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6篇 您的检索式:作者名="Yu Ruimin"
    题名 作者 年代 出处 被引量
1Preparation of YAG:Ce3+ phosphor by sol-gel low temperature combustion method and its luminescent properties显示文摘Yan Xinghuang Zheng Songsheng Yu Ruimin 2008Transcactions of Nonferrous Metals Society of China2008,18,:1
2Exploration and Practice of Energy Storage Technology in SMEPC显示文摘Energy storage system plays an important role in smart grid. Analyzing from the view of existing status and problems facing Shanghai grid, the article puts forward the necessity of applying energy storage technology in a large urban grid and the achievements in the key technologies in Shanghai grid. As a comprehensive demonstration base for the pilot project of smart grid in Expo 2010 by the State Grid, the Shanghai Caoxi Energy Conversion Comprehensive Exhibit Station is also introduced in detail.Zhang Yu, Du Chenggang, Guo Ruimin Shanghai Municipal Electric Power Company 2010Electricity2010,21,4:1
3VOICE/NON-VOICE DISCRIMINATION SYSTEM FOR PUBLIC COMMUNICATION NETWORKS显示文摘The features of non-voice signals on public communication nets are analyzed and an approach to distinguish such signals is introduced in this paper. It is the first time for the system to meet three key targets: large-scale, high recognition rate and low false alarm at the same time.Hu Ruimin Yu Zhanwu Yao Tianren Li Deren(Wuhan Technical University of Surveying and Mapping, Wuhan 430070) (Huazhong University of Science and Technology, Wuhan 430074 ) 1996Journal of Electronics(China)1996,13,4:0
4Biomedical applications of magnetosomes: State of the art and perspectives显示文摘Magnetosomes, synthesized by magnetotactic bacteria (MTB), have been used in nano- and biotechnological applications, owing to their unique properties such as superparamagnetism, uniform size distribution, excellent bioavailability, and easily modifiable functional groups. In this review, we first discuss the mechanisms of magnetosome formation and describe various modification methods. Subsequently, we focus on presenting the biomedical advancements of bacterial magnetosomes in biomedical imaging, drug delivery, anticancer therapy, biosensor. Finally, we discuss future applications and challenges. This review summarizes the application of magnetosomes in the biomedical field, highlighting the latest advancements and exploring the future development of magnetosomes.Gang Ren Xia Zhou Ruimin Long Maobin Xie Ranjith Kumar Kankala Shibin Wang Yu Shrike Zhang Yuangang Liu 2023Bioactive Materials2023,,10:0
5A Model-Driven Approach to Enhance Faster-than-Nyquist Signaling over Nonlinear Channels显示文摘In order to increase the capacity of future satellite communication systems,faster-than-Nyquist(FTN)signaling is increasingly consideredI..Existing methods for compensating for the high power amplifier(HPA)nonlinearity require perfect knowledge of the HPA model.To address this issue,we analyze the FTN symbol distribution and propose a complex-valued deep neural network(CVDNN)aided compensation scheme for the HPA nonlinearity,which does not require perfect knowledge of the HPA model and can learn the HPA nonlinearity during the training process.A model-driven network for nonlinearity compensation is proposed to further enhance the performance.Furthermore,two training sets based on the FTN symbol distribution are designed for training the network.Extensive simulations show that the Gaussian distribution is a good approximation of the FTN symbol distribution.The proposed model-driven network trained by employing a Gaussian distribution to approximate an FTN signaling can achieve a performance gain of 0.5 dB compared with existing methods without HPA's parameters at the receiver.The proposed neural network is also applicable for non-linear compensation in other systems,including orthogonal frequency-division multiplexing(OFDM).Tongzhou Yu Baoming Bai Ruimin Yuan Chao Chen 2023Journal of Communications and Information Networks2023,8,4:0
6Evolution of Groundwater Major Components in the Hebei Plain: Evidences from 30-Year Monitoring Data显示文摘Groundwater is the main water source in the Hebei Plain. Evolution of groundwater chemistry can not only provide scientific data for sustainable usage of groundwater resources, but also help us in better understanding hydrogeochemical processes in aquifers. Spatial distribution and temporal evolution were analyzed on basis of monitoring data between 1975 and 2005. Results showed that major components in groundwater had increasing trends since 1970s. Major components in shallow groundwater increased more than those in deep one. In shallow groundwater of piedmont alluvial fan-recharge zone, concentrations of Na+, Ca2+, SO42- had great increasing trends, while other major components increased by less than 30%. There were great increasing trends in Na+, Cl-, SO42- concentrations in deep groundwater of central alluvial plain-intermediate zone, while other major components increased by no more than 20%. Deep groundwater from coast plain-discharge zone and piedmont alluvial fan-recharge zone showed no significant variations in major ion concentrations. In shallow groundwater, dissolution, evaporation and human activities played a major role in the increase in major components. However, groundwater mixture resulting from deep groundwater exploitation was believed to be the major factors for the increases in major components in deep groundwater of central alluvial plain-intermediate zone.Yanhong Zhan Huaming Guo Yu Wang Ruimin Li Chuntang Hou Jingli Shao Yali Cui 2014Journal of Earth Science2014,25,3:0
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