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6篇 您的检索式:作者名="GUO Ruohan"
    题名 作者 年代 出处 被引量
1Low-Complexity Signal Detection Based on Relaxation Iteration Method in Massive MIMO Systems显示文摘Minimum mean square error(MMSE) detection algorithm can achieve nearly optimal performance when the number of antennas at the base station(BS) is large enough compared to the number of users. But the traditional MMSE involves complicated matrix inversion. In this paper, we propose a modified MMSE algorithm which exploits the channel characteristics occurring in massive multiple-input multipleoutput(MIMO) channels and the relaxation iteration(RI) method to avoid the matrix inversion. A proper initial solution is given to accelerate the convergence speed. In addition, we point out that the channel estimation scheme used in channel hardening-exploiting message passing(CHEMP) receiver is very appropriate for our proposed detection algorithm. Simulation results verify that the proposed algorithm can achieve very close performance of the traditional MMSE algorithm with a small number of iterations.GUO Ruohan LI Xiaohui FU Weihong HEI Yongqiang 2015China Communications2015,12,S1:3
2Highly efficient degradation of emerging contaminants by magnetic CuO@Fe_(x)O_(y) derived from natural mackinawite(FeS) in the presence of peroxymonosulfate显示文摘In this study,natural mackinawite (Fe S),a chalcophilic mineral,was utilized to prepare iron/copper bimetallic oxides (Cu^(O)@Fe_(x)O_(y)) by displacement plating and calcination process.Various characterization methods prove that Cu;is successfully coated on the surface of Fe S,which were further oxidized to Cu^(O),Fe_(3)O_(4)and/or Fe_(2)O_(3)during calcination process,respectively.Cu^(O)@Fe_(x)O_(y)performed highly efficient capacity to activate PMS for the degradation of various emerging pollutants including sulfamethoxazole(SMX),carbamazepine (CBZ),bisphenol A (BPA),2,4-dichlorophenol (2,4-DCP) and diclofenac (DCF) in aqueous solution.Complete removal of the above pollutants was observed after 8 min of Cu^(O)@Fe_(x)O_(y)/PMS treatment.Taking SMX as an example,the key parameters including Cu^(O)@Fe_(x)O_(y)dosage,PMS dosage and initial p H were optimized.The results show that the catalytic system can be worked in a wide p H range (3.0-9.0).The quenching experiments and electron spin resonance (ESR) test demonstrated that the main reactive oxygen species in Cu^(O)@Fe_(x)O_(y)/PMS system were hydroxyl radicals (^(·)OH) and sulfate radicals(SO_(4)^(·ˉ)),and SO_(4)^(·ˉ)was the primary reactive species.Besides,the influence of coexisting anions (i.e.,Cl^(ˉ),NO_(3)^(ˉ),HCO_(3)^(ˉ)and H_(2)PO_(4)^(ˉ)) for the degradation of SMX was explored.Cu^(O)@Fe_(x)O_(y)/PMS system can maintain good catalytic activity and reusability in different water bodies and long-term running.This work provided a green strategy to fabricate the efficient catalyst in PMS-based advanced oxidation processes.Ruohan Zhang Maolian Chen Zhaokun Xiong Yong Guo Bo Lai 2022Chinese Chemical Letters2022,33,2:1
3A Study on the Relationship Paths Between Leisure and Well-Being of Elderly Residents显示文摘With the increasing of the elderly population in China,the aging of population has become an important issue that cannot be ignored in the development of our country.Based on the social support theory,this study surveyed elderly residents in Shanghai to construct and explore the driving model of well-being of elderly residents in China.The results indicated that leisure motivation of elderly residents in China significantly affected their leisure involvement;leisure involvement was related to leisure satisfaction of the elderly;leisure satisfaction had a significant positive effect on well-being of the elderly.Moreover,a series of managerial implications and recommendations were provided to formulate leisure management policies for the elderly,meet their leisure needs,and improve their well-being.YANG Ruohan DONG Kun HU Hongji SHI Ruiting GUO Yingzhi 2022Journal of Tourism and Hospitality Management2022,10,3:0
4Penetration of foliar-applied Zn and its impact on apple plant nutrition status:in vivo evaluation by synchrotron-based X-ray fluorescence microscopy显示文摘The absorption of foliar fertilizer is a complex process and is poorly understood.The ability to visualize and quantify the pathway that elements take following their application to leaf surfaces is critical for understanding the science and for practical applications of foliar fertilizers.By the use of synchrotron-based X-ray fluorescence to analyze the in vivo localization of elements,our study aimed to investigate the penetration of foliar-applied Zn absorbed by apple(Malus domestica Borkh.)leaves with different physiological surface properties,as well as the possible interactions between foliar Zn level and the mineral nutrient status of treated leaves.The results indicate that the absorption of foliar-applied Zn was largely dependent on plant leaf surface characteristics.High-resolution elemental maps revealed that the high binding capacity of the cell wall for Zn contributed to the observed limitation of Zn penetration across epidermal cells.Trichome density and stomatal aperture had opposite effects on Zn fertilizer penetration:a relatively high density of trichomes increased the hydrophobicity of leaves,whereas the presence of stomata facilitated foliar Zn penetration.Low levels of Zn promoted the accumulation of other mineral elements in treated leaves,and the complexation of Zn with phytic acid potentially occurred owing to exposure to high-Zn conditions.The present study provides direct visual evidence for the Zn penetration process across the leaf surface,which is important for the development of strategies for Zn biofortification in crop species.Ruohan Xie Jianqi Zhao Lingli Lu Patrick Brown Jiansheng Guo Shengke Tian 2020Horticulture Research2020,7,1:0
5Reservoir Characteristics and Controlling Factors of Silurian Lower Kepingtage Formation in Tahe Area, Tarim Basin, NW China显示文摘With the breakthrough of exploration in Well TP16-1, the lower Kepingtage Formation becomes a key target for petroleum exploration of deep clastic reservoir in Tahe area. In this paper we focused on the research of the reservoir characteristics and its controlling factors in two sub-member formations(S_1k_1~1 and S_1k_1~3). Based on X-ray diffraction, conventional physical properties data(porosity and permeability) and reservoir storage space data(casting thin section and scanning electron microscope), we determined that the S_1k_1 Formation belongs to extra-low porosity and permeability reservoir, although the upper S_1k_1~3 Formation shows relative better physical characteristic than the lower S_1k_1~1 Formation. The development of storage space in the study area is controlled by sedimentary microfacies, diagenesis process. Reservoirs in S_1k_1 Formation are mainly located in channel(S_1k_1~1 sandstones) and sand flat(S_1k_1~3 sandstones). The sand flat sediments with a more coarse grain size compared with the channel. In diagenesis, compaction is the major controlling factor for reducing the porosity, followed by cementation. Dissolution of diagenesis is the major controlling factor in enhancing the reservoir porosities. Compared with channel(S_1k_1~1) sandstones, sand flat sandstones(S_1k_1~3) have better reservoir quality for its weaker compaction, cementation and stronger dissolution. On the basis of sedimentary characteristics(grain size and subfacies), physical property(porosity and permeability) and reservoir storage space, we divide the S_1k_1 reservoir into three categories(I, II and III). Type I reservoir is high quality reservoir. It is mainly distributed in the south area of S_1k_1~1 and S_1k_1~3 reservoir. Type II is moderate reservoir. It is located in the middle of S_1k_1~1 reservoir and in the north of S_1k_1~3 reservoir. Type III is the poor reservoir. It is only located in the north of S_1k_1~1 reservoir.Ruohan Liu Zaixing Jiang Ming Wang Weili Yang Jingxiang Guo Minghao Wu Yi Gao Shanyazi Wei Zhihong Nie Hong He 2017Journal of Earth Science2017,28,6:0
6Comprehensive Information Security Evaluation Model Based on Multi-Level Decomposition Feedback for IoT显示文摘The development of the Internet of Things(IoT)calls for a comprehensive in-formation security evaluation framework to quantitatively measure the safety score and risk(S&R)value of the network urgently.In this paper,we summarize the architecture and vulnerability in IoT and propose a comprehensive information security evaluation model based on multi-level decomposition feedback.The evaluation model provides an idea for information security evaluation of IoT and guides the security decision maker for dynamic protection.Firstly,we establish an overall evaluation indicator system that includes four primary indicators of threat information,asset,vulnerability,and management,respectively.It also includes eleven secondary indicators of system protection rate,attack detection rate,confidentiality,availability,controllability,identifiability,number of vulnerabilities,vulnerability hazard level,staff organization,enterprise grading and service continuity,respectively.Then,we build the core algorithm to enable the evaluation model,wherein a novel weighting technique is developed and a quantitative method is proposed to measure the S&R value.Moreover,in order to better supervise the performance of the proposed evaluation model,we present four novel indicators includes residual risk,continuous conformity of residual risk,head-to-tail consistency and decrease ratio,respectively.Simulation results show the advantages of the proposed model in the evaluation of information security for IoT.Jinxin Zuo Yueming Lu Hui Gao Ruohan Cao Ziyv Guo Jim Feng 2020Computers, Materials & Continua2020,,10:0
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