空军工程大学学报(自然科学版)
空軍工程大學學報(自然科學版)
공군공정대학학보(자연과학판)
JOURNAL OF AIR FORCE ENGINEERING UNIVERSITY (NATURAL SCIENCE EDITION)
2014年
6期
28-31
,共4页
贾晶%盛文%卢雷%刘诗华
賈晶%盛文%盧雷%劉詩華
가정%성문%로뢰%류시화
天波超视距雷达%发现概率%电离层状态%目标雷达截面积
天波超視距雷達%髮現概率%電離層狀態%目標雷達截麵積
천파초시거뢰체%발현개솔%전리층상태%목표뢰체절면적
sky-wave over-the-horizon radar%detection probability%ionosphere state%target RCS
针对现有方法影响因素考虑不全导致计算结果与实际情况有较大偏差的问题,提出了一种改进的天波雷达飞机目标发现概率计算方法。归纳了不同电离层状态对天波雷达探测距离的影响。考虑目标在给定航路飞行过程中的雷达截面积随姿态变化,建立了目标动态雷达截面积计算模型。在此基础上,利用瞬时发现概率模型和综合发现概率模型求得天波雷达飞机目标发现概率。实例计算结果表明:电离层Es全遮蔽状态导致目标发现概率下降了0.273,不同航路和飞行姿态条件下目标发现概率差异较大,最大差值达0.253。
針對現有方法影響因素攷慮不全導緻計算結果與實際情況有較大偏差的問題,提齣瞭一種改進的天波雷達飛機目標髮現概率計算方法。歸納瞭不同電離層狀態對天波雷達探測距離的影響。攷慮目標在給定航路飛行過程中的雷達截麵積隨姿態變化,建立瞭目標動態雷達截麵積計算模型。在此基礎上,利用瞬時髮現概率模型和綜閤髮現概率模型求得天波雷達飛機目標髮現概率。實例計算結果錶明:電離層Es全遮蔽狀態導緻目標髮現概率下降瞭0.273,不同航路和飛行姿態條件下目標髮現概率差異較大,最大差值達0.253。
침대현유방법영향인소고필불전도치계산결과여실제정황유교대편차적문제,제출료일충개진적천파뢰체비궤목표발현개솔계산방법。귀납료불동전리층상태대천파뢰체탐측거리적영향。고필목표재급정항로비행과정중적뢰체절면적수자태변화,건립료목표동태뢰체절면적계산모형。재차기출상,이용순시발현개솔모형화종합발현개솔모형구득천파뢰체비궤목표발현개솔。실례계산결과표명:전리층Es전차폐상태도치목표발현개솔하강료0.273,불동항로화비행자태조건하목표발현개솔차이교대,최대차치체0.253。
In view of the problem that in the existing methods some effect factors are ill considered which lead up to the calculation results deviating from the fact,an improved calculation method of detection probability of aircraft for sky-wave radar is put forward,and the impact of different ionosphere states on detection distance of sky-wave radar is concluded.Taking the variety of target RCS with gesture during flight through given track into account,a calculation model of target dynamic RCS is established.On this basis,the detection probability of aircraft for sky-wave radar can be gotten by using the models of instan-taneous detection probability and the comprehensive detection probability.The results show that iono-sphere state of Es blanket leads to a decrease in target detection probability by 0.273.And the values of target detection probability are in great difference under the conditions of the different tracks and gestures, and the maximal different value reaches to 0.253.The feasibility and the validity of the method are verified by using living examples.