监视与侦察已成为现代C^4ISR系统的重要组成部分,传统的监视与侦察系统效能分析方法存在模型难以建立、结果不准确等问题,很难量化其与作战效果之间的影响。在对基于Lanchester方程的C^4ISR系统建模方法进行研究的基础上,提出了反映监视与侦察功能的Lanchester方程模型,并引入博弈论分析了战场上信息的不对称对交战结果的影响,克服了描述C^4ISR系统的Lanchester方程没有考虑作战单元、对手和环境间的动态交互以及数学结构简单的缺点。仿真结果验证了模型的有效性。
Surveillance and Reconnaissance sub-system have been an important part of modern C^4ISR system. It is very difficult to reflecting the impact of surveillance and reconnaissance and warfare outcome using traditional surveillance and reconnaissance functional model. Based on the analysis of physical meaning and campaign course of Lanchester linear law, a model reflecting the impact of surveillance and reconnaissance on force attrition is proposed. The asymmetry information is introduced based on game theory and conquered the disadvantage of Lanchester equation in modeling C^4ISR system. The contribution of surveillance and reconnaissance sub-system on warfare outcome is indicated from simulation results.