1) molecular chaos

分子混沌态
2) molecular chaos

分子混沌
3) postulate of molecular chaos

分子混沌性假设
4) transient chaos

暂态混沌
1.
Two neuron system with an inertial term to exhibit transient chaos;

有惯性项的二元神经网络系统存在暂态混沌
2.
Based on a neural network with transient chaos and time-variance gain,neural network structure and computational energy function for solving optimal route selection was constructed,and then an algorithm which can support the driver in deciding on an optimal route to his preference was proposed.
采用广义路阻的定义,考虑了驾驶员在路径选择中的不同要求,并借助一种具有暂态混沌和时变增益的神经网络(NNTCTG),针对最优路径选择问题设计了神经网络结构,构造了能量函数,提出了一种能够满足不同出行者偏好的最优路径选择算法。
3.
By introducing transient chaos and time variant gain, the proposed chaotic neural network has richer and more flexible dynamics than Hopfield like neural networks only with point attractors, so that it can be expected to have higher ability of searching for globally optimal or near optimal solutions.
通过引入暂态混沌和时变增益,该网络比Hopfield型网络具有更加丰富和更为灵活的动力学特性,从而具有更强的搜索全局最优解或近似全局最优解的能力。
5) transient chaos

瞬态混沌
1.
A Method to Solve Job-shop Schedule Problems by Neural Network with Transient Chaos;

Job-shop调度问题的瞬态混沌神经网络解法
2.
Assignment problems are solved by a neural network model with transient chaos (TCNN).

采用具有瞬态混沌特性的神经网络 ( TCNN)解任务分配问题 。
3.
TSP problem is solved by a neural network model with transient chaos (TCNN),compared with Hopfield neural network (HNN),TCNN would not be stuck into local minimum by introducing chaos which is generated by negative self-feedback into HNN.
采用具有瞬态混沌特性的神经网络(TCNN)解TSP问题。
6) transiently chaotic

瞬态混沌
1.
The chaotic neural network was applied to the shortest path problem,dynamic route guidance network routing algorithm based on transiently chaotic neural network dynamic route guidance was presented.
将最短路径问题映射到混沌神经网络提出了一种基于瞬态混沌神经网络的动态路径诱导路由技术。
补充资料:变电所快速暂态电磁场
变电所快速暂态电磁场
fast transient electro-magnetic fields in substations
变电所中快速暂态电磁场强度由于开关操作暂态过程受多种因素影响.因此变电所中实际测t得到的场强数值分散性较大。不同电压等级变电所,用不同型式开关,实测得到的电场强度可达数十千伏/米(kV/m).磁场强度可达数百安培/米(A/m).美国对变电所中操作暂态电磁场的实测工作做的较多。作为一个例子,下表列出了美国电力研究院(EPRI)在115kV、250 kV、500 kV变电所中的实测结果。常规变电所内测点在母线下方地面,操作是断开一段短母线,一川纵潮洲娜朋洲川一0 0 0 0 0 00411:1l)即10 010加 ︵任守︸侧欲典匆 6 .0臼.《】火l()《a)T(5、留一。·““nlj 0 50几00 .,0.1 10 (任/A艺侧蔽2.()魂.硬)丫﹂)()口匕t卜卜片卜f乙仁0 t 0 0 0 0 005 .....-卜闭40加020化 (‘/V)侧旧要翻,::.:: l二‘.1.吐吐.吐2.《)4.(】6 .0划) 了卜卜┌────┬──────┐│ 一一J │八L,‘一’ ││习 ├──────┤│一一.1 │{犷V一· │└────┴──────┘0﹃-j门1 96,JD.任1 9 tl滩n乙oq乙 ︵三z淤巴侧翻要御 (一。一‘)洲.‘}12‘)一6(,义1‘,一‘, 喊d)T(5) 500 kV变电所内断开隔离开关时 的地面电场和磁场(a)GIS磁场;(b)GIS电场;(e)AIS滋场;(d)AIS电场b一and一onsuo kuolsu zonto一d一onelehong变电所快速暂态电磁场(fast transient elec-tromagnetie fields in substations)变电所中隔离开关切、合短母线时的暂态过程产生的电磁场。高压隔离开关操作时,触头间产生一系列电弧过程。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条