计算机工程与应用
計算機工程與應用
계산궤공정여응용
COMPUTER ENGINEERING AND APPLICATIONS
2015年
2期
230-235
,共6页
主动时反%宽线性估计%双螺旋线阵%非寻性
主動時反%寬線性估計%雙螺鏇線陣%非尋性
주동시반%관선성고계%쌍라선선진%비심성
active time reversal%widely linear estimation%double spiral line array%impropriety
通信系统建立在香农源-信道模型基础上,信道本身面临着两个必须解决的问题:信道多径传播引起的符号间干扰;噪声/干扰。因而接收端的信号是发射的信号失真和染污的复本。为此,从阵几何设计和信号处理角度两个方面考虑,采用空间宽带阵——双螺旋线阵(DSLA)发射/接收数据,并利用波传播时反不变性这一宽容的空-时结构特性作DSLA主动时反通信。同时在通信系统中调制信号、随机海洋噪声具有非寻性。因此,对信号做复增广表征,打破一般补相关为零的隐含假定,作复域DSLA主动时反通信。仿真结果验证了复域DSLA主动时反通信性能优于常规主动时反通信,尤其在小信噪比下能有效减小通信误码率,提高水声通信质量。
通信繫統建立在香農源-信道模型基礎上,信道本身麵臨著兩箇必鬚解決的問題:信道多徑傳播引起的符號間榦擾;譟聲/榦擾。因而接收耑的信號是髮射的信號失真和染汙的複本。為此,從陣幾何設計和信號處理角度兩箇方麵攷慮,採用空間寬帶陣——雙螺鏇線陣(DSLA)髮射/接收數據,併利用波傳播時反不變性這一寬容的空-時結構特性作DSLA主動時反通信。同時在通信繫統中調製信號、隨機海洋譟聲具有非尋性。因此,對信號做複增廣錶徵,打破一般補相關為零的隱含假定,作複域DSLA主動時反通信。倣真結果驗證瞭複域DSLA主動時反通信性能優于常規主動時反通信,尤其在小信譟比下能有效減小通信誤碼率,提高水聲通信質量。
통신계통건립재향농원-신도모형기출상,신도본신면림착량개필수해결적문제:신도다경전파인기적부호간간우;조성/간우。인이접수단적신호시발사적신호실진화염오적복본。위차,종진궤하설계화신호처리각도량개방면고필,채용공간관대진——쌍라선선진(DSLA)발사/접수수거,병이용파전파시반불변성저일관용적공-시결구특성작DSLA주동시반통신。동시재통신계통중조제신호、수궤해양조성구유비심성。인차,대신호주복증엄표정,타파일반보상관위령적은함가정,작복역DSLA주동시반통신。방진결과험증료복역DSLA주동시반통신성능우우상규주동시반통신,우기재소신조비하능유효감소통신오마솔,제고수성통신질량。
The communication system is based on the Shannon source-channel model. The channel suffers from two major kinds of impairments:one is inter-symbol interference, which is due to the multipath propagation;another one is noise/interference. The net result of the two impairments is that the signal received at the channel output is a noisy and distorted version of the signal that is transmitted. The paper considers it from two aspects, which are array geometric design and signal processing. It uses a spatial broadband array—double spiral line array transmitting/receiving data, and exploits the robust spatial-temporal property that wave propagation is time invariant. At the same time, the modulated signal in communica-tion system and the random ocean noise is improper. So it is reasonable that do complex domain DSLA active time reversal communication, which makes a complex augmented characterization of signal and breaks the implicit assumption. The simu-lated result proves that complex domain DSLA active time reversal communication is better than traditional active time rever-sal communication, especially when the signal pulse noise is small it effectively reduces the error rate and improves the quality of underwater acoustic communication.