刘平
发布时间:2020-11-05    发布人:杨武   



姓 名:刘平

职 称:副教授

职 务:学院创新创业中心副主任

所属系:电子科学与技术系

邮 箱:liuping@hfut.edu.cn

电 话:15375399458

  个人简介:

刘平,男,湖南娄底人,1983年生,2007年本科毕业于合肥工业大学理学院电子科学与技术专业,2010年硕士毕业于合肥工业大学电子科学与应用学院微电子学与固体电子学专业,2013博士毕业于中国科学技术大学自动化系检测技术与自动化装置专业。同年就职于合肥工业大学,加入学院柔性传感器研究黄英教授课题组,目前指导硕士研究生18名,以及参与科研项目的本科生10余人。


从事柔性传感技术研究及其人工智能应用研究,方向具体如下:

(1) 基于多模态融合功能的智能机器人技术:包含柔性触觉传感器设计、数模混合嵌入式电路开发、人工智能算法、机器人系统开发、机器人力反馈技术、人机协同遥操作

(2) 基于柔性电子系统的前沿诊疗技术:包含柔性传感器设计、数模混合嵌入式电路开发、人工智能算法、人机交互软件开发;

(3) 基于柔性电子技术的汽车安全技术:包含柔性传感器设计、数模混合嵌入式电路开发、人工智能算法、人因预测与推理模型;

(4) 基于虚拟现实与数字孪生驱动的交互技术:包含柔性传感器设计、数模混合嵌入式电路开发、人工智能算法、可穿戴人体动作捕捉、虚拟现实交互硬件实现。

 

开设课程:传感器原理及应用(本科生);传感器工程学(研究生)

 

科研项目:

(1) 国家电网,横向委托类,B419M025009C,用于青海地区作业辅助外骨骼机器人的可穿戴保障技术研究,2025-012026-12

(2) 国家电网,横向委托类,B312M024000C,具有临场感增强的电力巡检机器人遥操作研究及应用,2024-092024-12

(3) 浙江省科学技术厅,领雁计划,2024C01150,高性能柔性透明导电薄膜研究及产业化制备,2024-012026-12

(4) 安徽省教育厅,协同创新项目,GXXT-2023-075,柔性电子皮肤多模态感知与智能传感技术研究,2024-012025-12,课题负责人

(5) 国家电网,横向委托类,B312M023000R,面向电力巡检机器人智能作业的视触觉融合研究与应用,2023-102024-09

(6) 国家电网,横向委托类,用于绞磨尾绳的自动收放装置,2023-082024-02

(7) 中国科学院自动化所&中国航发商用航空发动机有限责任公司,横向委托类,动态间隙检测系统,2023-072024-02

(8) 企业委托,符合II类医疗器械精度标准的可穿戴电子血压监测系统研制,2023-052025-04

(9) 浙江省科学技术厅,领雁计划,2022C03052,基于柔性传感技术的可穿戴人体健康监测设备研制与应用示范,2022-012024-12,课题负责人

(10) 企业委托,基于柔性传感技术的人体可穿戴脉搏波监测设备研制,2022-042023-10

(11) 国家电网,横向委托类,用于电力巡检机器人智能作业的柔性触觉末端研究及应用2022-012022-12

(12) 安徽省教育厅,协同创新项目,GXXT-2021-30,面向高场强核磁共振医疗设备的跨尺度多模态医学图像处理技术,2021-062023-05,参加

(13) 合肥工业大学,中央高校基本科研业务费,面向机器人抓取的全柔性力学协同感知与信息融合研究,2020-012021-12

(14) 中国科学院合肥物质科学研究院,横向委托类,基于力感知的肌肉硬度数据采集软件(下位机)开发,2020-122021-05

(15) 合肥学院,横向委托类,基于力感知的肌肉硬度数据采集软件(上位机)开发,2020-122021-05

(16) 国家自然科学基金重大研究计划—共融机器人基础理论与关键技术研究,面向生机电一体化灵巧操作假肢的共融机器人理论与关键技术研究,916482062017-01至2020-12参加

(17) 浙江省科学技术厅,重点研发计划,2018C01041,面向可穿戴设备的柔性/可拉伸电极与触觉传感器研发及其产业化,2017-012019-12,参加

(18) 国家自然科学基金委员会,面上项目,61471155,一种可实现全程感知的机器人皮肤研究,2015-012018-12,参加

(19) 国家自然科学基金委员会,青年基金项目,61401141,两相碳填料型压力敏感复合导电材料中协同导电效应的量化研究,2015-012017-12

(20) 安徽省科学技术厅,青年基金项目,1508085QF115,碳填料并用型压力敏感复合导电材料的渗流模型研究,2015-062017-06

(21) 国家自然科学基金面上项目,61072032,一种新型的柔性压力/温度多功能阵列触觉传感器研究,2011-012013-12,参加

(22) 国家高技术研究发展计划,2007AA04Z220,用于检测三维力的人工皮肤,2007-102010-6,参加

(23) 国家自然科学基金面上项目,60672024,一种新型的柔性阵列触觉传感器的研究,2007.012009.12,参加


究成果:

一、期刊论文

(1) Ruohai HuPing Liu*Wei ZhuXu GuoZhi LiuZixiang JinRunhuai Yang,Jingwen HanHelei TianYuanming MaCaixia LiuAiguo SongYanxi XiaSheng NieXiaoming YangYing HuangDesignfabricationand wearable medical application of a high-resolution flexible capacitive temperature sensor based on the thermotropic phase transition composites of PEO/PVDF-HFP/H3PO4Advanced Functional Materials2024.12.042417205.

(2) Ping Liu*Wei TongRuohai HuAustin YangHe TianXu GuoCaixia LiuYuanming MaHelei TianAiguo SongXiaoming YangYing HuangUltra-sensitive flexible resistive sensor based on modified PEDOT: PSS inspired by earthwormChemical Engineering Journal2024.07.11494:152984.

(3) Mingliang LiPing WangHui ZhangPing LiuGuangli LiuCong SuiRunhuai YangTingting LuoManipulation study of bubble-propelled hydrogel microbotsAdvanced Materials Technologies2024.12.23202401265.

(4) Yifan ChengShilu ZhuHui MaShengting ZhangKun WeiShiyu WuYongkang TangPing LiuTingting Luo*Guangli Liu*Runhuai Yang*Multimodal locomotion and dynamic interaction of hydrogel microdisks at the air-water interface under magnetic and light stimuliACS Applied Materials & Interface2024.11.0516(45):61633–61644

(5) Liu CaixiaMa FeiSun QichangHu QiushengTong WeiGuo XuHu RuohaiLiu PingHuang YingHao XingtongMa WenzhiZhang Yugang*Highly sensitive flexible capacitive pressure sensor based on a multicross-linked dual-network ionic hydrogel for blood pressure monitoring applicationsACS Applied Materials & Interface2024.06.2716(26):34042-34056.

(6) Han FengPing Liu*Xu GuoJunliang LiYifan SunShunge WuRuohai HuZhi LiuHelei TianYuanming MaCaixia LiuHouzhu HuangFei TengXinyue TangAustin YangAiguo SongXiaoming YangYing HuangPSS modified by 3-aminopropyltrimethoxysilane linking large-area GNPs/PSS to silicone rubber with stable interface combination for high sensitivity flexible resistive sensorChemical Engineering Journal2023.06.01420:129881.

(7) Junliang LiPing Liu*Qiusheng HuWei TongYifan SunHan FengShunge WuRuohai HuCaixia LiuAustin YangYubing WangHelei TianKun XingYi BuYugang ZhangYuanming MaFei TengJian LiuXinxin GuoAiguo SongXiaoming YangYing HuangAn ultra-sensitive flexibleresistive sensor with double strain layer and crack inspiredby the physical structure of human epidermis: designfabrication and cuffless blood pressure monitoring applicationAdvanced Materials Technologies2023.03.1182201466.

(8) Caixia LiuYifan SunPing Liu*Fei MaShunge WuJunliang LiShuai LiRuohai HuZhenti WangYubing WangGuiqian LiuKun XingHelei TianHouzhu HuangXinxin GuoChunyu GeXiaoming YangYing HuangFabrication and characterization of highly sensitive flexible strain sensor based on biodegradable gelatin nanocomposites and double strain layered structures with crack for gesture recognitionInternational Journal of Biological Macromolecules2023.03.15231123568.

(9) Shunge WuPing Liu*Wei TongJunliang LiGuangyuan XuFei TengJian LiuHan FengRuohai HuAustin YangCaixia LiuKun XingXiaoping YangHelei TianAiguo SongXiaoming YangYing HuangAn ultra-sensitive core-sheath fiber strain sensor based on double strain layered structure with cracks and modified MWCNTs/silicone rubber for wearable medical electronicsComposites Science and Technology2023.01.05231109816.

(10) Pengfei WangPing Liu*Han FengYuwen LiQian ZhangRuohai HuCaixia LiuKun XingAiguo SongXiaoming YangYing HuangFlexible and wireless normal-tangential force sensor based on resonant mechanism for robotic gripping applicationsAdvanced Materials Technologies2022.03.1172101385.

(11) Panpan XiaPing Liu*Shunge WuQian ZhangPengfei WangRuohai HuKun XingCaixia LiuAiguo SongXiaoming YangYing HuangHighly stretchable and sensitive flexible resistive strain sensor based on waterborne polyurethane polymer for wearable electronicsComposites Science and Technology2022.02.17221109355.

(12) Ping Liu*Yuwen LiChen WuCaixia LiuYuanming MaYugang ZhangKun Xing*Guangzhu LiuJunfeng WangYing HuangAiguo SongMan LiXiaoming YangTheoretical estimation on electrical conductivitysynergy effect and piezoresistive behavior for nanocomposites with hybrid carbon nanotube/graphene based on modified Bethe lattice methodComputational Materials Science2022.02.01202:110986.

(13) Qian ZhangLiang ShenPing Liu*Panpan XiaJunliang LiHan FengCaixia LiuKun Xing*Aiguo SongMan LiXiaoming YangYing HuangHighly sensitive resistance-type flexible pressure sensor for cuffless blood-pressure monitoring by using neural network techniquesComposites Part B: Engineering2021.12.05(226)109365.

(14) Chen WuJiqing TaoJunliang LiPing Liu*Ruohai HuJunfeng WangCaixia LiuYang GaoYing HuangAiguo SongThe nonlinear synergistic enhancement electric conductive effect in polymer-matrix composites containing hybrid fillers of carbon nanotubes and graphene nanoplateletsComputational Materials Science2021.06.15194110458.

(15) JiawenJiPanpanXiaXunZhuPingLiu*Chen WuJiqingTaoJiayanYanXiaolingLiuA simulation for the electrical conductivity of nanocomposites filled with carbon black based on the three-dimensional Monte Carlo MethodPolymer Science: Series A2021.03.1063(2):196-207.

(16) Caixia LiuMengdi LiBaisheng LuYing Huang*Yangyang ZhangPing LiuXiaohui GuoYuanming MaYugang ZhangShenyang LiWei ChenYunjian GeHigh-sensitivity crack-based flexible strain sensor with dual hydrogen bond-assisted structure for monitoring tiny human motions and writing behaviorOrganic Electronics2021.01.1588105977

(17) Xinli WangQian ZhangPing Liu*Xun ZhuChen WuJinyu WangCaixia LiuJunfeng WangYang GaoAiguo SongYing HuangAn ultrafast response and precisely controllable soft electromagnet actuator based on Ecoflex rubber film filled with neodymium-iron-boronJournal of Micromechanics and Microengineering2021.01.0831(2): 025010.

(18) Xun ZhuPengfei WangXinli WangPing Liu*Chen WuJiayan YanXiaoling LiuCaixia LiuYing HuangAiguo SongYunjian GeA study of the appropriatenessgeometrysizeand fillers boundary restraint on representative volume element in electrical simulation for carbon-based nanocompositesMaterials Today Communications2020.12.0125101639

(19) Yangyang ZhangYing Huang*Xuehu SunYunong ZhaoXiaohui GuoPing LiuCaixia LiuYugang ZhangStatic and dynamic human arm/hand gesture capturing and recognition via multiinformation fusion of flexible strain sensorsIEEE Sensors Journal2020.06.1520(12):6450-6459.

(20) Yangyang ZhangYing Huang*Ping LiuCaixia LiuXiaohui GuoYugang ZhangHighly stretchable strain sensor with wide linear region via hydrogen bond-assisted dual-mode cooperative conductive network for gait detectionComposites Science and Technology2020.05.03191108070.

(21) 张阳阳,黄英*,刘月,刘彩霞,刘平,张玉刚,基于多传感器信息融合的人类抓握特征学习及物体识别,机器人,2020.05.0142(03)267-277.

(22) Ying HuangYang WangXuehu SunXiaohui GuoYangyang ZhangZhiqiang WangPing Liu*Caixia LiuJihong QiuYugang ZhangSuperelastic and large-range pressure sensor with hollow-sphere architectures for wearable electronic skinSmart Materials and Structures2020.02.2729(4):045014.

(23) Yangyang ZhangYing Huang*Baisheng LuYuanming MaJihong QiuYunong ZhaoXiaohui GuoCaixia LiuPing LiuYugang ZhangReal-time sitting behavior tracking and analysis for rectification of sitting habits by strain sensor-based flexible data bandsMeasurement Science and Technology2020.02.0631(5)055102.

(24) Yue LiuChen WuHuanfeng ZhouPing Liu*Caixia LiuHao WuJunnan ZhaoYugang ZhangYuanming MaYing HuangAiguo SongYunjian GePredictions of electrical percolation of graphene‐based nanocomposites by the three‐dimensional Monte Carlo simulationJournal of Applied Polymer Science2020.01.2013748999.

(25) Ying HuangZhiqiang WangHuanfeng ZhouXiaohui GuoYangyang ZhangYang WangPing Liu*Caixia LiuYuanming MaYugang ZhangHighly sensitive pressure sensor based on structurally modified tissue paper for human physiological activity monitoringJournal of Applied Polymer Science2020.01.1413748973.

(26) Caixia LiuWenjin ZhuMengdi LiXuehu SunXiaohui GuoJian LiuPing LiuYangyang ZhangYing Huang*Highly stable pressure sensor based on carbonized melamine sponge using fully wrapped conductive path for flexible electronic skinOrganic Electronics2020.01.0576:105447.

(27) Yingchun LuHao WuJian LiuYue LiuJunnan ZhaoPing Liu*Junfeng WangHuaguo LiangYing Huang*Aiguo SongElectrical percolation of silicone rubber filled by carbon black and carbon nanotubes researched by the Monte Carlo simulationJournal of Applied Polymer Science2019.12.10136(46)48222.

(28) Ying Huang*Wei HuXinli WangXiaohui GuoChao HaoYunong ZhaoXiao ZengPing LiuA low-voltage graphene/Ag-based phase transition-controlled force actuatorComposites Part B: Engineering2019.10.01174: 106912.

(29) Ping Liu*Jian LiuXun ZhuChen WuYue LiuWeidong PanJunnan ZhaoXiaohui GuoCaixia LiuYing HuangAiguo SongA highly adhesive flexible strain sensor based on ultra-violet adhesive filled by graphene and carbon black for wearable monitoringComposites Science and Technology2019.09.29182107771.

(30) 张阳阳,黄英*,刘家祥,刘平,张玉刚,面向手势动作捕捉的传感器设计及主从手运动映射,机器人,2019.03.1541(02)156-164.

(31) Ying HuangChao HaoJian LiuXiaohui GuoYangyang ZhangPing LiuCaixia LiuYugang ZhangXiaoming YangHighly stretchablerapid-response strain sensor based on SWCNTs/CB nanocomposites coated on rubber/latex polymer for human motion trackingSensor Review2019.03.0739(2): 233-245.

(32) Yunong ZhaoYing Huang*Wei HuXiaohui GuoYang WangPing LiuCaixia LiuYugang ZhangHighly sensitive flexible strain sensor based on threadlike spandex substrate coating with conductive nanocomposites for wearable electronic skinSmart Materials and Structures2019.02.0128(3): 0350004.

(33) Ying Huang*Wendong WangXiao ZengXiaohui GuoYangyang ZhangPing LiuYuanming MaYugang ZhangEffects of the filler size on the electrical percolation threshold of carbon black–carbon nanotube–polymer compositesJournal of Applied Polymer Science2018.08.20135(32)46517.

(34) Ying Huang*Xiao ZengWendong WangXiaohui GuoChao HaoWeidong PanPing LiuCaixia LiuYuanming MaYugang ZhangXiaoming YangHigh-resolution flexible temperature sensor based graphite-filled polyethylene oxide and polyvinylidene fluoride composites for body temperature monitoringSensors and Actuators A:Physical2018.08.01278:1-10.

(35) Ping Liu*Weidong PanYue LiuJian LiuWenrui XuXiaohui GuoCaixia LiuYugang ZhangYunjian GeYing HuangFully flexible strain sensor from core-spun elastic threads withintegrated electrode and sensing cell based on conductive nanocompositeComposites Science and Technology2018.05.0315942-49.

(36) Caixia LiuCan WuChao HaoPing LiuXiaohui GuoYugang ZhangYing Huang*Electrical conductivity transformation mechanism of GNPs/CB/SR nanocomposite foamsJournal of Applied Polymer Science2018.03.15135(11)45996.

(37) Ying Huang*Yunong ZhaoYang WangXiaohui GuoYangyang ZhangPing LiuCaixia LiuYugang ZhangHighly stretchable strain sensor based on polyurethane substrate using hydrogen bond-assisted laminated structure for monitoring of tiny human motionsSmart Materials and Structures2018.02.1527(3)035013.

(38) Wenqing KanYing Huang*Xiao ZengXiaohui GuoPing LiuA dual-mode proximity sensor with combination of inductive and capacitive sensing unitsSensor Review2018.01.1538(2): 199-206.

(39) Ying Huang*Le GaoYunong ZhaoXiaohui GuoCaixia LiuPing LiuHighly flexible fabric strain sensor based on graphene nanoplatelet–polyaniline nanocomposites for human gesture recognitionJournal of Applied Polymer Science2017.10.15134(39)45340.

(40) 张阳阳,黄英*,郝超,郭小辉,刘平,基于织物拉伸传感器的手势映射系统,仪器仪表学报,2017.10.1538(10)2422-2429.

(41) Xiaohui GuoYing Huang*Yunong ZhaoLeidong MaoLe GaoWeidong PanYugang ZhangPing LiuHighly stretchable strain sensor based on SWCNTs/CB synergistic conductive network for wearable human-activity monitoring and recognitionSmart Materials and Structures2017.09.0926(9)095017.

(42) Ying Huang*Xia CaiWenqing KanShihua QiuXiaohui GuoCaixia LiuPing LiuA flexible dual-mode proximity sensor based on cooperative sensing for robot skin applicationsReview of Scientific Instruments2017.08.2188(8)085005.

(43) Ying Huang*Xiaoyue HeLe GaoYue WangCaixia LiuPing LiuPressure-sensitive carbon black/graphene nanoplatelets-silicone rubber hybrid conductive composites based on a three-dimensional polydopamine-modified polyurethane spongeJournal of Materials Science: Materials in Electronics2017.07.1528(13)9495-9504.

(44) Ying Huang*Haitao YuanWenqing KanXiaohui GuoCaixia LiuPing LiuA flexible three‑axial capacitive tactile sensor with multilayered dielectric for artificial skin applicationsMicrosystem Technologies2017.06. 1523(6)1847-1852.

(45) Ying Huang*Yue WangLe GaoXiaoyue HePing LiuCaixia LiuCharacterization of stretchable SWCNTs/Lycra fabric electrode with dyeing processJournal of Materials Science: Materials in Electronics2017.03.1528(05)4279-4287.

(46) 张阳阳,黄英*,郝超,郭小辉,刘平,基于织物拉伸传感器的手势映射系统,仪器仪表学报,2017.10.1538(10)2422-2429.

(47) Ying Huang*Ding FangCan WuWeihua WangXiaohui GuoPing LiuA flexible touch-pressure sensor array with wireless transmission system for robotic skinReview of Scientific Instruments2016.6.2887(6)065007.

(48) Xiaohui GuoYing Huang*Xia CaiCaixia LiuPing LiuCapacitive wearable tactile sensor based on smart textile substrate with carbon black/silicone rubber composite dielectricMeasurement Science and Technology2016.03.0727(4)045105.

(49) Ying Huang*Weihua WangYue WangPing LiuCaixia LiuHelei TianSynergistic effects and piezoresistive characteristics of carbon nanofillers/silicone rubber compositesMaterials Technology: Advanced Performance Materials2016.03.0731(4)229-233.

(50) Ping Liu*Caixia LiuYing HuangWeihua WangDing FangYugang ZhangYunjian GeTransfer function and working principle of a pressure/temperature sensor based on carbon black/silicone rubber compositesJournal of Applied Polymer Science2016.02.15133(7)42979.

(51) 郭小辉,黄英*,毛磊东,刘彩霞,刘平,可穿戴式电子织物仿生皮肤设计与应用研究,仪器仪表学报,2016.4.1537(04)938-944.

(52) Shihua QiuYing Huang*Xiaoyue HeZhiguang SunPing LiuCaixia LiuA dual-mode proximity sensor with integrated capacitive and temperature sensing unitsMeasurement Science and Technology2015.8.2626(10)105101.

(53) Ying Huang*Weihua WangZhiguang SunYue WangPing LiuCaixia LiuA multilayered flexible piezoresistive sensor for wide-ranged pressure measurement based on CNTs/CB/SR compositeJournal of Materials Research2015.5.1130(12)1869-1875.

(54) Ping Liu*Ying HuangCaixia LiuYue WangXiaohui GuoYugang ZhangYunjian GeEnhanced electrical conductivity and mechanical stability of flexible pressure-sensitive GNPs/CB/SR composites: Synergistic effects of GNPs and CBJournal of Materials Research2015.11.2730(22)3394-3402.

(55) 郭小辉,黄英*,腾珂,刘平,刘彩霞,田合雷,柔性温度压力仿生皮肤的模块化设计与实现,机器人,2015.7.1537(04)493-498.

(56) 黄英*,郭小辉,刘家俊,马阳洋,刘彩霞,刘平,田合雷,可拼接式全柔性电容触觉阵列传感器设计与实验,机器人,2015.3.1537(02)136-141+151.

(57) 郭小辉,黄英*,刘彩霞,刘平,电容-电阻双模式材质识别传感器设计与实验,华中科技大学学报(自然科学版)2015.10.0143(S1)220-223.

(58) 田合雷,刘平,高峰,刘彩霞,黄英*,纳米SiO2对压力敏感导电橡胶静态特性和动态特性的影响,功能材料,2015.9.1546(12)17022-17026.

(59) 李雷鸣,黄英*,马阳洋,汪卫华,刘平,张玉刚,用于压/拉检测的机器人皮肤柔/弹性传感器阵列设计,计量学报,2015.08.2836(04)393-396.

(60) 田合雷,刘平,刘彩霞,黄英*,基于炭黑填充导电橡胶的温度传感器工作原理,合肥工业大学学报(自然科学版)2015.9.2838(09)1230-1233.

(61) 田合雷,刘平,郭小辉,刘彩霞,黄英*,基于导电橡胶的柔性压力/温度复合感知系统,传感器与微系统,2015.10.2034(10)100-103.

(62) 郭小辉,黄英*,腾珂,汪卫华,刘彩霞,刘平,全柔性电容式触觉传感阵列设计与实验,电子测量与仪器学报,2015.9.1529(09)1278-1285.

(63) Dayue WangYing Huang*Yangyang MaPing LiuCaixia LiuYugang ZhangResearch on highly sensitive humidity sensor based on Tr-MWCNT/HEC composite filmsJournal of Materials Research2014.12.1429(23)2845-2853.

(64) Dayue WangYing Huang*Wenting CaiMin TianPing LiuYugang ZhangFunctionalized multi-wall carbon nanotubes/silicone rubber composite as capacitive humidity sensorJournal of Applied Polymer Science2014.6.5131(11)40342.

(65) Min TianYing Huang*Weihua WangRuiqi LiPing LiuCaixia LiuYugang ZhangTemperature-dependent electrical properties of graphene nanoplatelets film dropped on flexible substratesJournal of Materials Research2014.6.1429(11)1288-1294.

(66) Yongcheng JiangPing Liu*Feature extraction for identification of drug and explosive concealed by body packing based on positive matrix factorizationMeasurement2014.01.1547(01)193-199.

(67) 周琪,钟永辉,陈星,王岩,刘平,吴玉程*,石墨烯/纳米TiO2复合材料的制备及其光催化性能,复合材料学报,2014.04.1531(02)255-262.

(68) 白金蓬,黄英*,江宜舟,马阳洋,刘平,刘彩霞,驾驶状态实时监测系统设计,电子测量与仪器学报,2014.9.1528(09)965-973.

(69) 郭小辉,黄英*,袁海涛,邱世华,刘平,刘彩霞,柔性复合传感器阵列信号采集及温度补偿系统,电子测量与仪器学报,2014.11.1528(11)1254-1261.

(70) Yanling LiPing LiuHaishun DuZhu LiJinhuai LiuDaoyang Yu*Minqiang Li*Marginal Fisher Analysis-based feature extraction for identification of drug and explosive concealed by body packingAnalytical Methods2013.11.015(22)6331-6337.

(71) Ping LiuXia ZhouYanling LiMinqiang LiDaoyang Yu*Jinhuai Liu*The application of principal component analysis and non-negative matrix factorization to analyze time-resolved optical waveguide absorption spectroscopy dataAnalytical Methods2013.09.105(17)4454-4459.

(72) Ping LiuZhu LiBo LiGuolong ShiMinqiang LiDaoyang Yu*Jin huai Liu*The analysis of time-resolved optical waveguide absorption spectroscopy based on positive matrix factorizationJournal of Colloid and Interface Science2013.8.1403(04)134-141.

(73) Ping LiuDingjun QuWei LiBo LiMinqiang LiDaoyang Yu*Jinhuai Liu*Feature extraction for identification of drugs and explosives concealed by body packing based on discrete cosine transform plus linear discriminant analysisAnalytical Methods2013.04.015(8)1935-1940.

(74) 刘平,李波,余道洋,刘锦淮*,基于非负矩阵因子分解的光波导分光光谱分析,华中科技大学学报(自然科学版)科技大学,2013.8.2341(08)6-9.

(75) 刘秀梅,高峰,蔡文婷,刘平,缪伟,黄英*,碳纳米管/炭黑/硅橡胶复合材料的压阻计算模型分析,功能材料,2013.3.1544(05)669-672.

(76) 刘平,黄英*,刘秀梅,蔡文婷,李锐琦,王大月,基于炭黑填充导电橡胶的力敏传感器的灵敏度,复合材料学报,2013.06.1530(03)51-55.

(77) 刘平,黄英*,蔡文婷,刘秀梅,李锐琦,王大月,基于炭黑填充导电橡胶的压力/温度传感器非线性特性,复合材料学报,2013.08.1530(05)9-13.

(78) 刘平,黄英*,廉超,蒋红生,葛运建,炭黑填充导电橡胶的力敏传感器灵敏系数,复合材料学报,2012.02.1529(01)16-20.

(79) 刘平,黄英*,廉超,蒋红生,刘秀梅,赵小文,基于炭黑填充导电橡胶的压力传感器非线性特性,高分子材料科学与工程,2012.08.1528(08)72-75.

(80) 刘平,黄英*,廉超,蒋红生,赵小文,柔性触觉传感器用温度敏感导电橡胶的电阻-温度模型,高分子材料科学与工程,2012.6.1528(06)107-109.

(81) 黄英*,刘平,廉超,刘秀梅,蒋红生,炭黑填充导电橡胶的温度传感器灵敏系数,复合材料学报,2012.06.1529(03)30-35.

(82) 蒋红生,黄英*,杨庆华,高峰,刘平,导电炭黑填充硅橡胶的电阻温度系数,功能材料,2012.2.1543(03)383-386.

(83) 廉超,黄英*,高峰,刘平,张玉刚,多壁碳纳米管/硅橡胶复合材料的湿度敏感特性,功能材料,2012.3.3043(06)704-707.

二、授权发明专利

(1) 刘平,罗颂杰,李俊阳,刘志,刘光柱,田合雷,刘彩霞,马渊明,杨晓明,夏厚君,李耀邦,黄英,基于双电层电容和本征赝电容协同作用的柔性压力传感器,2025.01.03,中国,ZL202411572976.6

(2) 刘彩霞,孙启昌,邵孟颖,刘平,胡若海,刘光柱,马渊明,黄英,毛彦博,余佳赟,杨晓明,李耀邦,夏厚君,基于锌离子迁移率调控的快速响应离电式柔性压力传感器,2024.12.27,中国,ZL202411562330.X

(3) 刘平,郭旭,余宏波,刘志,田合雷,马渊明,刘彩霞,张玉刚,黄英,杨晓明,李耀邦,夏厚君,基于离子泵效应的差动电容式压力传感器及其制备方法,2024.12.24,中国,ZL202411141930.9

(4) 刘平,刘志,罗颂杰,胡若海,田合雷,马渊明,刘彩霞,张玉刚,黄英,杨晓明,李耀邦,夏厚君,一种宽环境湿度适应的离电式柔性压力传感器,2024.12.03,中国,ZL202411115159.8

(5) 刘平,余宏波,李春园,胡若海,田合雷,马渊明,刘彩霞,黄英,杨晓明,李耀邦,夏厚君,基于复合梯度结构的高灵敏宽线性柔性应变传感器,2024.12.03,中国,ZL202411170417.2

(6) 刘平,余宏波,郭旭,马菲,田右,张扬,刘彩霞,张玉刚,马渊明,田合雷,黄英,杨晓明,柔性霍尔式力传感器用热/磁屏蔽复合结构,2024.02.13,中国,ZL202311606203.0

(7) 刘平,童伟,郭旭,胡若海,刘彩霞,张玉刚,杨晓明,滕飞,刘健,黄英,基于PEDOT:PSS的柔性应变传感器及其制备方法,2023.06.06,中国,ZL202310031972.6

(8) 刘平,冯涵,吴顺哥,刘彩霞,黄英,一种基于柔性电子开关阵列的跳远测试系统,2022.05.10,中国,ZL202110526966.9

(9) 刘平,一种具有规则裂纹结构的柔性应变传感器及其制作方法,2021.08.17,中国,ZL201911136167.X

(10) 黄英,曾晓,朱文瑾,刘平,刘彩霞,杨晓明,一种用于监测人体体温的可穿戴柔性温度传感器及其制备方法,2021.06.08,中国,ZL201811061762.7

(11) 黄英,王志强,汪洋,刘平,刘彩霞,杨晓明,一种基于改性纸基的高灵敏度柔性压力传感器及其制备方法2021.02.05,中国,ZL201910619124.0

(12) 黄英,胡伟,刘平,郭小辉,郝超,基于石墨烯/纳米银-乳胶膜的电热相变执行器及其制作方法,2020.10.02,中国,ZL201810744365.3

(13) 黄英,张阳阳,朱文瑾,刘平,刘彩霞,基于多信息融合的人手协同灵巧手的伺服操作系统及其方法,2020.06.26,中国,ZL201811549841.2

(14) 黄英,赵雨农,王志强,郭小辉,刘平,刘彩霞,一种基于聚氨酯纤维可拉伸应变传感器及其制备方法,2020.04.14,中国,ZL201711229196.1

(15) 黄英,郭小辉,汪洋,胡伟,刘彩霞,刘平,一种全柔性接近-触压觉传感器,2019.11.08,中国,ZL201710873706.2

(16) 黄英,汪月,何晓玥,刘平,刘彩霞,一种基于导电织物的可拉伸电极及其制备方法,2018.08.03,中国,ZL201610207740.1

(17) 黄英,郭小辉,马阳洋,刘彩霞,刘平,一种紧凑型2.45GHz柔性可穿戴石墨烯天线,2018.02.06,中国,ZL201510578329.0

(18) 黄英,汪卫华,汪月,何晓玥,郭小辉,刘彩霞,刘平,一种全柔性电阻式触压觉感知传感器及其制作方法,2017.12.28,中国,ZL201510282590.6

(19) 黄英,郭小辉,伍璨,邱世华,刘彩霞,刘平,一种共面波导馈电的2.45GHz柔性可穿戴天线,2017.12.26,中国,ZL201510801462.8

(20) 黄英,腾珂,郭小辉,马阳洋,刘平,一种可穿戴式多信息融合的步态分析系统及其方法,2017.12.26,中国,ZL201510971801.7

(21) 黄英,邱世华,刘彩霞,刘平,张玉刚,郭小辉,马阳洋,汪卫华,一种全柔性电容-电阻双模式接近觉传感器,2017.01.25,中国,ZL201510163579.8

(22) 黄英,郭小辉,方定,孙志广,刘彩霞,刘平,张玉刚,一种电容式触滑觉传感器装置,2016.05.11,中国,ZL201410513767.4

(23) 黄英,袁海涛,刘彩霞,刘平,张玉刚,郭小辉,李雷鸣,邱世华,一种变介质式电容柔性三维力触觉传感器2016.02.24,中国ZL201410206998.0

(24) 黄英,郭小辉,刘家俊,刘彩霞,袁海涛,马阳洋,刘平,张玉刚,一种全柔性电容式触觉传感器,2016.01.06,中国,ZL201410245030.9

(25) 黄英,江宜舟,腾珂,袁海涛,何晓玥,刘平,刘彩霞,张玉刚,一种触觉传感器的多维力加载及标定装置,2015.11.18,中国,ZL201410272708.2

(26) 黄英,白金蓬,郭小辉,袁海涛,刘彩霞,刘平,蔡文婷,吴思谕,李锐琦,基于多信息的驾驶员疲劳实时监测系统及监测方法,2015.09.16,中国,ZL201310415071.3

(27) 戚功美,余道洋,刘平,李民强,刘锦淮,一种水体中的氟离子在线监测分析仪及其检测方法,2015.04.22,中国,ZL201310158666.5

(28) 余道洋,李柱,刘平,戚功美,李民强,刘锦淮,一种水中重金属在线分析仪的水样采集装置,2015.09.02,中国,ZL201310159027.0

(29) 余道洋,刘平,李柱,戚功美,李民强,刘锦淮,一种在线重金属分析仪的电极自动更换装置,2015.03.04,中国,ZL201310159038.9

三、获奖

(1) 中国石油和化学工业联合会技术发明三等奖,柔性功能复合薄膜跨尺度设计与精密制造及产业化应用,刘平,谭刚,沈雁,杨晓明,夏厚君,黄英,2024

(2) 浙江省科学技术进步二等奖,多模态响应的柔性功能复合薄膜跨尺度设计与制造及产业化,杨晓明、刘平、卜小海、夏厚君、周钰明、李耀邦、黄英,毕立林、胡文惠,2021

(3) 浙江省科学技术进步二等奖,多相叠层聚合物基可拉伸柔性电子薄膜关键技术及产业化,杨晓明,刘平,刘彩霞,夏厚君,黄英,聂胜,江叔福,涂大记,吴恒勇,2020

(4) 科技部全国颠覆性技术创新大赛优秀项目,第三代应变材料与柔性传感技术,刘平,2021

(5) 安徽省电子信息自然科学二等奖,农业物联网感知层无线接入关键理论与方法,时国龙、尹柏强、刘平、沙文、沈心怡,2022

(6) 国网安徽省电力有限公司科学技术进步三等奖,用于电力巡检机器人智能作业的柔性触觉末端研究及应用,滕飞、刘平、刘健、郭欣欣、黄厚柱、徐广源、王贞体、葛春雨,2022


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