Abstract

为了满足4 mçº§åœ°åŸºå¤§å£å¾„å ‰å­¦æœ›è¿œé•œåƒå•å ƒè‡ªé€‚åº”å ‰å­¦ç³»ç»Ÿçš„æ³¢å‰å¤„ç†è§„æ¨¡ã€é€Ÿåº¦ä»¥åŠæŽ§åˆ¶å¸¦å®½è¦æ±‚ï¼Œç ”ç©¶äº†åŸºäºŽGPUçš„åƒå•å ƒçº§è‡ªé€‚åº”å ‰å­¦ç³»ç»Ÿé«˜é€Ÿæ³¢å‰å¤„ç†å™¨ã€‚ä»‹ç»äº†è‡ªé€‚åº”å ‰å­¦ç³»ç»Ÿæ³¢å‰å¤„ç†æ–¹æ³•ï¼Œå¹¶è¯¦ç»†è®ºè¿°äº†åŸºäºŽGPU的波前处理架构的实现与优化方法。最后,通过湍流模拟器进行桌面模拟实验,得到961å•å ƒè‡ªé€‚åº”å ‰å­¦ç³»ç»Ÿçš„åŠ¨æ€æ€§èƒ½ã€‚å®žéªŒç»“æžœè¡¨æ˜Žï¼šåŸºäºŽGPU的961å•å ƒè‡ªé€‚åº”å ‰å­¦ç³»ç»Ÿåœ¨é‡‡æ ·é¢‘çŽ‡ä¸º1 500 Hz时,系统0 dB残余误差抑制带宽能够达到100 Hz,满足4 mçº§åœ°åŸºå¤§å£å¾„å ‰å­¦æœ›è¿œé•œè‡ªé€‚åº”å ‰å­¦ç³»ç»Ÿçš„åº”ç”¨éœ€æ±‚ã€‚

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