| The combat effectiveness of standoff missile weapon system is a complex problem. The quality of interdisciplinary and the multiform of the modeling and programming all incarnate the complication of the system in the effective evaluation of missile. The combat effectiveness reflects the basic character of weapon system, which is an important index. The capability of weapon system is evaluated, analyzed and contrasted by the index of combat effectiveness. Based on the characteristics of standoff missile and the roles it takes on, this paper studied on the precision, effective and effective-cost ratio of missile system.First, this paper simulated the complete trajectory of standoff missile. Taking the IR imaging control missile as background, we have studied the missile's models of dynamics, kinematics, command and target movement. The whole flying process has been simulated and analyzed. Then, this paper studied on the precision of random fall points and the statistical regularity of fall point distribution. Based on this, confirmed the collectivity consideration of precision analysis. The precision is analyzed in the way of fire control system and guiding system, and used the precision of random fall points as the index. The paper made use of WESIAC method evaluated the system effective, gained the capacity matrix through power series based on gained the power assignment employed AHP, and gave the algorithm. The cost analysis of standoff missile is one part of important content of system analysis. Based on the life cycle cost analysis, this paper forecasted the life cycle cost of the missile through Engineering Cost Method, and constructed detail forecast methods. At last, studied the characteristic of target damage, studied the vulnerability and lethality of the targets. Studied the algorithm from the form of penetrate explosion and fragmentations kill warhead. This paper introduced the simulation software, made out lots of experiments in all kinds of conditions, and analyzed the results. |