农业工程学报
農業工程學報
농업공정학보
2013年
6期
150-156
,共7页
倪军%姚霞%田永超%曹卫星%朱艳
倪軍%姚霞%田永超%曹衛星%硃豔
예군%요하%전영초%조위성%주염
作物%生长%监测%诊断%多光谱传感器%便携式仪器
作物%生長%鑑測%診斷%多光譜傳感器%便攜式儀器
작물%생장%감측%진단%다광보전감기%편휴식의기
crops%cultivation%monitoring%diagnosis%multispectral scanners%portable equipment
为了解决当前作物生长信息实时、快速、无损测量手段瓶颈问题,研发了一种基于多光谱传感器的便携式作物生长监测诊断仪.该仪器由多光谱传感器系统、处理器系统及附属机构组成,能实时无损地获取作物叶层氮含量、叶层氮积累量、叶面积指数、生物量等主要生长指标.对水稻的试验结果表明,便携式作物生长监测诊断仪测得的DVI值与水稻叶层氮含量、氮积累量、叶面积指数、叶干重的决定系数R2分别为0.711,0.8231,0.7698,0.7212.该仪器结构简单,集成度高,性价比好,携带方便,易于田间操作.
為瞭解決噹前作物生長信息實時、快速、無損測量手段瓶頸問題,研髮瞭一種基于多光譜傳感器的便攜式作物生長鑑測診斷儀.該儀器由多光譜傳感器繫統、處理器繫統及附屬機構組成,能實時無損地穫取作物葉層氮含量、葉層氮積纍量、葉麵積指數、生物量等主要生長指標.對水稻的試驗結果錶明,便攜式作物生長鑑測診斷儀測得的DVI值與水稻葉層氮含量、氮積纍量、葉麵積指數、葉榦重的決定繫數R2分彆為0.711,0.8231,0.7698,0.7212.該儀器結構簡單,集成度高,性價比好,攜帶方便,易于田間操作.
위료해결당전작물생장신식실시、쾌속、무손측량수단병경문제,연발료일충기우다광보전감기적편휴식작물생장감측진단의.해의기유다광보전감기계통、처리기계통급부속궤구조성,능실시무손지획취작물협층담함량、협층담적루량、협면적지수、생물량등주요생장지표.대수도적시험결과표명,편휴식작물생장감측진단의측득적DVI치여수도협층담함량、담적루량、협면적지수、협간중적결정계수R2분별위0.711,0.8231,0.7698,0.7212.해의기결구간단,집성도고,성개비호,휴대방편,역우전간조작.
To solve the problem of real-time, fast and non-destructive testing method for crop growth information, a portable crop growth monitoring diagnostic instrument was developed. Multi-spectral sensor, the processor and affiliated institutions composed of the instrument, which can access the growth indexes of crop leaf nitrogen content, nitrogen accumulation, leaf area index and biomass information. The multi-spectral sensor contains 720 nm and 810 nm detection lens, and structurally is divided into up-sensor and down-sensor. The detection lens of sensor is composed of spectral filter and photo-detector, which makes lights path is simplicity and reliability is better. The processor includes sensor signal conditioning circuit and monitoring system. Signal conditioning circuit is made up pre-amplification circuit, filter circuit, adjustable gain circuit, adjustable sensitivity circuit and signal standardization circuit, which can abstract characteristic spectrum information. The monitoring system uses stc89c516 microprocessor as core, and supplies four working modes, such as measuring, monitoring, diagnose and reset, with man-machine interface. The apparatus was calibrated by testing seven types of standard reflectivity board and calibration equation was founded. The rice experiments showed that the value of DVI measured by the portable crop growth monitoring diagnostic instrument had relationship with rice canopy leaf nitrogen, nitrogen accumulation, leaf area index and leaf dry weight, the correlation coefficient R2 was 0.711, 0.8231, 0.7698, 0.7212 respectively. The structure has character as simple, highly integrated, cost-effective, convenient to carry and easy to operate in fields.