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1.前言需要进行详尽的模拟研究以便有助于对导弹制导系统的了解、最佳化设计及评价,这一点是大家公认的。在过去的三十年期间,由于鉴定制导系统性能的复杂程度增加了,因此,设想并发展了符合这种要求的各式各样的方法。最初,以模拟式模拟器来代表制导接收机信号处理电路、导弹制导设备硬件以及与导弹/目标交战几何条件有关的运动学环节。接着,数字式和混合式电子计算机相继出现,有可能更充分地表示制导系统的各个部件了。这时,人们就更关心与制导雷
1. INTRODUCTION It is well established that detailed simulation studies are needed to help understand, optimize, and evaluate missile guidance systems. During the past three decades, due to the increased sophistication of the performance of the certification guidance system, a wide range of approaches to meet such requirements were envisioned and developed. Initially, analogue simulators were used to represent the guidance receiver signal processing circuitry, missile guidance equipment hardware, and kinematics related to the missile / target engagement geometry. Then, digital and hybrid computers appeared one after the other, possibly giving a fuller representation of the components of the guidance system. At this time, people are more concerned about and guide the mine