndo\n\n[](https:\u002F\u002Fwww.blinkist.com\u002Fmagazine\u002Fposts\u002Fi-asked-chatgpt-what-separates-the-rich-from-everyone-else-tts-chatgpt)[I Asked AI What Rich People Do Differently. The Answer Was One Word.Not stocks. Not crypto. Not connections. The AI kept circling back to something far more ordinary — and far more powerful.Blinkist Magazine | [Sponsored](http:\u002F\u002Fpopup.taboola.com\u002Fen\u002F?template=colorbox&utm_source=newsnet-chinanews&utm_medium=referral&utm_content=thumbs-feed-01:Below%20Article%20Thumbnails%20|%20Card%202:)[Sponsored](http:\u002F\u002Fpopup.taboola.com\u002Fen\u002F?template=colorbox&utm_source=newsnet-chinanews&utm_medium=referral&utm_content=thumbs-feed-01:Below%20Article%20Thumbnails%20|%20Card%202:)](https:\u002F\u002Fwww.blinkist.com\u002Fmagazine\u002Fposts\u002Fi-asked-chatgpt-what-separates-the-rich-from-everyone-else-tts-chatgpt \"I Asked AI What Rich People Do Differently. The Answer Was One Word.\")\n\nUndo\n\n[](https:\u002F\u002Fwww.blinkist.com\u002Fmagazine\u002Fposts\u002Fthe-5-hour-rule-the-quiet-habit-that-shaped-a-trillionaires-mind)[The Richest Person Alive Spends Five Hours a Week on Something Most People Quit in School It is not networking. It is not investing. 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Changes in Therapy-Resistant Neovascular Age-Related Macular Degeneration – The Doctor's Channel\")\n\nUndo\n\n[](https:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F278049057\u002Fus-fbi-finds-thousands-of-new-files-on-jfk-assassination)[Trump’s order reveals thousands of hidden JFK assassination documents chinanews](https:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F278049057\u002Fus-fbi-finds-thousands-of-new-files-on-jfk-assassination \"Trump’s order reveals thousands of hidden JFK assassination documents\")\n\nUndo\n\n[](https:\u002F\u002Fanti-aging.site\u002Ftbl\u002Fadv-01)[Dermatologists: The 1 Vitamin You Need If You Have Crepey Skin Anti-Aging Center | 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el-Mandeb](http:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279305961\u002Fyemeni-rebels-tighten-control-of-bab-el-mandeb)\n\nChina News.Net\n\n[![Image 15](https:\u002F\u002Fchitra-api.kreatio.com\u002Fapi\u002Fv1\u002Fwps\u002F46db7b7\u002Fff47c73f-61c3-4a9a-9e7b-3f5f9ad38b30\u002F1\u002FCanada-summit-200x200.jpg)](http:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279305952\u002Fcarney-seeks-global-investment-as-us-trade-war-weighs-on-canada)\n\n##### [Carney seeks global investment as US trade war weighs on Canada](http:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279305952\u002Fcarney-seeks-global-investment-as-us-trade-war-weighs-on-canada)\n\nChina News.Net\n\n[![Image 16](https:\u002F\u002Fchitra-api.kreatio.com\u002Fapi\u002Fv1\u002Fwps\u002Fc35e3ff\u002Febb345a5-8e55-4e96-a5f7-2e873178a5c1\u002F1\u002FDario-Amodei-2-200x200.jpg)](http:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279303384\u002Fanthropic-s-amodei-urges-slower-ai-progress-over-safety-risks)\n\n##### [Anthropic's Amodei urges slower AI progress over safety risks](http:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279303384\u002Fanthropic-s-amodei-urges-slower-ai-progress-over-safety-risks)\n\nChina News.Net\n\n[![Image 17](https:\u002F\u002Fchitra-api.kreatio.com\u002Fapi\u002Fv1\u002Fwps\u002Fb20b8d3\u002F87d213c3-a353-417f-871f-613b29606a46\u002F1\u002FClaudia-Sheinbaum-200x200.jpg)](http:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279301400\u002Fus-mexico-seek-tariff-deal-as-election-deadline-nears)\n\n##### [US, Mexico seek tariff deal as election deadline nears](http:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279301400\u002Fus-mexico-seek-tariff-deal-as-election-deadline-nears)\n\nChina News.Net\n\n[![Image 18: Smart gears open new possibilities in China's fields](https:\u002F\u002Fchitra-api.kreatio.com\u002Fapi\u002Fv1\u002Fwps\u002F15b0405\u002Faa68d274-a88a-4a03-a6dd-1bf1a811f75a\u002F0\u002FXxjwshE000026-20260919-CBMFN0A001-200x200.jpg)](http:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279316918\u002Fsmart-gears-open-new-possibilities-in-china-fields)\n\n##### [Smart gears open new possibilities in China's fields](http:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279316918\u002Fsmart-gears-open-new-possibilities-in-china-fields)\n\nChina News.Net\n\n[![Image 19](https:\u002F\u002Fchitra-api.kreatio.com\u002Fapi\u002Fv1\u002Fwps\u002F97093e9\u002F7cc0d547-0ad2-49e6-9b9a-1a1080df1113\u002F0\u002FXxjpbeE000115-20260919-PEPFN0A001-200x200.jpg)](http:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279316903\u002Fkyrgyzstan-bishkek-chinese-vehicle-green-transportation)\n\n##### [KYRGYZSTAN-BISHKEK-CHINESE VEHICLE-GREEN TRANSPORTATION](http:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279316903\u002Fkyrgyzstan-bishkek-chinese-vehicle-green-transportation)\n\nChina News.Net\n\n[![Image 20](https:\u002F\u002Fchitra-api.kreatio.com\u002Fapi\u002Fv1\u002Fwps\u002F815352d\u002F195d8015-9ce2-4766-b6df-b44e8a46247a\u002F0\u002FANI-20260919054259-200x200.jpg)](http:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279316831\u002Fa-heartwarming-feeling-manu-bhaker-on-being-chosen-as-india-flag-bearer-for-asian-games-2026-opening-ceremony)\n\n##### [\"A heartwarming feeling\": Manu Bhaker on being chosen as India's flag-bearer for Asian Games 2026 opening ceremony](http:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279316831\u002Fa-heartwarming-feeling-manu-bhaker-on-being-chosen-as-india-flag-bearer-for-asian-games-2026-opening-ceremony)\n\nChina News.Net\n\n[![Image 21](https:\u002F\u002Fchitra-api.kreatio.com\u002Fapi\u002Fv1\u002Fwps\u002F5668807\u002Fce3c81b7-8b66-4dcf-b97f-db40e13252a1\u002F0\u002FXxjidwE000010-20260919-CBMFN0A001-200x200.jpg)](http:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279316676\u002Faustrian-parliament-speaker-calls-for-mutual-learning-fair-cooperation-between-europe-china)\n\n##### [Austrian parliament speaker calls for mutual learning, fair cooperation between Europe, China](http:\u002F\u002Fwww.chinanews.net\u002Fnews\u002F279316676\u002Faustrian-parliament-speaker-calls-for-mutual-learning-fair-cooperation-between","新华社·中国新闻网","2026-09-19T00:00:00Z","报道",10,false,84,{"impact":17,"substance":18,"depth":19,"authority":20,"freshness":21,"relevant":22,"comment":23},24,20,16,15,9,1,"央媒报道国产智能农机与激光除草机器人突破，含国产化率、识别率等硬数据，产业示范价值突出，值得入选每日精选。",[25],{"name":10,"url":6},[27,28,29,30,31],"智慧农业","农业机器人","智能农机","激光除草","玉米收获",[33,34],"吉林 玉米 智能收割机","长春理工大学 激光除草机器人","吉林玉米智能收割机-2975",0,"2026-09-20T00:03:00.504266Z",{"total":39,"page":22,"page_size":39,"items":40},6,[41,91,114,146,178,199],{"id":42,"title":43,"url":44,"summary":45,"summary_zh":46,"content":8,"source_name":47,"source_url":44,"published_at":48,"category":49,"cover_url":8,"hotness":13,"is_selected":14,"score":50,"score_detail":51,"sources":56,"tags":58,"search_phrases":61,"slug":64,"view_count":36,"doi":65,"paper":66,"created_at":90},2808,"Design and performance evaluation of a solar powered remote controlled robot for precision seed planting","https:\u002F\u002Fdoi.org\u002F10.1038\u002Fs41598-026-68946-0","Abstract The increasing demand for sustainable agricultural mechanization has accelerated the development of precision and energy-efficient planting systems. This study presents the design, optimization, and performance evaluation of a solar-powered remotely controlled robot for precision seed planting. The robotic platform integrates a photovoltaic energy system, an electric seed-metering mechanism, and an electronically controlled seed-depth adjustment unit to achieve accurate seed placement while minimizing energy consumption. The system was experimentally evaluated at four robot forward speeds (0.42–1.60 km h −1 ) and four target seed spacings (10–25 cm). Results showed high seed placement accuracy ranging from 98.08% to 98.80%, while the miss and multiple indices remained below 2% and 2.5%, respectively. Optimal metering performance was obtained at robot speeds of 0.82–1.20 km h −1 . The seed-depth adjustment mechanism exhibited a strong linear relationship between motor rotations and penetration depth (R 2 = 0.9996), ensuring precise depth control. Energy analysis indicated low power consumption (0.048–0.084 kWh) and a solar power supply ratio (95–167%). These findings demonstrate that integrating solar energy with wirelessly controlled agricultural robotics can improve planting precision while enhancing energy efficiency and environmental sustainability in precision farming systems.","摘要 可持续农业机械化需求的不断增长，加速了精准与节能播种系统的发展。本研究介绍了一种用于精准播种的太阳能遥控机器人的设计、优化与性能评估。该机器人平台集成了光伏能源系统、电动排种机构以及电控播深调节单元，在实现精准投种的同时最大限度降低能耗。系统在四种机器人前进速度（0.42–1.60 km h⁻¹）和四种目标粒距（10–25 cm）条件下进行了试验评估。结果表明，播种位置精度较高，为98.08%–98.80%，漏播指数和重播指数分别低于2%和2.5%。在机器人速度为0.82–1.20 km h⁻¹时获得最佳排种性能。播深调节机构在电机转数与入土深度之间表现出较强的线性关系（R² = 0.9996），确保了播深精准控制。能耗分析表明，功耗较低（0.048–0.084 kWh），太阳能供电比例为95%–167%。这些结果表明，将太阳能与无线控制农业机器人相结合，可在提高播种精度的同时提升精准农业系统的能源效率和环境可持续性。","Scientific Reports","2026-09-15T00:00:00Z","论文",79,{"impact":19,"substance":52,"depth":53,"authority":54,"freshness":21,"relevant":22,"comment":55},22,18,14,"核心期刊论文，太阳能遥控精准播种机器人实测精度与能耗数据扎实，方法新颖、结论可靠，对智慧农业装备研发有参考价值，值得进入每日精选。",[57],{"name":47,"url":44},[27,28,29,59,60],"光伏农业","精准播种",[62,63],"农业机器人 光伏农业 智慧农业 智能农机","农业机器人 光伏农业","农业机器人光伏农业智慧农业智能农机-2808","10.1038\u002Fs41598-026-68946-0",{"doi":65,"openalex_id":67,"authors":68,"venue":47,"cited_by_count":36,"oa_url":81,"card":82,"direction":88,"ingested_from":89},"W7213362777",[69,71,73,75,77,79],{"name":70,"orcid":8},"Shimaa Aboharg",{"name":72,"orcid":8},"El-Keway Abdelfattah",{"name":74,"orcid":8},"Ismail Abdelmotaleb",{"name":76,"orcid":8},"Ayman Eldesoukey",{"name":78,"orcid":8},"Z. M. Omara",{"name":80,"orcid":8},"Noureldin Sharaby","https:\u002F\u002Fwww.nature.com\u002Farticles\u002Fs41598-026-68946-0.pdf",{"tldr":83,"method":84,"finding":85,"direction":86,"opportunity":87},"设计并评估了一台太阳能遥控精量播种机器人，实现高精度播种与低能耗。","集成光伏系统、电控排种与播深调节，测试4种速度与4种间距。","播种精度达98%以上，漏播重播率低，太阳能供电比达95–167%。","智慧农业 \u002F 农业物联网","可探索多机协同与自适应速度控制，以提升复杂田间条件下的播种效率与续航。","农业绿色发展与碳","openalex","2026-09-17T23:31:16.617073Z",{"id":92,"title":93,"url":94,"summary":95,"summary_zh":8,"content":96,"source_name":97,"source_url":8,"published_at":98,"category":12,"cover_url":8,"hotness":13,"is_selected":14,"score":99,"score_detail":100,"sources":104,"tags":106,"search_phrases":109,"slug":112,"view_count":36,"doi":8,"paper":8,"created_at":113},2446,"智能农机装备研发创新与验证推广实务培训班 9-20~9-23 杭州萧山举办","http:\u002F\u002Fwww.amic.agri.cn\u002FsecondLevelPage\u002Finfo\u002F3\u002F224557","农业农村部农业机械化总站发出通知(农机化总站〔2026〕81 号),拟于 2026 年 9 月 20 日至 9 月 23 日在浙江省杭州市萧山区举办'智能农机装备研发创新与验证推广实务培训班'。培训内容涵盖农业人工智能发展专题(农业机器人、智能农机标准体系等)、智能农机关键核心零部件与算法产业化应用(农业芯片、机器视觉、北斗定位导航等)、典型应用场景(大田、畜禽、水产、设施种植)以及实地观摩与农业机器人现场展示。培训对象包括各省农机中心、试验鉴定机构、推广机构、生产企业等。","农机化总站〔2026〕81号\n\n各相关单位：\n\n为贯彻落实中央一号文件精神及农业农村部关于加快农业人工智能发展的系列部署，深入推进人工智能与农机融合发展，着力提升智能农机装备的自主创新水平，发挥典型应用场景的示范引领作用，总站拟于2026年9月20日至9月23日在浙江省杭州市萧山区举办“智能农机装备研发创新与验证推广实务培训班”。现将有关事项通知如下。\n\n一、培训内容\n\n（一）农业人工智能发展专题报告\n\n1、“人工智能+农机”发展现状与趋势\n\n2、农业机器人发展实践与应用\n\n3、智能农机装备标准体系架构\n\n4、智能机器人安全实践对农机装备智能化发展的启示\n\n5、智能网联汽车关键核心技术对智能农机装备的借鉴与启示\n\n（二）智能农机关键核心零部件与算法产业化应用专题报告\n\n1、农业芯片核心技术发展与产业应用现状分析\n\n2、农业传感器在智能农机装备和农业机器人中的实践与应用\n\n3、机器视觉设备与算法在智能农机发展中的应用\n\n4、北斗定位与导航技术在农业精准作业领域中的应用\n\n5、智能农机串行控制和通信数据网络技术要求\n\n（三）智能农机装备在典型应用场景中的实践专题报告\n\n1、大田智能农机通用性关键性技术与装备\n\n2、畜禽养殖智能化技术与装备\n\n3、水产智慧养殖机械化技术与装备\n\n4、设施种植智能化机械装备集成与应用\n\n（四）人工智能与大数据应用场景实地观摩与农业机器人现场展示交流\n\n二、培训对象\n\n各省（自治区、直辖市）农机中心、农机试验鉴定机构、农机化技术推广机构、高等院校、科研院所、行业协会、检测机构、智能农机装备生产制造企业、农业生产经营主体、金融投资机构等相关人员。\n\n三、时间地点\n\n（一）培训时间：9月20日报到，9月21日至9月22日培训，9月23日疏散。\n\n（二）培训地点：杭州市萧山区宝盛宾馆（浙江省杭州市萧山区市心中路618号，联系电话：潘瑶 15906715852，洪燕芳 13588705700）。\n\n四、报名及培训费用\n\n（一）报名方式。请使用微信扫描下方二维码，按要求填写信息后提交。报名截止时间为9月16日。\n\n![Image 1](http:\u002F\u002F202.127.42.160:3009\u002Fupload_file\u002F2026\u002F08\u002F10\u002F20260810101025836.png)\n\n报名二维码\n\n（二）培训费用。培训班收取培训费2000元\u002F人(含培训、教材、培训证书、用餐等费用)，餐饮统一安排，交通费、住宿费（340元\u002F晚）自理，不安排接送站。\n\n（三）缴费方式。培训费采用银行汇款或报到时刷银行卡、支付宝或微信支付，现场不收取现金。银行汇款请务必在备注栏标明“智能农机培训”，并在报到时出示汇款凭证复印件，汇款单位名称与开票单位名称需保持一致，如不一致，还请备注参训人员单位名称、姓名，并开具证明提供发票信息。\n\n收款单位：农业农村部农业机械化总站；\n\n开户银行：中国农业银行股份有限公司北京十里河支行；\n\n银行账号：11220701040017219。\n\n五、其他事项\n\n（一）为统筹农业机器人室外展区布展工作，请有意参展的单位于2026年8月31日（含）前将产品资料（产品图片、实地作业视频、关键技术介绍等）、企业联系人及联系方式发送至邮 箱njznc@agri.gov.cn。我们将对所有报送材料进行择优筛选，并于9月7日（含）前向通过遴选的对象发出布展通知。\n\n（二）请参训学员严格遵守培训纪律，培训期间注意人身和财产安全。\n\n（三）总站将为参训学员颁发培训证书。\n\n（四）培训期间，要严格落实中央八项规定及其实施细则精神，不得安排与培训内容无关的事项，严禁外出参加各种聚会、拜访、宴请等活动，不得饮酒。\n\n（五）联系人：\n\n李 苗 010-59199179，18753469583；\n\n赵泽明 010-59199016，15201628716。\n\n附件：乘车路线\n\n农业农村部农业机械化总站\n\n2026年8月6日\n\n附件\n\n乘车路线\n\n一、杭州萧山国际机场。酒店距萧山国际机场约22公里。\n\n1.打车\u002F网约车，30—40分钟，费用：预估30—45元；\n\n2.地铁，“萧山国际机场”乘地铁7号线“吴山广场”方向至“建设三路”，同站转2号线“朝阳”方向至“人民广场”D口出站，往南步行约10分钟。\n\n二、杭州东站。酒店距杭州东站约16公里。\n\n1.打车\u002F网约车，30—40分钟，费用：预估25—35元；\n\n2.地铁，“火车东站”乘地铁4号线“浦沿”方向至“钱江路”，同站转2号线“朝阳”方向至“人民广场”D口出站，往南步行约10分钟。\n\n三、杭州站。酒店距杭州站约15公里。\n\n1.打车\u002F网约车，30—40分钟，费用：预估35—50元；\n\n2.地铁，“城站”乘地铁5号线“姑娘桥”方向至“人民广场”D口出站，往南步行约10分钟。\n\n四、杭州南站。酒店距杭州南站约5公里。\n\n1.打车\u002F网约车，15—25分钟，费用：预估20—30元；\n\n2.地铁，“火车南站”乘地铁5号线“南湖东”方向至“人民广场”D口出站，往南步行约10分钟。\n\n五、杭州西站。酒店距杭州南站约40公里。\n\n1.打车\u002F网约车，80—90分钟，费用：预估100—160元；\n\n2.地铁，“火车西站”乘地铁19号线“永盛路”方向至“沈塘桥”，同站转2号线“朝阳”方向至“人民广场”D口出站，往南步行约10分钟。","中国农业机械化信息网 2026-09-15","2026-09-14T16:00:00Z",68,{"impact":53,"substance":19,"depth":101,"authority":54,"freshness":102,"relevant":22,"comment":103},12,8,"农业农村部农机化总站主办的全国性智能农机培训通知，课程覆盖农业AI、农业芯片、传感器、北斗导航与典型场景，具备行业指导价值，但属会议培训类事务性通知，信息增量有限。",[105],{"name":97,"url":94},[27,107,28,29,108],"农业人工智能","农机培训",[110,111],"农业人工智能 农业机器人 农机培训 智慧农业","农业人工智能 农业机器人","农业人工智能农业机器人农机培训智慧农业-2446","2026-09-15T00:04:20.009285Z",{"id":115,"title":116,"url":117,"summary":118,"summary_zh":8,"content":8,"source_name":119,"source_url":8,"published_at":120,"category":49,"cover_url":8,"hotness":13,"is_selected":14,"score":121,"score_detail":122,"sources":127,"tags":129,"search_phrases":132,"slug":135,"view_count":36,"doi":8,"paper":136,"created_at":145},3002,"改进生物神经网络的农业播种机全覆盖路径规划","https:\u002F\u002Fwww.mdpi.com\u002F2077-0472\u002F16\u002F18\u002F1968","江苏大学魏军等提出一种考虑播种与非播种运动模式切换机制的改进生物神经网络（BNN）方法，基于周围环境条件将下一节点状态分类为播种、封闭或转移节点。在BNN景观引导下机器沿平行直线路径继续播种操作；检测到封闭节点时切换至非播种模式并使用深度优先搜索算法搜索潜在封闭区域；检测到转移节点时同样切换非播种模式搜索合理的新目标节点。仿真表明该方法实现播种操作的完全覆盖同时避免重复遍历已播种区域。","MDPI Agriculture 16(18):1968","2026-09-14T00:00:00Z",69,{"impact":101,"substance":123,"depth":124,"authority":125,"freshness":39,"relevant":22,"comment":126},21,17,13,"提出改进生物神经网络的全覆盖路径规划方法，方法新颖、结论可靠，但属细分领域学术进展，公共影响有限。",[128],{"name":119,"url":117},[27,107,29,130,131],"路径规划","播种机",[133,134],"江苏大学 播种机 全覆盖路径规划","生物神经网络 播种机 路径规划","江苏大学播种机全覆盖路径规划-3002",{"doi":8,"openalex_id":8,"authors":137,"venue":8,"cited_by_count":36,"oa_url":8,"card":138,"direction":142,"ingested_from":144},[],{"tldr":139,"method":140,"finding":141,"direction":142,"opportunity":143},"提出改进生物神经网络，实现农业播种机全覆盖路径规划并避免重复播种。","改进BNN结合节点分类与深度优先搜索，仿真验证。","方法实现播种完全覆盖，同时避免重复遍历已播种区域。","农业人工智能与决策模型","可结合真实农田地形与多机协同，验证动态环境下的路径规划鲁棒性。","agent","2026-09-20T00:03:08.288198Z",{"id":147,"title":148,"url":149,"summary":150,"summary_zh":151,"content":8,"source_name":152,"source_url":149,"published_at":153,"category":49,"cover_url":8,"hotness":13,"is_selected":14,"score":154,"score_detail":155,"sources":157,"tags":159,"search_phrases":162,"slug":165,"view_count":36,"doi":166,"paper":167,"created_at":177},2929,"A REAL-TİME AI-DRİVEN AGRİCULTURAL ROVER INTEGRATİNG PLANT DİSEASE DETECTİON AND GEO-REFERENCED SOİL MOİSTURE ANALYSİS","https:\u002F\u002Fdoi.org\u002F10.30546\u002Femnaa.2026.02.28.123","This paper presents an autonomous agricultural ground robot for real-time monitoring of plant health and soil moisture in large-scale crop fields.The proposed system integrates a deep learning-based perception subsystem with autonomous navigation and a custom ground control station (GCS) to enable continuous and geo-referenced field analysis.Visual data are acquired using an onboard camera and processed in real time on a Raspberry Pi using an object detection model (ODM) to identify disease-related visual symptoms such as discoloration, deformation and leaf degradation.Each detected instance is associated with a confidence score and accurately geo-tagged using GPS data.In parallel, a contact-based soil moisture sensor performs localized measurements at fixed spatial intervals along a grid-based coverage trajectory.All perception outputs are synchronized with navigation data and transmitted via a telemetry link to the GCS where live video with detection overlays, rover trajectory, mission status and sensor telemetry are visualized and logged for postmission analysis.Field experiments conducted under real operating conditions demonstrate stable autonomous operation and achieve an overall plant disease detection accuracy of 85-90%, confirming the effectiveness of the proposed system for precision agriculture applications.","本文提出了一种用于大规模农田植物健康和土壤湿度实时监测的自主农业地面机器人。该系统将基于深度学习的感知子系统与自主导航及自定义地面控制站（GCS）相结合，实现连续且带地理参考的田间分析。视觉数据通过机载相机采集，并利用目标检测模型（ODM）在树莓派上实时处理，以识别与病害相关的视觉症状，如变色、变形和叶片退化。每个检测到的实例均关联置信度分数，并通过GPS数据精确标注地理位置。与此同时，基于接触式的土壤湿度传感器沿网格化覆盖轨迹以固定空间间隔进行局部测量。所有感知输出与导航数据同步，并通过遥测链路传输至地面控制站，在此可视化并记录带有检测叠加层的实时视频、漫游车轨迹、任务状态和传感器遥测数据，以供任务后分析。在实际运行条件下进行的田间实验证明了稳定的自主运行能力，并实现了85-90%的植物病害整体检测准确率，验证了所提系统在精准农业应用中的有效性。","Scientific Journal","2026-09-18T00:00:00Z",77,{"impact":53,"substance":123,"depth":124,"authority":125,"freshness":102,"relevant":22,"comment":156},"集成深度学习病害识别与地理参考土壤墒情监测的自主农业机器人论文，田间实测准确率85-90%，方法新颖且数据可靠，对精准农业有参考价值。",[158],{"name":152,"url":149},[27,107,28,160,161],"植物病害检测","土壤墒情监测",[163,164],"农业机器人 病害检测 土壤墒情","Raspberry Pi 植物病害识别","农业机器人病害检测土壤墒情-2929","10.30546\u002Femnaa.2026.02.28.123",{"doi":166,"openalex_id":168,"authors":169,"venue":152,"cited_by_count":36,"oa_url":149,"card":172,"direction":86,"ingested_from":89},"W7213559917",[170],{"name":171,"orcid":8},"Gasimov V.A., Dadashov F.H., Hasanov H.B., Huseynov N.E",{"tldr":173,"method":174,"finding":175,"direction":86,"opportunity":176},"开发实时AI农业机器人，集成植物病害检测与地理参考土壤湿度分析。","Raspberry Pi上部署目标检测模型，结合GPS和接触式土壤湿度传感器。","田间试验实现85-90%的植物病害检测准确率，并稳定自主运行。","可探索多模态传感器融合与边缘计算优化，提升复杂田间环境下的实时检测鲁棒性。","2026-09-19T23:30:11.232025Z",{"id":179,"title":180,"url":181,"summary":182,"summary_zh":8,"content":183,"source_name":184,"source_url":8,"published_at":153,"category":12,"cover_url":8,"hotness":13,"is_selected":14,"score":121,"score_detail":185,"sources":188,"tags":190,"search_phrases":194,"slug":197,"view_count":36,"doi":8,"paper":8,"created_at":198},2898,"苏垦农发神农慧种农业AI大模型规模化落地:天空地一体化闭环,百万亩自有农田实景数据","https:\u002F\u002Fcaifuhao.eastmoney.com\u002Fnews\u002F20260918101757264727920","苏垦农发9月18日发文,公司依托百万亩自有连片高标准农田,持续产出真实大田数据训练神农慧种农业AI智能体,实现天空地一体化数据闭环:空中多光谱无人机集群常态化农田巡测;地面全域四情监测传感器、北斗智能农机、智能灌溉终端;云端苏垦智云平台+神农慧种AI模型,形成采集数据→AI分析研判→输出水肥植保方案→农机落地执行完整闭环。苏垦智云是全国农林牧渔领域唯一入选工信部信创典型案例的农业数字化平台。","[在东方财富看资讯行情，选东方财富证券一站式开户交易>>](https:\u002F\u002Facttg.eastmoney.com\u002Fpub\u002Fwebtg_hskh_act_zixun_01_01_01_0)\n\n（国内A股找不到第二家，像苏垦农发依托百万亩自有连片高标准农田，持续产出真实大田数据训练神农慧种农业AI智能体；苏垦实现天空地一体化数据闭环，苏垦智云是农林牧渔唯一工信部信创典型案例，智慧农业+低空经济双主线落地。）\n\n- 空中：多光谱无人机集群开展农田巡测；\n\n![Image 1](https:\u002F\u002Fgbres.dfcfw.com\u002FFiles\u002Fpicture\u002F20260918\u002FB9B393E75E9CCC55E11A2686662765C9_w1080h720.jpg)\n\n- 地面：农田四情监测传感器、北斗智能农机；\n\n![Image 2](https:\u002F\u002Fgbres.dfcfw.com\u002FFiles\u002Fpicture\u002F20260918\u002F4D780511671CDAB50B4A1CCFE057703D_w1339h892.jpg)\n\n- 云端：苏垦智云平台与神农慧种AI模型，形成「采集数据→AI分析研判→输出水肥植保方案→农机落地执行」完整闭环。\n\n![Image 3](https:\u002F\u002Fgbres.dfcfw.com\u002FFiles\u002Fpicture\u002F20260918\u002F1059027DFA2A605F6861D7C69D6D4309_w1440h1080.jpg)\n\n百万亩自有连片农田源源不断产出真实田间数据，持续迭代优化AI模型。国内很多农业AI企业仅拥有小片试验田，唯有苏垦农发拥有大规模现代农业实景数据用于农业模型训练。\n\n苏垦智云平台，也是全国农林牧渔领域唯一入选工信部信创典型案例的农业数字化平台。苏垦农发一一智慧农业与低空经济的天空地一体化闭环落地，AI大田规模化实体应用！\n\n苏垦农发打造天空地一体化智慧农业完整体系，AI大田并非实验室试验，而是在百万亩自有连片农田实现规模化落地运行。\n\n1、空中：多光谱无人机集群常态化农田巡测，低空遥感采集作物长势、病虫害、墒情数据；依托农业农村部低空技术创新重点实验室，主攻低空多模态农情感知。\n\n2、地面：全域农田“四情”监测传感器、北斗智能农机、智能灌溉终端，实时采集土壤、苗情、虫情、气象数据。\n\n3、云端：苏垦智云平台 神农慧种农业AI智能体，形成完整闭环：采集田间数据→AI模型分析研判→输出水肥、植保作业处方→下发农机执行落地。\n\n4、核心稀缺壁垒：手握百万亩自有连片高标准农田，源源不断产出真实大田实景数据，持续迭代训练神农慧种AI模型。\n\n国内绝大多数农业AI企业，仅拥有小片试验田做演示；苏垦是少数拥有大规模真实农业场景用于模型训练与生产验证的实体龙头。\n\n5、苏垦智云一体化平台，也是全国农林牧渔领域唯一入选工信部信创典型案例的农业数字化平台，国产化底层架构，是农业数字化可复制的标杆样板。配套全国首个农业农村部农业低空技术创新重点实验室（苏垦为依托单位、河海大学共建），同步布局低空经济与智慧农业新质生产力。\n\n2026-09-18 11:16:07 作者更新了以下内容\n\n全球领先的风险咨询公司Verisk Maplecroft 在周四（9月17日）发布的一份报告中表示，极端天气灾害将加剧亚洲的粮食安全风险，并可能在印度、印尼和菲律宾等脆弱的国家引发动荡。\n\n![Image 4](https:\u002F\u002Fgbres.dfcfw.com\u002FFiles\u002Fpicture\u002F20260918\u002F9ACF9C92E7B35A242970CDC4D55B8DA9_w1080h15645.jpg)\n\n![Image 5](https:\u002F\u002Fgbres.dfcfw.com\u002FFiles\u002Fpicture\u002F20260918\u002FFE1BF075831D4DAEB94ADAE924123EE9_w1080h2400.jpg)\n\n2026-09-18 21:02:06 作者更新了以下内容\n\n苏垦农发一一 AI赋能农业真实落地案例：临海农场——国内首个10万亩级无人值守巡田农场（核心标杆）\n\n地点：江苏盐城临海农场，苏垦智慧农业科技园\n\n1. 空中低空遥感AI巡田\n\n![Image 6](https:\u002F\u002Fgbres.dfcfw.com\u002FFiles\u002Fpicture\u002F20260918\u002FE4E4DDE3ED1EEF061A2D631622A46F73_w1424h800.jpg)\n\n多光谱无人机集群常态化巡航，采集苗情、墒情、病虫害影像数据，AI自动识别长势差异、病斑，生成热力图；替代人工徒步巡田，十几分钟就能完成万亩农田普查。依托农业农村部低空技术创新重点实验室，开展低空多模态农情感知研究。\n\n2. AI智能光伏远程灌溉系统\n\n![Image 7](https:\u002F\u002Fgbres.dfcfw.com\u002FFiles\u002Fpicture\u002F20260918\u002F9FF2DAAEBED53D7BB8C825B388C102BD_w1424h800.jpg)\n\n万亩稻田布设太阳能智能闸门，通过土壤墒情传感器采集数据，AI分析土壤缺水程度，手机APP一键远程开关水渠闸门。\n\n量化效果：过去管500亩农田，人工开关闸门半天；现在2分钟完成全部闸门调控，灌溉效率提升20倍，每亩节约管水人工成本约30元。\n\n3. AR眼镜AI虫害识别\n\n![Image 8](https:\u002F\u002Fgbres.dfcfw.com\u002FFiles\u002Fpicture\u002F20260918\u002F9C7DFBF3F14BDE7E73309CA953C0C8E7_w1424h800.jpg)\n\n农技人员佩戴AR眼镜在田间巡查，拍摄虫体，AI毫秒级识别稻飞虱等害虫种类、统计虫口密度，识别准确率＞95%，自动推送防治方案，新手农技员也能快速判别田间虫害。\n\n4. AI变量施肥无人机作业\n\n![Image 9](https:\u002F\u002Fgbres.dfcfw.com\u002FFiles\u002Fpicture\u002F20260918\u002FC257CCA1B1E8AE1621C403E96DF222EE_w1424h800.jpg)\n\nAI读取水稻营养、长势数据，为每一块条田生成独立追肥处方，无人机分区精准施肥，一地一策，实现肥药双减，农药化肥年均用量下降约3%。\n\n5. 北斗智能农机 AI收割决策\n\n![Image 10](https:\u002F\u002Fgbres.dfcfw.com\u002FFiles\u002Fpicture\u002F20260918\u002F00A2AE87C3E170BFBFE610FABE2556A5_w1424h800.jpg)\n\n北斗导航插秧机、无人收割机，AI根据成熟度、含水率数据，指导分块错峰收割，减少粮食收割损耗。\n\n[恭喜解锁12个月手机L2专属领取资格，立即领取>>](https:\u002F\u002Facttg.eastmoney.com\u002Fpub\u002Fwebtg_hskh_act_zixun_01_01_01_0)\n\n暗盘资金榜已更新!这些个股\u002F板块可以关注>\n\n追加内容\n\n本文作者可以追加内容哦 !\n\n**郑重声明：**用户在社区发表的所有信息将由本网站记录保存，仅代表作者个人观点，与本网站立场无关，不对您构成任何投资建议，据此操作风险自担。**请勿相信代客理财、免费荐股和炒股培训等宣传内容，远离非法证券活动。请勿添加发言用户的手机号码、公众号、微博、微信及QQ等信息，谨防上当受骗！**\n\n[![Image 11](https:\u002F\u002Favator.eastmoney.com\u002Fqface\u002F9825094237066000\u002F360)](https:\u002F\u002Fi.eastmoney.com\u002F9825094237066000)\n\n总收益 20日收益 日收益\n------\n\n历史收益率走势(%)\n\nChart\n\n代码 名称 最新价 涨跌幅\n[查看更多](http:\u002F\u002Figuba.eastmoney.com\u002F9825094237066000)\n\n浪客视频\n\n![Image 12](https:\u002F\u002Fnp-newspic.dfcfw.com\u002Fdownload\u002FD25261481966621695940_w340h340.jpg)\n\n![Image 13](https:\u002F\u002Fgbapi.eastmoney.com\u002Fshareopt\u002Fweb\u002Fweb_click.gif?id=20260918101757264727920&type=20&version=200&product=EastMoney&plat=Web&deviceid=caifuhao)\n\n郑重声明：东方财富网发布此信息的目的在于传播更多信息，与本站立场无关。东方财富网不保证该信息（包括但不限于文字、视频、音频、数据及图表）全部或者部分内容的准确性、真实性、完整性、有效性、及时性、原创性等。相关信息并未经过本网站证实，不对您构成任何投资建议，据此操作，风险自担。","东方财富财富号\u002F苏垦农发",{"impact":52,"substance":53,"depth":54,"authority":186,"freshness":13,"relevant":22,"comment":187},5,"苏垦农发百万亩自有农田上实现天空地一体化AI闭环，含临海农场10万亩无人巡田等量化案例，产业参考价值较高，但来源为财富号自媒体、宣传色彩浓，权威性偏弱。",[189],{"name":184,"url":181},[27,191,107,29,192,193],"低空经济","遥感监测","数字农田",[195,196],"苏垦农发 神农慧种 AI大模型","临海农场 无人值守巡田","苏垦农发神农慧种AI大模型-2898","2026-09-19T00:06:07.612319Z",{"id":200,"title":201,"url":202,"summary":203,"summary_zh":8,"content":8,"source_name":204,"source_url":202,"published_at":153,"category":49,"cover_url":8,"hotness":13,"is_selected":14,"score":205,"score_detail":206,"sources":208,"tags":210,"search_phrases":213,"slug":216,"view_count":36,"doi":217,"paper":218,"created_at":236},2862,"A closed-loop spatial–temporal–path–execution coordination framework for dual-arm tomato harvesting in constrained shared workspaces","https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.biosystemseng.2026.104590","A closed-loop spatial–temporal–path–execution coordination framework for dual-arm tomato harvesting in constrained shared workspaces。Biosystems Engineering","Biosystems Engineering",80,{"impact":53,"substance":18,"depth":53,"authority":54,"freshness":13,"relevant":22,"comment":207},"核心期刊发表的农业机器人双臂协同采摘新框架，方法新颖、时效性强，对智慧农业装备研发有参考价值。",[209],{"name":204,"url":202},[27,28,130,211,212],"双臂采摘","番茄收获",[214,215],"双臂番茄采摘 机器人","Biosystems Engineering 双臂采摘","双臂番茄采摘机器人-2862","10.1016\u002Fj.biosystemseng.2026.104590",{"doi":217,"openalex_id":219,"authors":220,"venue":204,"cited_by_count":36,"oa_url":8,"card":8,"direction":8,"ingested_from":89},"W7213493097",[221,223,225,228,231,233],{"name":222,"orcid":8},"Xingyu Lu",{"name":224,"orcid":8},"Yongnian Zhang",{"name":226,"orcid":227},"Jieyu Xian","https:\u002F\u002Forcid.org\u002F0000-0002-2526-6644",{"name":229,"orcid":230},"Qingyu Wang","https:\u002F\u002Forcid.org\u002F0000-0002-5293-2024",{"name":232,"orcid":8},"Xingsheng Wang",{"name":234,"orcid":235},"Xiaochan Wang","https:\u002F\u002Forcid.org\u002F0000-0003-0461-8417","2026-09-18T23:30:05.475729Z"]