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电磁力测量试验台的设计 被引量:5
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作者 边忠国 《实验技术与管理》 CAS 2007年第4期64-65,76,共3页
从试验台的结构特点和工作流程入手,介绍了其液压系统的工作原理及特点。实践证明:该系统设计合理、工作可靠、调节控制灵活方便。
关键词 电磁力测量 试验台 磁悬浮 液压系统 调速回路
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差动式磁悬浮主动隔振系统的控制机理研究 被引量:8
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作者 宋春生 胡业发 周祖德 《振动与冲击》 EI CSCD 北大核心 2010年第7期24-27,104,共5页
在对磁悬浮主动隔振系统的核心部件——差动磁悬浮主动隔振器的电磁力进行实验测量的基础上,利用最小二乘法对实验数据进行拟合,得到主动隔振器的电磁力-电流-气隙之间关系的实际表达式。提出了一种基于力传递率的主动隔振控制机理,给... 在对磁悬浮主动隔振系统的核心部件——差动磁悬浮主动隔振器的电磁力进行实验测量的基础上,利用最小二乘法对实验数据进行拟合,得到主动隔振器的电磁力-电流-气隙之间关系的实际表达式。提出了一种基于力传递率的主动隔振控制机理,给出了价值函数的表达式。考虑主动隔振器的实际能力,对此价值函数进行修正,得到修正的价值函数,推导出最优反馈矩阵。基于此主动控制机理,建立控制模型,在扫频信号激励下,进行仿真分析。仿真结果表明:差动式磁悬浮主动隔振系统具有良好的隔振特性,与传统的被动系统相比,对低频干扰的隔振效果提高(即:力传递率降低)了2dB-3dB,尤其对谐振频率下的干扰,隔振效果提高了8dB-10dB。为了进一步验证方法的可靠性,搭建实验平台,通过实验方法进行验证。实验结果表明:在低频段有较好的隔振效果,尤其在谐振区附近隔振效果更为明显,提高了6dB-8dB,与仿真结果基本吻合。 展开更多
关键词 差动式磁悬浮主动隔振器 电磁力测量 主动隔振 控制机理
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Quantum precision measurement of two-dimensional forces with 10^(-28)-Newton stability
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作者 Xinxin Guo Zhongcheng Yu +5 位作者 Fansu Wei Shengjie Jin Xuzong Chen Xiaopeng Li Xibo Zhang Xiaoji Zhou 《Science Bulletin》 SCIE EI CAS CSCD 2022年第22期2291-2297,共7页
High-precision sensing of vectorial forces has broad impact on both fundamental research and technological applications such as the examination of vacuum fluctuations and the detection of surface roughness of nanostru... High-precision sensing of vectorial forces has broad impact on both fundamental research and technological applications such as the examination of vacuum fluctuations and the detection of surface roughness of nanostructures.Recent years have witnessed much progress on sensing alternating electromagnetic forces for the rapidly advancing quantum technology-orders of magnitude improvement has been accomplished on the detection sensitivity with atomic sensors,whereas such high-precision measurements for static electromagnetic forces have rarely been demonstrated.Here,based on quantum atomic matter waves confined by a two-dimensional optical lattice,we perform precision measurement of static electromagnetic forces by imaging coherent wave mechanics in the reciprocal space.The lattice confinement causes a decoupling between real-space and reciprocal dynamics,and provides a rigid coordinate frame for calibrating the wavevector accumulation of the matter wave.With that we achieve a stateof-the-art sensitivity of 2.30(8)×10^(-26) N/√Hz.Long-term stabilities on the order of 10^(-28) N are observed in the two spatial components of a force,which allows probing atomic Van der Waals forces at one millimeter distance.As a further illustrative application,we use our atomic sensor to calibrate the control precision of an alternating electromagnetic force applied in the experiment.Future developments of this method hold promise for delivering unprecedented atom-based quantum force sensing technologies. 展开更多
关键词 Quantum precision measurement Bose–Einstein condensates Optical lattices Ultracold atoms Force sensor
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