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浅析MEP环境疫苗控制水体微生物环境影响作用机理
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作者 徐友志 《中国新技术新产品》 2016年第24期179-188,共10页
水体富营养化作为一种自然现象,是氮磷等营养物含量过高而加剧微生物分解及腐败所引起的水质污染过程。其结果造成河流黑臭、湖泊藻华、海洋赤潮等微生物灾害,因此破坏了大自然生态平衡。通过分子设计和有机合成方法研制出的MEP环境疫... 水体富营养化作为一种自然现象,是氮磷等营养物含量过高而加剧微生物分解及腐败所引起的水质污染过程。其结果造成河流黑臭、湖泊藻华、海洋赤潮等微生物灾害,因此破坏了大自然生态平衡。通过分子设计和有机合成方法研制出的MEP环境疫苗具有生物特征,是一种高结构高分子的智能抗菌材料,其衍生的定向操纵微生物的生物学系统工程,使M水体转换过程中自动滋生的生物链以及M水体快速转换,驯化水生生物形态和功能,M水体中氨氮、总磷植物植物营养物质削减率快速增强,将微生物优势种群从水体中驱除,有效地提高了河湖、海洋、地表M水体中微生物生物量的灭活率,实现M水体智能转换工程,使河湖富营养化症状得到治愈。 展开更多
关键词 MEP环境疫苗 MEP智能工程技术 飲用水 污水处理 黑臭河流 湖泊蓝藻 畜禽废水 MEP智能网载膜 智能定向操纵微生物工程技术
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Multi-objective optimization of active steering system with force and displacement coupled control 被引量:4
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作者 赵万忠 孙培坤 +1 位作者 刘顺 林逸 《Journal of Central South University》 SCIE EI CAS 2012年第4期974-981,共8页
A novel active steering system with force and displacement coupled control(the novel AFS system) was introduced,which has functions of both the active steering and electric power steering.Based on the model of the nov... A novel active steering system with force and displacement coupled control(the novel AFS system) was introduced,which has functions of both the active steering and electric power steering.Based on the model of the novel AFS system and the vehicle three-degree of freedom system,the concept and quantitative formulas of the novel AFS system steering performance were proposed.The steering road feel and steering portability were set as the optimizing targets with the steering stability and steering portability as the constraint conditions.According to the features of constrained optimization of multi-variable function,a multi-variable genetic algorithm for the system parameter optimization was designed.The simulation results show that based on parametric optimization of the multi-objective genetic algorithm,the novel AFS system can improve the steering road feel,steering portability and steering stability,thus the optimization method can provide a theoretical basis for the design and optimization of the novel AFS system. 展开更多
关键词 vehicle engineering active steering electric power steering multi-objective genetic algorithm
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基于高阶LP_(21)模式的鳍豚形可发射光纤传送带
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作者 高丙坤 荣玉菲 +6 位作者 姜春雷 陈朋 水华胜 吴昊 董太极 孙雨 闫文迪 《光学学报》 EI CAS CSCD 北大核心 2023年第7期17-26,共10页
微粒运输和定向操纵在生物领域和医学新技术方面有着广阔的应用前景。设计了一种鳍豚形光纤光镊结构,其结合高阶LP_(21)模式实现了光纤传送带功能。通过将650nm光源输入155nm单模光纤中激发高能量比的LP_(21)模式,增强了光纤侧边缘的光... 微粒运输和定向操纵在生物领域和医学新技术方面有着广阔的应用前景。设计了一种鳍豚形光纤光镊结构,其结合高阶LP_(21)模式实现了光纤传送带功能。通过将650nm光源输入155nm单模光纤中激发高能量比的LP_(21)模式,增强了光纤侧边缘的光场强度。在较低光功率的情况下,将聚苯乙烯微粒(5μm)捕获在光纤周围侧边缘处,并且沿光纤边缘将其运输至尖端处,最终以粒子枪形式将微粒弹射出去。应用有限元法仿真了鳍豚形光纤探针的光场强度分布,分析了微粒在光纤上的受力情况,并在不同光功率下与普通锥形光纤进行了对比实验,验证了该结构的优越性。该方法设备简单,为光纤操纵提供了新的可能。 展开更多
关键词 光纤光学 微粒运输 定向操纵 鳍豚形光纤 LP_(21)模式
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Primary studies on integration optimization of differential steering of electric vehicle with motorized wheels based on quality engineering 被引量:15
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作者 ZHAO WanZhong WANG ChunYan +1 位作者 SUN PeiKun LIU Shun 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第11期3047-3053,共7页
The model of the differential steering system(DSS) of electric vehicle with motorized wheels and the three-degree-of-freedom dynamic model of vehicle are built.Based on these models,the concepts and quantitative expre... The model of the differential steering system(DSS) of electric vehicle with motorized wheels and the three-degree-of-freedom dynamic model of vehicle are built.Based on these models,the concepts and quantitative expressions of steering road feel,steering portability and steering stability are proposed.Through integrating the Monte Carlo descriptive sampling,elitist non-dominated sorting genetic algorithm(NSGA-II) and Taguchi robust design method,the system parameters are optimized with steering road feel and steering portability as optimization targets,and steering stability and steering portability as constraints.The simulation results show that the system optimized based on quality engineering can improve the steering road feel,guarantee steering stability and steering portability and thus provide a theoretical basis for the design and optimization of the electric vehicle with motorized wheels system. 展开更多
关键词 vehicle engineering electric vehicle with motorized wheels differential assisted steering quality engineering integration optimization
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Robust control of hand wheel torque for active front steering system 被引量:5
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作者 ZHAO WanZhong LI YiJun WANG ChunYan 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第1期107-116,共10页
Active front steering(AFS)system has been used as a promising technology which improves the steering portability and handing stability of vehicles.It employs a steering motor to realize the functions of variable steer... Active front steering(AFS)system has been used as a promising technology which improves the steering portability and handing stability of vehicles.It employs a steering motor to realize the functions of variable steering ratio and vehicle stability control.However,it has a serious problem of unexpected reaction hand wheel torque caused by the additional steering angle.In this paper,the optimum hand wheel torque is designed based on the linear tire model.Considering the uncertainty and disturbance of the steering system and vehicle,an H∞controller is developed to make sure the hand wheel torque follows the reference torque accurately and quickly.The simulation shows that the proposed controller can compensate the unnatural reaction torque and provide a good steering feel for the driver. 展开更多
关键词 active front steering variable steering ratio hand wheel torque H∞ control steering feel
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Robust control for active suspension system under steering condition 被引量:4
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作者 WANG ChunYan DENG Ke +2 位作者 ZHAO WanZhong ZHOU Guan LI XueSong 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第2期199-208,共10页
To minimize the auto body's posture change caused by steering and uneven road, and improve the vehicle's riding comfort and handling stability, this paper presents an H∞ robust controller of the active suspen... To minimize the auto body's posture change caused by steering and uneven road, and improve the vehicle's riding comfort and handling stability, this paper presents an H∞ robust controller of the active suspension system, which considers the effects of different steering conditions on its dynamic performance. The vehicle's vibration in the yaw, roll, pitch and vertical direction and the suspension's dynamic deflection in the steering process are taken into account for the designed H∞ robust controller, and it introduces the frequency weight function to improve the riding comfort in the specific sensitive frequency bands to human body. The proposed robust controller is testified through simulation and steering wheel angle step test. The results show that the active suspension with the designed robust controller can enhance the anti-roll capability of the vehicle, inhibit the changes of the body, and improve the riding comfort of the vehicle under steering condition. The results of this study can provide certain theoretical basis for the research and application of active suspension system. 展开更多
关键词 VEHICLE active suspension system steering condition H∞ robust control sensitive frequency bands
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