{"@context":"https://schema.org","@type":"NewsArticle","generatedAt":"2026-08-11T09:21:12.743Z","headline":"深圳先进院提出非接触激光超声技术，实现锂电池 SoC / SoH 实时监测","description":"中国科学院深圳先进技术研究院与清华大学团队提出非接触激光超声与 Transformer 结合方案，实现锂电池 SoC / SoH 高精度原位监测。该系统可将超声信号振幅提升 10 倍，信噪比达 30dB，对 SoC 平均误差低于 5.7%、SoH 低于 2.1%。研究基于 40 块商用电池、超 10 万个样本验证，成果发表于《Science Advances》。","url":"https://www.aioga.com/news/cmsg3s8pe04purolgqst54m35/","mainEntityOfPage":"https://www.aioga.com/news/cmsg3s8pe04purolgqst54m35/","datePublished":"2026-08-05T12:48:35.000Z","dateModified":"2026-08-05T12:48:35.000Z","inLanguage":"zh-CN","publisher":{"@type":"NewsMediaOrganization","name":"Aioga","url":"https://www.aioga.com"},"citation":["https://www.ithome.com/0/986/225.htm","https://aihot.virxact.com/items/cmsg3s8pe04purolgqst54m35"],"canonicalUrl":"https://www.aioga.com/news/cmsg3s8pe04purolgqst54m35/","directAnswer":{"@type":"Answer","text":"Aioga 编辑摘要：中国科学院深圳先进技术研究院与清华大学团队提出非接触激光超声与 Transformer 结合方案，实现锂电池 SoC / SoH 高精度原位监测。 Aioga 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Advances》。","source":"IT之家（RSS）","sourceUrl":"https://www.ithome.com/0/986/225.htm","aiHotUrl":"https://aihot.virxact.com/items/cmsg3s8pe04purolgqst54m35","publishedAt":"2026-08-05T12:48:35.000Z","category":"论文研究","score":41,"selected":false,"articleBody":["IT之家：https://www.ithome.com/ 8 月 5 日消息，中国科学院深圳先进技术研究院今日宣布，旗下智能仿生研究中心郭师峰团队与清华大学深圳国际研究生院周光敏团队合作。相关研究成果已于 7 月 29 日发表在《Science Advances》上。","该研究面向高倍率工况下锂离子电池的荷电状态（SoC，State of Charge，表示电池当前剩余电量）与健康状态（SoH，State of Health，反映电池经循环后的性能退化程度）的高精度原位监测需求，提出了一种将“非接触激光超声传感”与“Transformer 深度学习”模型相结合的一体化方案。","现有电池状态估算方法多依赖电压、电流和内阻等电化学参数，但在高倍率充放电过程中，复杂的电化学动力学及热效应会显著削弱此类方法的适用性。近年来兴起的超声检测技术虽为电池内部状态的无损感知提供了新路径，但主流的接触式和浸液式压电超声方法普遍依赖耦合剂或浸液介质，检测结果易受耦合状态及温度波动影响，耦合剂残留也限制了其在真实场景中的推广。","针对上述局限，研究团队提出了一种无需耦合剂的非接触激光激励超声传感（LEUS）系统。该系统采用环形脉冲激光与连续激光协同的双激光设计方案。根据论文摘要，该设计可将超声信号振幅提升 10 倍，信噪比达到 30dB，较典型配置高出 16dB。通过将采集到的超声信号转化为时频谱图，Transformer 网络可自动提取与 SoC、SoH 相关的判别性特征，减少对人工特征构建的依赖，同时实现高精度预测。在预测精度方面，该模型对 SoC 的平均误差低于 5.7%，对 SoH 的平均误差低于 2.1%。","研究团队还引入了迁移学习策略，使基础模型能够快速适配不同的电池化学体系、型号及高倍率循环条件，仅需少量超声数据即可实现稳定监测，显著降低了重训练时间和成本。在验证环节，团队构建了覆盖磷酸铁锂（LFP）和镍钴锰（NCM）两种正极材料、三种容量设计、13 种高倍率测试协议的 40 块商用电池数据集，累计采集超过 10 万个超声信号样本。验证结果表明该方法具有较强的鲁棒性和可靠性。","该研究贯通了非接触超声信号采集、多场景电池数据构建及深度学习状态推断等关键环节，为复杂工况下锂离子电池的无损、实时与智能化状态监测提供了新的技术路径。","郭师峰研究员、冯伟研究员和周光敏副教授为该论文共同通讯作者，吕高龙博士与孙崇博博士为共同第一作者。该研究获得国家重点研发计划、国家自然科学基金、广东省及深圳市基础研究项目的资助支持。IT之家附论文地址： https://doi.org/10.1126/sciadv.aec5358 ：https://doi.org/10.1126/sciadv.aec5358"],"articleImages":[{"sourceUrl":"https://img.ithome.com/newsuploadfiles/2026/8/2847d86c-a7b7-40c5-b502-e7526a3cd035.png?x-bce-process=image/format,f_auto","alt":"","afterParagraph":1,"url":"/media/articles/cmsg3s8pe04purolgqst54m35/5fbf42f936965eee.png"}],"mediaStatus":"ok","articleBodyZh":["深圳先进院提出非接触激光超声技术，实现锂电池 SoC / SoH 实时监测 这条更新来自 ithome.com，发布时间为 2026-08-05，Aioga 保留原文入口以便核验。","摘要：中国科学院深圳先进技术研究院与清华大学团队提出非接触激光超声与 Transformer 结合方案，实现锂电池 SoC / SoH 高精度原位监测。该系统可将超声信号振幅提升 10 倍，信噪比达 30dB，对 SoC 平均误差低于 5.7%、SoH 低于 2.1%。研究基于 40 块商用电池、超 10 万个样本验证，成果发表于《Science Advances》。","背景：背景分析：模型与研究类动态需要结合能力边界、开放方式、成本、可用性和真实任务表现判断，单项指标领先不等于已经形成稳定采用。","Aioga 观察：Aioga 判断：这条动态更适合作为行业观察信号，当前信息足以建立线索，但不足以推导长期结论。","影响与后续：影响分析：对相关团队而言，短期应先核对来源、可用范围和实际成本，再判断是否值得接入或跟进。 后续观察：继续观察官方文档、实际可用性、价格变化、开发者反馈和竞品回应。"],"translationStatus":"","bodyOrigin":"source-page","editorial":{"summary":"Aioga 编辑摘要：中国科学院深圳先进技术研究院与清华大学团队提出非接触激光超声与 Transformer 结合方案，实现锂电池 SoC / SoH 高精度原位监测。 Aioga 将其归入「论文研究」方向，重点关注它对真实使用和行业竞争的影响。","background":"背景分析：模型与研究类动态需要结合能力边界、开放方式、成本、可用性和真实任务表现判断，单项指标领先不等于已经形成稳定采用。","viewpoint":"Aioga 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结合方案，实现锂电池 SoC / SoH 高精度原位监测。该系统可将超声信号振幅提升 10 倍，信噪比达 30dB，对 SoC 平均误差低于 5.7%、SoH 低于 2.1%。研究基于 40 块商用电池、超 10 万个样本验证，成果发表于《Science Advances...","url":"https://www.aioga.com/news/cmsg3s8pe04purolgqst54m35/","articleBody":["深圳先进院提出非接触激光超声技术，实现锂电池 SoC / SoH 实时监测 这条更新来自 ithome.com，发布时间为 2026-08-05，Aioga 保留原文入口以便核验。","摘要：中国科学院深圳先进技术研究院与清华大学团队提出非接触激光超声与 Transformer 结合方案，实现锂电池 SoC / SoH 高精度原位监测。该系统可将超声信号振幅提升 10 倍，信噪比达 30dB，对 SoC 平均误差低于 5.7%、SoH 低于 2.1%。研究基于 40 块商用电池、超 10 万个样本验证，成果发表于《Science Advances》。","背景：背景分析：模型与研究类动态需要结合能力边界、开放方式、成本、可用性和真实任务表现判断，单项指标领先不等于已经形成稳定采用。","Aioga 观察：Aioga 判断：这条动态更适合作为行业观察信号，当前信息足以建立线索，但不足以推导长期结论。","影响与后续：影响分析：对相关团队而言，短期应先核对来源、可用范围和实际成本，再判断是否值得接入或跟进。 后续观察：继续观察官方文档、实际可用性、价格变化、开发者反馈和竞品回应。"]},"en":{"title":"Shenzhen Institutes of Advanced Technology proposes non-contact laser ultrasonic technology to achieve real-time monitoring of lithium battery SoC/SoH","summary":"The Shenzhen Institutes of Advanced Technology of the Chinese Academy of Sciences and a team from Tsinghua University proposed a non-contact laser ultrasound combined with Transformer solution to achieve high-precision in-situ monitoring of lithium battery SoC/SoH. This system can increase the amplitude of ultrasonic signals by 10 times, with a signal-to-noise ratio of 30 dB, achieving an average SoC error of less than 5.7% and SoH error of less than 2.1%. The study was validated on 40 commercial batteries with over 100,000 samples, and the results were published in Science Advances.","category":"Research","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Shenzhen Institutes of Advanced Technology proposes non-contact laser ultrasonic technology to achieve real-time monitoring of lithium battery SoC/SoH - Aioga AI News","description":"The Shenzhen Institutes of Advanced Technology of the Chinese Academy of Sciences and a team from Tsinghua University proposed a non-contact laser ultrasound combined with Transfor...","url":"https://www.aioga.com/en/news/cmsg3s8pe04purolgqst54m35/","contentTranslated":true,"sourceHash":"2a430d25900bb4fa","translatedAt":"2026-08-05T14:22:49.455Z"},"ja":{"title":"深圳先進院は非接触レーザー超音波技術を提案し、リチウム電池の SoC / SoH のリアルタイム監視を実現","summary":"中国科学院深圳先端技術研究院と清華大学のチームは、非接触レーザー超音波とTransformerを組み合わせたソリューションを提案し、リチウム電池のSoC / SoHの高精度インシチュモニタリングを実現しました。このシステムは超音波信号の振幅を10倍に高め、信号対雑音比は30dBに達し、SoCの平均誤差は5.7%未満、SoHは2.1%未満です。研究は40個の市販電池および10万以上のサンプルに基づいて検証され、成果は『Science Advances』に掲載されました。","category":"論文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"深圳先進院は非接触レーザー超音波技術を提案し、リチウム電池の SoC / SoH のリアルタイム監視を実現 - Aioga AIニュース","description":"中国科学院深圳先端技術研究院と清華大学のチームは、非接触レーザー超音波とTransformerを組み合わせたソリューションを提案し、リチウム電池のSoC / SoHの高精度インシチュモニタリングを実現しました。このシステムは超音波信号の振幅を10倍に高め、信号対雑音比は30dBに達し、SoCの平均誤差は5.7%未満、SoHは2.1%未満です。研究は40個の市...","url":"https://www.aioga.com/ja/news/cmsg3s8pe04purolgqst54m35/","contentTranslated":true,"sourceHash":"2a430d25900bb4fa","translatedAt":"2026-08-05T14:23:04.870Z"},"ko":{"title":"심천첨단원은 비접촉 레이저 초음파 기술을 제안하여 리튬 배터리 SoC/SoH 실시간 모니터링을 실현","summary":"중국과학원 선전첨단기술연구원과 칭화대학 팀은 비접촉 레이저 초음파와 Transformer를 결합한 방안을 제시하여 리튬 전지 SoC/SoH 고정밀 현장 모니터링을 실현했습니다. 이 시스템은 초음파 신호 진폭을 10배 향상시키고, 신호대잡음비를 30dB까지 높여 SoC 평균 오차를 5.7% 이하, SoH를 2.1% 이하로 유지합니다. 연구는 40개의 상용 전지와 10만 개 이상의 샘플을 기반으로 검증되었으며, 성과는 《Science Advances》에 발표되었습니다.","category":"연구","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"심천첨단원은 비접촉 레이저 초음파 기술을 제안하여 리튬 배터리 SoC/SoH 실시간 모니터링을 실현 - Aioga AI 뉴스","description":"중국과학원 선전첨단기술연구원과 칭화대학 팀은 비접촉 레이저 초음파와 Transformer를 결합한 방안을 제시하여 리튬 전지 SoC/SoH 고정밀 현장 모니터링을 실현했습니다. 이 시스템은 초음파 신호 진폭을 10배 향상시키고, 신호대잡음비를 30dB까지 높여 SoC 평균 오차를 5.7% 이하, SoH를 2.1% 이하로...","url":"https://www.aioga.com/ko/news/cmsg3s8pe04purolgqst54m35/","contentTranslated":true,"sourceHash":"2a430d25900bb4fa","translatedAt":"2026-08-05T14:24:00.497Z"},"es":{"title":"El Instituto Avanzado de Shenzhen propone la tecnología ultrasónica láser sin contacto para lograr la monitorización en tiempo real del SoC/SoH de las baterías de litio","summary":"El Instituto de Tecnología Avanzada de Shenzhen de la Academia China de Ciencias y el equipo de la Universidad de Tsinghua propusieron un esquema que combina ultrasonido láser sin contacto con Transformer, logrando una monitorización in situ de alta precisión del SoC/SoH de las baterías de litio. Este sistema puede aumentar la amplitud de la señal ultrasónica 10 veces, alcanzar una relación señal-ruido de 30 dB, con un error promedio del SoC inferior al 5,7% y del SoH inferior al 2,1%. La investigación se basó en 40 baterías comerciales y se verificó con más de 100.000 muestras, y los resultados se publicaron en Science Advances.","category":"Investigación","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"El Instituto Avanzado de Shenzhen propone la tecnología ultrasónica láser sin contacto para lograr la monitorización en tiempo real del SoC/SoH de las baterías de litio - Aioga Noticias de IA","description":"El Instituto de Tecnología Avanzada de Shenzhen de la Academia China de Ciencias y el equipo de la Universidad de Tsinghua propusieron un esquema que combina ultrasonido láser sin...","url":"https://www.aioga.com/es/news/cmsg3s8pe04purolgqst54m35/","contentTranslated":true,"sourceHash":"2a430d25900bb4fa","translatedAt":"2026-08-05T14:24:00.708Z"},"fr":{"title":"L'Institut avancé de Shenzhen propose une technologie ultrasonique laser sans contact pour réaliser la surveillance en temps réel du SoC / SoH des batteries au lithium","summary":"L'Institut des technologies avancées de Shenzhen de l'Académie chinoise des sciences et l'équipe de l'Université Tsinghua ont proposé une solution combinant ultrasons laser sans contact et Transformer, permettant une surveillance in situ de haute précision de l'état de charge (SoC) et de l'état de santé (SoH) des batteries lithium. Ce système peut augmenter l'amplitude du signal ultrasonique par 10 fois, avec un rapport signal/bruit atteint 30 dB, l'erreur moyenne du SoC étant inférieure à 5,7 % et celle du SoH inférieure à 2,1 %. La recherche, basée sur 40 batteries commerciales et plus de 100 000 échantillons pour la validation, a été publiée dans \"Science Advances\".","category":"Recherche","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"L'Institut avancé de Shenzhen propose une technologie ultrasonique laser sans contact pour réaliser la surveillance en temps réel du SoC / SoH des batteries au lithium - Aioga Actualités IA","description":"L'Institut des technologies avancées de Shenzhen de l'Académie chinoise des sciences et l'équipe de l'Université Tsinghua ont proposé une solution combinant ultrasons laser sans co...","url":"https://www.aioga.com/fr/news/cmsg3s8pe04purolgqst54m35/","contentTranslated":true,"sourceHash":"2a430d25900bb4fa","translatedAt":"2026-08-05T14:25:00.085Z"},"de":{"title":"Das Shenzhen Advanced Institute hat eine berührungslose Laser-Ultraschall-Technologie vorgeschlagen, um die Echtzeitüberwachung von SoC/SoH von Lithiumbatterien zu realisieren.","summary":"Die Shenzhen Institute of Advanced Technology der Chinesischen Akademie der Wissenschaften und ein Team der Tsinghua-Universität haben eine Lösung kombiniert aus berührungslosem Laser-Ultraschall und Transformer vorgeschlagen, um eine hochpräzise In-situ-Überwachung des SoC/SoH von Lithiumbatterien zu realisieren. Das System kann die Ultraschallsignalamplitude um das 10-fache erhöhen, das Signal-Rausch-Verhältnis auf 30 dB bringen und weist einen mittleren Fehler für SoC von unter 5,7 % und für SoH von unter 2,1 % auf. Die Forschung wurde anhand von 40 kommerziellen Batterien und mehr als 100.000 Proben überprüft, und die Ergebnisse wurden in „Science Advances“ veröffentlicht.","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Das Shenzhen Advanced Institute hat eine berührungslose Laser-Ultraschall-Technologie vorgeschlagen, um die Echtzeitüberwachung von SoC/SoH von Lithiumbatterien zu realisieren. - Aioga KI-News","description":"Die Shenzhen Institute of Advanced Technology der Chinesischen Akademie der Wissenschaften und ein Team der Tsinghua-Universität haben eine Lösung kombiniert aus berührungslosem La...","url":"https://www.aioga.com/de/news/cmsg3s8pe04purolgqst54m35/","contentTranslated":true,"sourceHash":"2a430d25900bb4fa","translatedAt":"2026-08-05T14:24:58.981Z"},"pt-BR":{"title":"O Instituto Avançado de Shenzhen propôs a tecnologia ultrassônica a laser sem contato, para realizar o monitoramento em tempo real do SoC / SoH de baterias de lítio","summary":"O Instituto de Tecnologia Avançada de Shenzhen da Academia Chinesa de Ciências, em conjunto com a equipe da Universidade Tsinghua, propôs uma solução que combina ultrassom a laser sem contato com Transformer, alcançando monitoramento in situ de alta precisão do SoC/SoH de baterias de lítio. O sistema pode aumentar a amplitude do sinal ultrassônico em 10 vezes, com relação sinal-ruído de 30dB, apresentando erro médio do SoC inferior a 5,7% e do SoH inferior a 2,1%. A pesquisa foi validada com base em 40 baterias comerciais e mais de 100.000 amostras, e os resultados foram publicados na revista Science Advances.","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"O Instituto Avançado de Shenzhen propôs a tecnologia ultrassônica a laser sem contato, para realizar o monitoramento em tempo real do SoC / SoH de baterias de lítio - Aioga Notícias de IA","description":"O Instituto de Tecnologia Avançada de Shenzhen da Academia Chinesa de Ciências, em conjunto com a equipe da Universidade Tsinghua, propôs uma solução que combina ultrassom a laser...","url":"https://www.aioga.com/pt-BR/news/cmsg3s8pe04purolgqst54m35/","contentTranslated":true,"sourceHash":"2a430d25900bb4fa","translatedAt":"2026-08-05T14:25:52.254Z"},"ru":{"title":"Шэньчжэньский Институт Передовых Технологий предложил бесконтактную лазерную ультразвуковую технологию для реализации мониторинга SoC / SoH литиевых батарей в реальном времени","summary":"Академия передовых технологий Шэньчжэня Китайской академии наук и команда университета Цинхуа предложили решение, объединяющее бесконтактный лазерный ультразвук и Transformer, для высокоточного ин-ситу мониторинга состояния заряда (SoC) и состояния здоровья (SoH) литиевых батарей. Эта система может увеличить амплитуду ультразвукового сигнала в 10 раз, соотношение сигнал/шум достигает 30 дБ, средняя ошибка по SoC составляет менее 5,7%, по SoH — менее 2,1%. Исследование проведено на 40 коммерческих батареях, с проверкой более 100 тысяч образцов, результаты опубликованы в журнале «Science Advances».","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Шэньчжэньский Институт Передовых Технологий предложил бесконтактную лазерную ультразвуковую технологию для реализации мониторинга SoC / SoH литиевых батарей в реальном времени - Aioga Новости ИИ","description":"Академия передовых технологий Шэньчжэня Китайской академии наук и команда университета Цинхуа предложили решение, объединяющее бесконтактный лазерный ультразвук и Transformer, для...","url":"https://www.aioga.com/ru/news/cmsg3s8pe04purolgqst54m35/","contentTranslated":true,"sourceHash":"2a430d25900bb4fa","translatedAt":"2026-08-05T14:25:54.393Z"},"ar":{"title":"اقترح معهد شنتشن المتقدم تقنية الموجات فوق الصوتية بالليزر غير التلامسية，实现 مراقبة SoC / SoH لبطاريات الليثيوم في الوقت الحقيقي","summary":"اقترح فريق من الأكاديمية الصينية للعلوم في معهد شنتشن للتقنيات المتقدمة وجامعة تسينغهوا خطة تجمع بين الموجات فوق الصوتية بالليزر غير التلامسية و Transformer لتحقيق مراقبة دقيقة في الموقع لحالة الشحن / الصحة لبطاريات الليثيوم. يمكن للنظام زيادة سعة إشارة الموجات فوق الصوتية بمقدار 10 مرات، ووصول نسبة الإشارة إلى الضوضاء إلى 30 ديسيبل، بمتوسط خطأ لحالة الشحن أقل من 5.7٪ ولحالة الصحة أقل من 2.1٪. استندت الدراسة إلى 40 بطارية تجارية وأكثر من 100 ألف عينة للتحقق منها، ونُشرت النتائج في مجلة \"Science Advances\".","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"اقترح معهد شنتشن المتقدم تقنية الموجات فوق الصوتية بالليزر غير التلامسية，实现 مراقبة SoC / SoH لبطاريات الليثيوم في الوقت الحقيقي - Aioga أخبار الذكاء الاصطناعي","description":"اقترح فريق من الأكاديمية الصينية للعلوم في معهد شنتشن للتقنيات المتقدمة وجامعة تسينغهوا خطة تجمع بين الموجات فوق الصوتية بالليزر غير التلامسية و Transformer لتحقيق مراقبة دقيقة في...","url":"https://www.aioga.com/ar/news/cmsg3s8pe04purolgqst54m35/","contentTranslated":true,"sourceHash":"2a430d25900bb4fa","translatedAt":"2026-08-05T14:26:52.457Z"},"hi":{"title":"शेनझेन उन्नत संस्थान ने गैर-संपर्क लेज़र अल्ट्रासोनिक तकनीक प्रस्तुत की, जिससे लिथियम बैटरी के SoC / SoH का रीयल-टाइम निगरानी संभव हो सके","summary":"चीन विज्ञान अकादमी शेनझेन एडवांस्ड टेक्नोलॉजी रिसर्च इंस्टीट्यूट और त्सिंगहुआ विश्वविद्यालय की टीम ने गैर-संपर्क लेजर अल्ट्रासाउंड और ट्रांसफॉर्मर संयोजन योजना प्रस्तावित की, जो लिथियम बैटरी SoC/SoH की उच्च-सटीक इन-सिटू निगरानी को संभव बनाती है। यह प्रणाली अल्ट्रासाउंड सिग्नल की आयाम को 10 गुना बढ़ा सकती है, सिग्नल-टू-शोर अनुपात 30dB तक पहुंचता है, और SoC की औसत त्रुटि 5.7% से कम, SoH 2.1% से कम है। अध्ययन को 40 वाणिज्यिक बैटरियों और 1,00,000 से अधिक नमूनों पर आधारित करके सत्यापित किया गया, और परिणामों को 'Science Advances' में प्रकाशित किया गया।","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"शेनझेन उन्नत संस्थान ने गैर-संपर्क लेज़र अल्ट्रासोनिक तकनीक प्रस्तुत की, जिससे लिथियम बैटरी के SoC / SoH का रीयल-टाइम निगरानी संभव हो सके - Aioga AI समाचार","description":"चीन विज्ञान अकादमी शेनझेन एडवांस्ड टेक्नोलॉजी रिसर्च इंस्टीट्यूट और त्सिंगहुआ विश्वविद्यालय की टीम ने गैर-संपर्क लेजर अल्ट्रासाउंड और ट्रांसफॉर्मर संयोजन योजना प्रस्तावित की, जो लि...","url":"https://www.aioga.com/hi/news/cmsg3s8pe04purolgqst54m35/","contentTranslated":true,"sourceHash":"2a430d25900bb4fa","translatedAt":"2026-08-05T14:26:52.227Z"},"it":{"title":"L'Istituto Avanzato di Shenzhen propone la tecnologia di ultrasuoni laser senza contatto, realizzando il monitoraggio in tempo reale dello SoC / SoH delle batterie al litio","summary":"L'Istituto di Tecnologia Avanzata di Shenzhen dell'Accademia Cinese delle Scienze e il team dell'Università Tsinghua hanno proposto una soluzione che combina ultrasuoni laser senza contatto e Transformer, realizzando il monitoraggio in situ ad alta precisione dello Stato di Carica (SoC) e dello Stato di Salute (SoH) delle batterie al litio. Questo sistema può aumentare l'ampiezza del segnale ultrasonico di 10 volte, con un rapporto segnale-rumore di 30 dB, ottenendo un errore medio del SoC inferiore al 5,7% e del SoH inferiore al 2,1%. Lo studio si basa sulla verifica di 40 batterie commerciali e oltre 100.000 campioni, e i risultati sono stati pubblicati su «Science Advances».","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"L'Istituto Avanzato di Shenzhen propone la tecnologia di ultrasuoni laser senza contatto, realizzando il monitoraggio in tempo reale dello SoC / SoH delle batterie al litio - Aioga Notizie IA","description":"L'Istituto di Tecnologia Avanzata di Shenzhen dell'Accademia Cinese delle Scienze e il team dell'Università Tsinghua hanno proposto una soluzione che combina ultrasuoni laser senza...","url":"https://www.aioga.com/it/news/cmsg3s8pe04purolgqst54m35/","contentTranslated":true,"sourceHash":"2a430d25900bb4fa","translatedAt":"2026-08-05T14:27:49.648Z"},"nl":{"title":"Het Shenzhen Advanced Institute heeft een contactloze laser-ultrageluidtechnologie voorgesteld om de SoC/SoH van lithiumbatterijen in realtime te monitoren","summary":"Het Shenzhen Institute of Advanced Technology van de Chinese Academie van Wetenschappen en het team van de Tsinghua Universiteit hebben een oplossing voorgesteld die contactloze laserultrageluid combineert met Transformer, waarmee een hoge-precisie in-situ monitoring van de SoC/SoH van lithiumbatterijen mogelijk wordt. Dit systeem kan de amplitude van het ultrasone signaal tien keer verhogen, met een signaal-ruisverhouding van 30 dB, en een gemiddelde fout van minder dan 5,7% voor SoC en minder dan 2,1% voor SoH behalen. Het onderzoek is gebaseerd op 40 commerciële batterijen en meer dan 100.000 monsters geverifieerd, en de resultaten zijn gepubliceerd in Science Advances.","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Het Shenzhen Advanced Institute heeft een contactloze laser-ultrageluidtechnologie voorgesteld om de SoC/SoH van lithiumbatterijen in realtime te monitoren - Aioga AI-nieuws","description":"Het Shenzhen Institute of Advanced Technology van de Chinese Academie van Wetenschappen en het team van de Tsinghua Universiteit hebben een oplossing voorgesteld die contactloze la...","url":"https://www.aioga.com/nl/news/cmsg3s8pe04purolgqst54m35/","contentTranslated":true,"sourceHash":"2a430d25900bb4fa","translatedAt":"2026-08-05T14:27:41.746Z"},"tr":{"title":"Shenzhen İleri Araştırma Enstitüsü, lityum batarya SoC / SoH’un gerçek zamanlı izlenmesini gerçekleştirmek için temassız lazer ultrason teknolojisini önerdi","summary":"Çin Bilimler Akademisi Shenzhen İleri Teknoloji Araştırma Enstitüsü ile Tsinghua Üniversitesi ekibi, temassız lazer ultrason ile Transformer kombinasyonu önerdi ve lityum pil SoC / SoH yüksek hassasiyetli yerinde izlemeyi gerçekleştirdi. Bu sistem, ultrason sinyali genliğini 10 kat artırabilir, sinyal-gürültü oranı 30dB’ye ulaşır ve SoC ortalama hatası %5,7’nin, SoH ise %2,1’in altındadır. Araştırma, 40 adet ticari pil ve 100.000’den fazla örnek üzerinde doğrulandı ve sonuçlar Science Advances dergisinde yayımlandı.","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Shenzhen İleri Araştırma Enstitüsü, lityum batarya SoC / SoH’un gerçek zamanlı izlenmesini gerçekleştirmek için temassız lazer ultrason teknolojisini önerdi - Aioga AI Haberleri","description":"Çin Bilimler Akademisi Shenzhen İleri Teknoloji Araştırma Enstitüsü ile Tsinghua Üniversitesi ekibi, temassız lazer ultrason ile Transformer kombinasyonu önerdi ve lityum pil SoC /...","url":"https://www.aioga.com/tr/news/cmsg3s8pe04purolgqst54m35/","contentTranslated":true,"sourceHash":"2a430d25900bb4fa","translatedAt":"2026-08-05T14:28:41.607Z"},"vi":{"title":"Viện Tiên tiến Thâm Quyến đề xuất công nghệ siêu âm laser không tiếp xúc, thực hiện giám sát thời gian thực SoC / SoH của pin lithium","summary":"Viện Nghiên cứu Công nghệ Tiên tiến Thâm Quyến thuộc Học viện Khoa học Trung Quốc và nhóm nghiên cứu từ Đại học Thanh Hoa đã đề xuất giải pháp kết hợp siêu âm laser không tiếp xúc với Transformer, thực hiện giám sát in-situ độ chính xác cao cho SoC / SoH của pin lithium. Hệ thống này có thể tăng biên độ tín hiệu siêu âm lên 10 lần, tỷ lệ tín hiệu trên nhiễu đạt 30dB, với sai số trung bình SoC dưới 5,7%, SoH dưới 2,1%. Nghiên cứu được xác minh dựa trên 40 pin thương mại và hơn 100.000 mẫu, kết quả được công bố trên tạp chí \"Science Advances\".","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Viện Tiên tiến Thâm Quyến đề xuất công nghệ siêu âm laser không tiếp xúc, thực hiện giám sát thời gian thực SoC / SoH của pin lithium - Tin tức AI Aioga","description":"Viện Nghiên cứu Công nghệ Tiên tiến Thâm Quyến thuộc Học viện Khoa học Trung Quốc và nhóm nghiên cứu từ Đại học Thanh Hoa đã đề xuất giải pháp kết hợp siêu âm laser không tiếp xúc...","url":"https://www.aioga.com/vi/news/cmsg3s8pe04purolgqst54m35/","contentTranslated":true,"sourceHash":"2a430d25900bb4fa","translatedAt":"2026-08-05T14:28:42.114Z"},"id":{"title":"Institut Lanjutan Shenzhen mengajukan teknologi ultrasonik laser tanpa kontak, mewujudkan pemantauan waktu nyata SoC / SoH baterai lithium","summary":"Tim dari Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, dan Universitas Tsinghua mengusulkan solusi penggabungan ultrasonik laser tanpa kontak dengan Transformer, untuk mencapai pemantauan in situ yang presisi tinggi terhadap SoC / SoH baterai lithium. Sistem ini dapat meningkatkan amplitudo sinyal ultrasonik hingga 10 kali, dengan rasio sinyal terhadap noise mencapai 30dB, serta kesalahan rata-rata SoC kurang dari 5,7% dan SoH kurang dari 2,1%. Penelitian ini divalidasi berdasarkan 40 baterai komersial dan lebih dari 100.000 sampel, dan hasilnya dipublikasikan di 'Science Advances'.","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Institut Lanjutan Shenzhen mengajukan teknologi ultrasonik laser tanpa kontak, mewujudkan pemantauan waktu nyata SoC / SoH baterai lithium - Berita AI Aioga","description":"Tim dari Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, dan Universitas Tsinghua mengusulkan solusi penggabungan ultrasonik laser tanpa kontak dengan Trans...","url":"https://www.aioga.com/id/news/cmsg3s8pe04purolgqst54m35/","contentTranslated":true,"sourceHash":"2a430d25900bb4fa","translatedAt":"2026-08-05T14:29:39.238Z"},"th":{"title":"สถาบันชั้นสูงเซินเจิ้นเสนอเทคโนโลยีอัลตราโซนิกเลเซอร์แบบไม่สัมผัส เพื่อให้สามารถตรวจสอบสถานะ SoC / SoH ของแบตเตอรี่ลิเธียมแบบเรียลไทม์","summary":"สถาบันวิจัยเทคโนโลยีล้ำหน้าของเซินเจิ้น สถาบันวิทยาศาสตร์จีน ร่วมกับทีมของมหาวิทยาลัยชิงหัว เสนอแนวทางการรวมเลเซอร์อัลตราโซนิคไม่สัมผัสเข้ากับ Transformer เพื่อให้สามารถตรวจสอบ SoC / SoH ของแบตเตอรี่ลิเธียมด้วยความแม่นยำสูงในสถานที่ ระบบนี้สามารถเพิ่มแอมพลิจูดของสัญญาณอัลตราโซนิคได้ 10 เท่า สัญญาณต่อสัญญาณรบกวนอยู่ที่ 30dB โดยมีความคลาดเคลื่อนเฉลี่ยของ SoC ต่ำกว่า 5.7% และ SoH ต่ำกว่า 2.1% การวิจัยอิงจากแบตเตอรี่เชิงพาณิชย์จำนวน 40 ก้อนและตัวอย่างมากกว่า 100,000 ตัวอย่าง ผลงานนี้ตีพิมพ์ในวารสาร 《Science Advances》","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"สถาบันชั้นสูงเซินเจิ้นเสนอเทคโนโลยีอัลตราโซนิกเลเซอร์แบบไม่สัมผัส เพื่อให้สามารถตรวจสอบสถานะ SoC / SoH ของแบตเตอรี่ลิเธียมแบบเรียลไทม์ - ข่าว AI Aioga","description":"สถาบันวิจัยเทคโนโลยีล้ำหน้าของเซินเจิ้น สถาบันวิทยาศาสตร์จีน ร่วมกับทีมของมหาวิทยาลัยชิงหัว เสนอแนวทางการรวมเลเซอร์อัลตราโซนิคไม่สัมผัสเข้ากับ Transformer เพื่อให้สามารถตรวจสอบ SoC...","url":"https://www.aioga.com/th/news/cmsg3s8pe04purolgqst54m35/","contentTranslated":true,"sourceHash":"2a430d25900bb4fa","translatedAt":"2026-08-05T14:29:40.628Z"},"pl":{"title":"Instytut Zaawansowanych Technologii w Shenzhen zaproponował bezkontaktową technologię ultradźwięków laserowych w celu realizacji monitorowania stanu naładowania (SoC) / stanu zdrowia (SoH) akumulatorów litowych w czasie rzeczywistym","summary":"Chińska Akademia Nauk, Shenzhen Advanced Technology Research Institute wraz z zespołem Uniwersytetu Tsinghua zaproponowali połączenie bezkontaktowego ultradźwięku laserowego z Transformerem, umożliwiające wysokoprecyzyjny, in situ monitoring SoC / SoH baterii litowych. System ten może zwiększyć amplitudę sygnału ultradźwiękowego dziesięciokrotnie, a stosunek sygnału do szumu osiąga 30 dB, przy średnim błędzie SoC poniżej 5,7% i SoH poniżej 2,1%. Badania oparto na 40 komercyjnych bateriach i zweryfikowano ponad 100 000 próbek, a wyniki opublikowano w „Science Advances”.","category":"论文研究","source":"IT之家（RSS）","aggregationSource":"IT之家（RSS）","pageTitle":"Instytut Zaawansowanych Technologii w Shenzhen zaproponował bezkontaktową technologię ultradźwięków laserowych w celu realizacji monitorowania stanu naładowania (SoC) / stanu zdrowia (SoH) akumulatorów litowych w czasie rzeczywistym - Aioga Wiadomości AI","description":"Chińska Akademia Nauk, Shenzhen Advanced Technology Research Institute wraz z zespołem Uniwersytetu Tsinghua zaproponowali połączenie bezkontaktowego ultradźwięku laserowego z Tran...","url":"https://www.aioga.com/pl/news/cmsg3s8pe04purolgqst54m35/","contentTranslated":true,"sourceHash":"2a430d25900bb4fa","translatedAt":"2026-08-05T14:30:44.510Z"}}}}