Therefore , a 3 - d air - combat fight simulation software is designed in this thesis 模擬系統(tǒng)采用最新的軟件技術(shù)實(shí)現(xiàn)空中格斗作戰(zhàn)的三維數(shù)字模擬。
By the human fuzzy logic , the rule of air - combat policy is built , which decomposes the state space , decreases the action space and improves the efficiency of neural network 并依據(jù)人的模糊思維建立空戰(zhàn)對策準(zhǔn)則,實(shí)現(xiàn)狀態(tài)空間的離散化以減小動作空間范圍,提高網(wǎng)絡(luò)學(xué)習(xí)效率。
Simulation technology plays an important role in air - combat simulation and weapons performance evaluations . currently , 3 - d air - combat fight software systems are not only more expensive , but also cannot satisfy the special need of engineering practice 目前,飛行視景模擬軟件和作戰(zhàn)視景模擬軟件的價格都比較昂貴,而且也不能適應(yīng)特定的工程需要,仍然需要進(jìn)行二次開發(fā)。
Thirdly , based on the one - aircraft multi - target decision - making algorithm , a new algorithm for multi - aircraft multi - target is proposed , and the simulation of cooperative decision - making in a 4 vs 8 air - combat is carried out to verify its effectiveness 第三部分在單機(jī)多目標(biāo)空戰(zhàn)決策思想的基礎(chǔ)上,提出了一種基于單機(jī)多目標(biāo)決策思想的多機(jī)多目標(biāo)協(xié)同空戰(zhàn)決策算法,針對4 : 12的空戰(zhàn)情況進(jìn)行了仿真。
Referring to the theory of the modern air - combat , the thesis discusses the process of beyond visual range air combat about “ air - to - surface precise attack ” ; according to the optimal strategy , studies respectively the four key techniques , which are multi - target sorting , multi - aircraft cooperative air - combat and the optimization of proportional navigation of the fighter and the technique of the associated attack and defend of group fighters 借鑒現(xiàn)代空戰(zhàn)理論,對“空對面精確打擊”中的超視距作戰(zhàn)過程進(jìn)行了系統(tǒng)論述,對超視距空戰(zhàn)中的四個關(guān)鍵技術(shù)多目標(biāo)排序、多機(jī)協(xié)同空戰(zhàn),機(jī)群聯(lián)合攻防及戰(zhàn)機(jī)導(dǎo)引律的優(yōu)化分別進(jìn)行了研究。
After that , the optimal proportional strategy of group of aircrafts is studied by the method of mixed strategy and the fuzzy theory in order to gain optimal consequence of air - combat . lastly , the optimized proportional navigation of modern fighter is researched with radial basis function ( rbf ) 根據(jù)混合策略理論與模糊理論,應(yīng)用模糊最優(yōu)混合策略的方法,依取得最優(yōu)策略值(即最佳空戰(zhàn)效果)為目的,對參戰(zhàn)機(jī)群按最優(yōu)策略求取最佳分配比例關(guān)系,實(shí)現(xiàn)機(jī)群按比例優(yōu)化配置。