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Sensors for modeling the effects of climate change on grapevine growth and wine quality

机译:用于建模气候变化对葡萄葡萄葡萄酒生长和葡萄酒质量影响的传感器

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This paper describes recent advances in sensor technology and wireless radio frequency (telemetry architecture) with the capability for measuring climate change with weather and atmospheric conditions. When combined with GPS (global positioning system) functionality enabling geo-referenced information to be gathered and analysed in real-time, new opportunities emerge for the development of wireless sensor networks (WSN) for decision making in precision agriculture (PA). The use of WSN technologies in precision viticulture (PV) to date is mostly confined to on-farm and narrow regions within a city or in the case of a larger region the data collection is limited to monitoring weather conditions alone. This paper reviews three application scenarios: a) within a vineyard b) regionally within the state of Washington in the USA and c) cities within the Asia Pacific Region. It then details the development of a system proposed for comparative analysis of viticulture management information from two countries, namely Chile and New Zealand that have the same latitude but are at different longitude points. The paper looks at a variety of remotely located real-time sensors (telemetry devices), associated hardware devices (server, workstation, architectures and topologies) and software suitable for data collection, logging, distribution and streaming. Data gathered by the sensors is relayed via a series of repeaters to a workstation, which logs the data and is connected directly to the Internet for transmission to a server acting as the final collection and data analysis point for a comparative information matching synthesis. The data collected is to be used for building models that could enhance our understanding about the effects of climate change on grapevine growth and wine quality within major wine regions in the two countries being studied in this initial research. Finally, the paper describes variable parameters considered for analysis in this research so far in relation to plant growth, weather, climate, atmospheric influences such as climate change, pollution and also wine quality factors such as soil, terrain and grape variety.
机译:本文介绍了传感器技术和无线射频(遥测架构)的最近进步,具有测量气候变化与天气和大气条件的能力。当与GPS相结合(全球定位系统)功能,使地理参考信息实时收集和分析,新的机会出现的无线传感器网络(WSN)中的决策精确农业(PA)的发展。在精密葡萄栽培(PV)迄今使用WSN技术的大多局限于农场一个城市内或在一个较大的区域中的数据收集被限制到单独监测的天气条件的情况下和狭窄区域。本文回顾了三种应用场景:a)在葡萄园B内部)区域华盛顿的美国国家和C内)亚太地区内的城市。然后,它详细描述了来自两个国家,即智利和新西兰具有相同的纬度,但在不同的经度点提出的葡萄栽培管理信息的比较分析系统的开发。纸的外表在各种位于远处的实时传感器(遥测装置),相关联的硬件设备(服务器,工作站,架构和拓扑)和合适的数据收集,记录,分发和流软件。数据收集由传感器通过一系列中继到工作站,其记录该数据,并直接连接到互联网,以便传输到作为最终的收集和数据分析点的比较信息匹配合成一个服务器被中继。收集的数据将用于建立模型,可以提高我们对在这次初步研究中研究的主要葡萄酒地区的葡萄园生长和葡萄酒质量中的气候变化和葡萄酒质量的影响。最后,本文描述了在植物生长,天气,气候,气候变化,污染和土壤,地形和葡萄品种等葡萄酒质量因素如植物生长,天气,气候,大气影响的情况下考虑了分析的可变参数。

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