|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Emergency material scheduling optimization model and algorithms:A review显示文摘In the emergency management of disruptions,efficient emergency material scheduling(EMS) is a key factor to save people’s lives and reduce loss.Based on the literature of EMS and related areas in recent years,the research was summarized from two aspects of EMS optimization model and algorithms.It is concluded that the EMS optimization models mainly aim at the shortest time,shortest distance,minimum cost,maximum satisfaction and fairness,etc.The constraints usually include the quantity of supply depots,relief supply and vehicles,the types of commodities,the road network conditions,the budgets and the demand forecast of emergency materials.Multi-objective model is more complex and it usually considers more than one objective.To find the optimized solution,the multiobjective model with complex constraints needs more efficient algorithms.The existing algorithms,including mathematic algorithm and heuristic algorithm,have been categorized.For NP-hard(non-deterministic polynomial hard) problems,heuristic algorithms should be designed,which mainly include genetic algorithm(GA),ant colony optimization(ACO),particle swarm optimization(PSO),etc.Based on the characteristics of the optimization model and various algorithms,appropriate algorithm or tools should be chosen and designed to obtain the optimized solution of EMS model.Finally,the development trends of EMS optimization model and algorithm in the future are proposed. | Hui Hu Jing He Xiongfei He Wanli Yang Jing Nie Bin Ran | 2019 | Journal of Traffic and Transportation Engineering(English Edition)2019,6,5: | 11 |
| 2 | Stereoselective synthesis and structural characterization of rac-planar chiral bis(2-methoxyethylindenyl) lanthanum and yttrium tetrahydroborates 显示文摘 | Qian Changtao Zou Gang Nie Wanli | 2000 | Polyhedron2000,19,1617: | 1 |
| 3 | Stereoselective synthesis and structural characterization of rac-planar chiral his (2-methoxyethylindenyl) lanthanum and yttrium tetra- hydrohorates 显示文摘 | Qian Changtao Zou Gang Nie Wanli | 2000 | Polyhedron2000,19,1617: | 1 |
| 4 | GC-MS determina- tion of sueralose in splenda显示文摘 | QIU Wenlong WANG Zhongfu NIE Wanli | 2007 | Chromatographia2007,66,12: | 1 |
| 5 | Detection of carbohydrates using a pre-column derivatization reagent 1-(4-isopropyl) phenyl-3-methyl-5-pyrazolone by high-performance liquid chromatography coupled with electrospray ionization mass spectrometry显示文摘 | Ping Zhang Zhongfu Wang Mingming Xie Wanli Nie Linjuan Huang | 2010 | Journal of Chromatography B2010,,15: | 1 |
| 6 | From VIB‑to VB‑Group Transition Metal Disulfides:Structure Engineering Modulation for Superior Electromagnetic Wave Absorption显示文摘The laminated transition metal disulfides(TMDs),which are well known as typical two-dimensional(2D)semiconductive materials,possess a unique layered structure,leading to their wide-spread applications in various fields,such as catalysis,energy storage,sensing,etc.In recent years,a lot of research work on TMDs based functional materials in the fields of electromagnetic wave absorption(EMA)has been carried out.Therefore,it is of great significance to elaborate the influence of TMDs on EMA in time to speed up the application.In this review,recent advances in the development of electromagnetic wave(EMW)absorbers based on TMDs,ranging from the VIB group to the VB group are summarized.Their compositions,microstructures,electronic properties,and synthesis methods are presented in detail.Particularly,the modulation of structure engineering from the aspects of heterostructures,defects,morphologies and phases are systematically summarized,focusing on optimizing impedance matching and increasing dielectric and magnetic losses in the EMA materials with tunable EMW absorption performance.Milestones as well as the challenges are also identified to guide the design of new TMDs based dielectric EMA materials with high performance. | Junye Cheng Yongheng Jin Jinghan Zhao Qi Jing Bailong Gu Jialiang Wei Shenghui Yi Mingming Li Wanli Nie Qinghua Qin Deqing Zhang Guangping Zheng Renchao Che | 2024 | Nano-Micro Letters2024,16,2: | 0 |