通过需求分析、可行性分析、数据库设计、程序设计与调试等流程,研发了基于Java的稻虾综合种养决策支持系统V1.0。该系统具有基础知识科普、精准决策支持、产品推荐和专家知识获取等功能,界面友好,功能具有可用性、可靠性和可维护性,用户满意度高,是稻虾综合种养产业绿色高质高效发展的优质知识辅导和决策支持平台。
Based on the requirements analysis, feasibility analysis, database design, programming design and debugging, this paper developed the decision support system V1.0 of the mode of integrated planting and breeding with rice and crayfish based on Java. The system had a variety of functions such as rudimentary knowledge popularization, accurate decision support, related product recommendation and expert knowledge acquisition. It had a friendly interface, strong availability, reliability, maintainability, easy to use, and high customer satisfaction. The system was a high-quality platform of knowledge guidance and decision support for the green, high-quality and efficient development of the industry of integrated rice-crayfish farming.
[1] 蒋军. 中国稻渔综合种养产业发展情况[J]. 粮食科技与经济,2019,44(9):6-7.
[2] 张洪程,李杰,戴其根,等. 机插稻“标秧、精插、稳发、早搁、优中、强后”高产栽培精确定量关键技术[J]. 中国稻米,2010,16(5):1-6.
[3] 赵建亚,孙修云,王守军. 稻虾共作稳粮增效生态种养技术应用[J]. 基层农技推广,2019,7(11):120-123.
[4] 凌启鸿,张洪程,丁艳锋,等. 水稻精确定量栽培理论与技术[M]. 北京:中国农业出版社,2007:76-135.
[5] 凌启鸿,张洪程,丁艳锋,等. 水稻高产技术的新发展——精确定量栽培[J]. 中国稻米,2005,11(1):3-7.
[6] 钟天喜. 稻田养虾技术[J]. 现代农业科技,2018(14):225-226.
[7] 王显,冯亚明,胡中泽,等. 南粳9108与小龙虾生态种养效益分析及其配套技术[J]. 中国稻米,2017,23(2):84-86.
[8] 王红霞. 浅析生物农药病虫害防治[J]. 农业开发与装备,2017(8):120.
[9] 鲁艳辉,郑许松,吕仲贤. 水稻螟虫诱杀植物香根草的发现与应用[J]. 应用昆虫学报,2018,55(6):1 111-1 117.
[10] 陈万明,郝慧娟,廖中建,等. 稻虾养殖生态模式对产地环境及农产品质量安全风险的影响[J]. 湖南农业科学,2019(4):64-69.
[11] 徐大兵,贾平安,彭成林,等. 稻虾共作模式下稻田杂草生长和群落多样性的调查[J]. 湖北农业科学,2015,54(22):5 599-5 602.
[12] 王蓉,朱杰,金涛,等. 稻虾共作模式下稻田土壤氨氧化微生物丰度和群落结构的特征[J]. 植物营养与肥料学报,2019,25(11): 1 887-1 899.