[1]焦金英. 智慧农业旅游“云”服务平台构建研究[J]. 农业经济,2017(7):34-36.
[2]宋衡. 面向供需平衡的云资源分配与定价机制研究[D]. 扬州:扬州大学,2016:18-23.
[3]Mereu S,Sunik J,Trabucco A,et al. Operational resilience of reservoirs to climate change,agricultural demand,and tourism:a case study from Sardinia[J]. Science of The Total Environment,2015,543(Pt B):1028-1038.
[4]Kelaidonis D,Vlacheas P,Stavroulaki V,et al. Cloud Internet of things framework for enabling services in smart cities[M]//Designing, Developing and Facilitating Smart Cities. Springer International Publishing,2017.
[5]金顺福,王晨飞,陈玲玲,等. Cloud-P2P云存储结构的模型建立与性能分析[J]. 通信学报,2015,36(3):2015077.
[6]Fletcher J E,Snee H. Tourism multiplier effects[J]. Tourism Marketing & Management Handbook,1989:529-531.
[7]Mook L,Machokoto R. Social accounting[M]//Global encyclopedia of public administration,public policy and governance. Berlin:Springer,2018.
[8]Stark O,Kosiorowski G,Jakubek M. An adverse social welfare consequence of a rich-to-poor income transfer:a relative deprivation approach[Z]. Discussion Papers 264176,2017.
[9]张攀春. 资源禀赋的空间分布差异与贵州大数据农业发展模式选择[J]. 江苏农业科学,2016,44(6):1-5.
[10]王伟. TSA测量旅游就业的必要性[J]. 北方经贸,2006(9):96-98.
[11]王晓敏,邓春景. 基于“互联网+”背景的我国智慧农业发展策略与路径[J]. 江苏农业科学,2017,45(6):312-315.
[12]汪文斌. 从一云多屏到多屏互动——中国网络电视台台网融合的探索与实践[J]. 电视研究,2014(10):20-21.
[13]邵维专,吕光宏. 网络功能虚拟化资源配置及优化研究综述[J]. 计算机应用研究,2017,35(2):321-326.
[14]张景阳,潘光友. 多元线性回归与BP神经网络预测模型对比与运用研究[J]. 昆明理工大学学报(自然科学版),2013,38(6):61-67.
[15]程宏杰,朱震宇,陈泽. 农业物联云的设计与实现[J]. 江苏农业科学,2017,45(3):179-183.
[16]郭建鑫,张峻蜂. 新型城镇化背景下农民对互联网应用采纳决策的实证分析[J]. 江苏农业科学,2017,45(21):325-329.
[1]杨大蓉.中国智慧农业产业发展策略[J].江苏农业科学,2014,42(04):1.
Yang Darong.Development strategies for Chinas wisdom agricultural industry[J].Jiangsu Agricultural Sciences,2014,42(09):1.
[2]阴国富.基于光载无线交换技术的渭南智慧农业系统研究[J].江苏农业科学,2014,42(08):414.
Yin Guofu.Study on wisdom agriculture system in Weinan City,Shaanxi Province based on radio-over-fiber exchange technology[J].Jiangsu Agricultural Sciences,2014,42(09):414.
[3]袁小平,徐江,侯攀峰.基于物联网的智慧农业监控系统[J].江苏农业科学,2015,43(03):376.
Yuan Xiaoping,et al.Wisdom agricultural monitoring system based on internet of things[J].Jiangsu Agricultural Sciences,2015,43(09):376.
[4]张文宇,曹宏鑫,葛道阔,等.基于模型的智慧农业平台的构建[J].江苏农业科学,2015,43(12):478.
Zhang Wenyu,et al.Construction of smart agriculture platform based on model[J].Jiangsu Agricultural Sciences,2015,43(09):478.
[5]程宏杰,朱震宇,陈泽.农业物联云的设计与实现[J].江苏农业科学,2017,45(03):179.
Cheng Hongjie,et al.Design and implementation of agricultural IOT cloud[J].Jiangsu Agricultural Sciences,2017,45(09):179.
[6]王晓敏,邓春景.基于“互联网+”背景的我国智慧农业发展策略与路径[J].江苏农业科学,2017,45(16):312.
Wang Xiaomin,et al.Strategy and path of Chinas wisdom agriculture development based on “Internet +” background[J].Jiangsu Agricultural Sciences,2017,45(09):312.
[7]陈洪涛,孙云娟.基于改进四边测距算法的智慧农业无线传感器精确定位[J].江苏农业科学,2017,45(17):234.
Chen Hongtao,et al.Precise localization of wireless sensor based on improved quadrilateral localization algorithm[J].Jiangsu Agricultural Sciences,2017,45(09):234.
[8]邹一琴,张兵.网格型农业物联网资源封装和信息集成方法[J].江苏农业科学,2017,45(19):239.
Zou Yiqin,et al.Method of resource encapsulation and information integration in grid-type agricultural internet of things[J].Jiangsu Agricultural Sciences,2017,45(09):239.
[9]邹一琴,张兵.基于SOA的网格型农业物联网[J].江苏农业科学,2017,45(24):202.
Zou Yiqin,et al.Grid-type agricultural internet of things based on SOA[J].Jiangsu Agricultural Sciences,2017,45(09):202.
[10]赵俊仙.基于柯布-道格拉斯模型的我国“互联网+”智慧农业发展水平分析与路径建议[J].江苏农业科学,2018,46(04):289.
Zhao Junxian,et al.Analysis and path recommendation of “Internet +” wisdom agriculture development based on Cobb-Douglas model[J].Jiangsu Agricultural Sciences,2018,46(09):289.