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一类二阶拟线性差分方程的非振动性定理 被引量:1
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作者 郭洪霞 王晓静 《曲阜师范大学学报(自然科学版)》 CAS 2002年第1期8-12,共5页
研究了二阶拟线性差分方程Δ(pnφ(Δxn) ) +f(n ,xn) =0的渐近性 ,并给出了当任给 k≠ 0 , ∞n =n0φ-1kpn =∞时此方程存在Ac∞ ,A0c 型非振动解的充要条件以及存在A0 ∞
关键词 拟线性差方程 非振动性定理 分算子 非振动解 渐近性态 充要条件
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Simulation of Reciprocating Compressor Start-up and Shut-down under Loaded and Unloaded Conditions
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作者 Vasillaq Kacani 《Journal of Energy and Power Engineering》 2013年第8期1578-1585,共8页
During the start-up and shut-down phase of reciprocating compressors, the loads on all components of driven train system are very high. In this paper a method for calculating the forces on coupling, e-motor, crank sha... During the start-up and shut-down phase of reciprocating compressors, the loads on all components of driven train system are very high. In this paper a method for calculating the forces on coupling, e-motor, crank shaft as well other components of the system will be described. The modelling of the electrical induction motor, coupling, crank shaft, damper as well as the compressor resistance torque are extremely important in simulating start-up and shut-down of reciprocating compressor. Furthermore the switching torque of the electrical motor and the instantaneous moment of inertia of the reciprocating compressor crank gear are important as well. The transient start-up and shut-down process under loaded and unloaded conditions is described using a non-linear differential equation for driven train system: E-motor--coupling--flywheel--reciprocating compressor--damper. Shaft torsional moments on the drive train and especially on the coupling, whether elastic or stiff, can then only be calculated using numerical simulation. This paper will describe some of the key elements in modelling, simulating and measurements of drive train start-up and shut-down carried out on already operational piston compressor units. 展开更多
关键词 Torsional vibration START-UP shut-down crankshaft stiffness coupling loads torsional model.
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MODELING GENETIC REGULATORY NETWORKS:A DELAY DISCRETE DYNAMICAL MODEL APPROACH
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作者 Hao JIANG Wai-Ki CHING +1 位作者 Kiyoko F.AOKI-KINOSHITA Dianjing GUO 《Journal of Systems Science & Complexity》 SCIE EI CSCD 2012年第6期1052-1067,共16页
Modeling genetic regulatory networks is an important research topic in genomic research and computationM systems biology. This paper considers the problem of constructing a genetic regula- tory network (GRN) using t... Modeling genetic regulatory networks is an important research topic in genomic research and computationM systems biology. This paper considers the problem of constructing a genetic regula- tory network (GRN) using the discrete dynamic system (DDS) model approach. Although considerable research has been devoted to building GRNs, many of the works did not consider the time-delay effect. Here, the authors propose a time-delay DDS model composed of linear difference equations to represent temporal interactions among significantly expressed genes. The authors also introduce interpolation scheme and re-sampling method for equalizing the non-uniformity of sampling time points. Statistical significance plays an active role in obtaining the optimal interaction matrix of GRNs. The constructed genetic network using linear multiple regression matches with the original data very well. Simulation results are given to demonstrate the effectiveness of the proposed method and model. 展开更多
关键词 Delay effect discrete dynamic system model genetic regulatory networks k-means clustering method linear multiple regression.
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