计算机工程与应用
計算機工程與應用
계산궤공정여응용
COMPUTER ENGINEERING AND APPLICATIONS
2013年
9期
23-28
,共6页
组合智能评估%军事工程%毁伤分析%神经网络%遗传算法
組閤智能評估%軍事工程%燬傷分析%神經網絡%遺傳算法
조합지능평고%군사공정%훼상분석%신경망락%유전산법
compound intelligent assessment%military engineering%damage analysis%neural network%genetic algorithm
鉴于军事工程毁伤的复杂性,提出了基于组合智能评估模式的军事工程毁伤评估模型.以军事工程毁伤评估体系结构及其特征与功能约束为基础,设计军事工程毁伤效果组合智能评估的构件化模式,建立军事工程毁伤效果组合智能评估机制;以智能优化算法提高军事工程毁伤效果评估效率为目标,设计了一种易于仿真推理的军事工程毁伤效果组合智能评估流程.以人工神经网络为主体,集成小波分析和遗传算法,建立军事工程毁伤效果评估的非线性智能组合评估模型,应用于军事工程抗精确打击毁伤分析.案例表明,非线性组合智能评估模型充分发掘不同算法的差异优势,仿真实验验证了组合设计的可行性.
鑒于軍事工程燬傷的複雜性,提齣瞭基于組閤智能評估模式的軍事工程燬傷評估模型.以軍事工程燬傷評估體繫結構及其特徵與功能約束為基礎,設計軍事工程燬傷效果組閤智能評估的構件化模式,建立軍事工程燬傷效果組閤智能評估機製;以智能優化算法提高軍事工程燬傷效果評估效率為目標,設計瞭一種易于倣真推理的軍事工程燬傷效果組閤智能評估流程.以人工神經網絡為主體,集成小波分析和遺傳算法,建立軍事工程燬傷效果評估的非線性智能組閤評估模型,應用于軍事工程抗精確打擊燬傷分析.案例錶明,非線性組閤智能評估模型充分髮掘不同算法的差異優勢,倣真實驗驗證瞭組閤設計的可行性.
감우군사공정훼상적복잡성,제출료기우조합지능평고모식적군사공정훼상평고모형.이군사공정훼상평고체계결구급기특정여공능약속위기출,설계군사공정훼상효과조합지능평고적구건화모식,건립군사공정훼상효과조합지능평고궤제;이지능우화산법제고군사공정훼상효과평고효솔위목표,설계료일충역우방진추리적군사공정훼상효과조합지능평고류정.이인공신경망락위주체,집성소파분석화유전산법,건립군사공정훼상효과평고적비선성지능조합평고모형,응용우군사공정항정학타격훼상분석.안례표명,비선성조합지능평고모형충분발굴불동산법적차이우세,방진실험험증료조합설계적가행성.
Whereas the complexity of damage evaluation operations, damage assessment mechanism is advanced on military en-gineering based on compound intelligent assessment mode. Based on the damage assessment system structure and its characters and function constraints, mechanism is designed and advanced on the compound intelligent assessment system for military engi-neering’s damage effects; to improve the efficiency of damage assessment for military engineering with intelligent optimization algorithms, a compound assessment workflow is designed for its well simulation reason excellence. As the main integration of neural network, non-linear compound intelligent assessment model is erected on the damage evaluation problem of military engi-neering with the integration of wavelet transformation, genetic algorithm and other algorithms, which is applied into the precise damage analysis on military engineering. Case shows that this model fully exploits the strengths of different algorithms, whose simulation result verifies the feasibility of the compound design.