激光技术
激光技術
격광기술
LASER TECHNOLOGY
2014年
3期
411-416
,共6页
激光技术%盖革模式%时隙%探测概率%测距精度
激光技術%蓋革模式%時隙%探測概率%測距精度
격광기술%개혁모식%시극%탐측개솔%측거정도
laser technique%Geiger mode%time bin%detection probability%range accuracy
为了研究基于盖革模式雪崩光电二极管探测器的光子雷达的探测性能与测距精度,采用数学建模的方法,从系统原理与探测时序出发,分析了长死时间、回波脉宽大于时间数字转换器分辨时间情况下目标探测概率的分布;由统计原理与质心法,建立了测距精度的理论模型。利用系统设计参量,分析了回波强度、回波脉宽、噪声和回波位置等参量对探测性能和测距精度的影响。结果表明,回波越强,噪声越低,回波位置越靠前,目标探测概率越高,虚警率越低,探测性能越好;回波强度和脉宽是影响测距精度的主要因素,回波强度越强,脉宽越窄,测距精度越高。
為瞭研究基于蓋革模式雪崩光電二極管探測器的光子雷達的探測性能與測距精度,採用數學建模的方法,從繫統原理與探測時序齣髮,分析瞭長死時間、迴波脈寬大于時間數字轉換器分辨時間情況下目標探測概率的分佈;由統計原理與質心法,建立瞭測距精度的理論模型。利用繫統設計參量,分析瞭迴波彊度、迴波脈寬、譟聲和迴波位置等參量對探測性能和測距精度的影響。結果錶明,迴波越彊,譟聲越低,迴波位置越靠前,目標探測概率越高,虛警率越低,探測性能越好;迴波彊度和脈寬是影響測距精度的主要因素,迴波彊度越彊,脈寬越窄,測距精度越高。
위료연구기우개혁모식설붕광전이겁관탐측기적광자뢰체적탐측성능여측거정도,채용수학건모적방법,종계통원리여탐측시서출발,분석료장사시간、회파맥관대우시간수자전환기분변시간정황하목표탐측개솔적분포;유통계원리여질심법,건립료측거정도적이론모형。이용계통설계삼량,분석료회파강도、회파맥관、조성화회파위치등삼량대탐측성능화측거정도적영향。결과표명,회파월강,조성월저,회파위치월고전,목표탐측개솔월고,허경솔월저,탐측성능월호;회파강도화맥관시영향측거정도적주요인소,회파강도월강,맥관월착,측거정도월고。
In order to investigate the detection performance and range accuracy of a laser radar using Geiger mode avalanche photodiode ( GM-APD) as detector , by using the method of mathematical modeling , based on the system working principle and detection time sequence , the target detection probability was analyzed under the condition that the GM -APD detector operated under long dead-time and the echo pulse width was larger than the resolving time of the time-to-digital converter ( TDC) .According to the statistical theory and centroid method , the theoretical model of range accuracy was established.Using the system design parameters , the influence of the echo intensity , pulse width, noise, and echo position on the range accuracy was discussed .The results show that the stronger echo intensity , the narrower echo pulse width , the lower noise and the more front echo position result in the higher target detection probability , the lower false alarm rate and the better detection performance .Echo intensity and pulse width are the main influence factors .The stronger echo intensity and the narrower pulse width result in the higher range accuracy .