摘要
在双基地声纳系统中,根据能量关系推导出双基地声纳系统最大可探测范围的数学模型;在此基础上,讨论了用双(多)基地声纳浮标系统布放直线阵、圆形阵时的阵形宽度、搜索面积及所需浮标数,并将之与传统被动浮标阵进行了比较.结果表明:采用双(多)基地浮标阵可以在一定程度上节省浮标数,提高了浮标的使用效率.
In the bistatic sonar buoys system, the mathematic model of the maximum detectable area is derived according to the relationship of energy. Based on the above mathematical model, the width of line buoys array, the detectable area and the number of buoys needed by the line buoys array and round buoys array for the bistatic (multistatic) sonar buoys array is calculated, and then compared with those for the traditional un-directional passive buoys array. The result indicates that it may economize the number of buoys and improve the efficiency of buoys by using the bistatic (multistatic) buoys array.
出处
《海军工程大学学报》
CAS
北大核心
2006年第2期47-51,103,共6页
Journal of Naval University of Engineering
关键词
双基地
浮标阵
直线阵
圆形阵
bistatic
buoys array
line buoys array
round buoys array