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Sensor Observation Service API for Providing Gridded Climate Data to Agricultural Applications

机译:传感器观测服务API,用于为农业应用提供栅格化的气候数据

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We developed a mechanism for seamlessly providing weather data and long-term historical climate data from a gridded data source through an international standard web API, which was the Sensor Observation Service (SOS) defined by the Open Geospatial Consortium (OGC). The National Agriculture and Food Research Organization (NARO) Japan has been providing gridded climate data consisting of nine daily meteorological variables, which are average, minimum, maximum of air temperature, relative humidity, sunshine duration, solar radiant exposure, downward longwave radiation, precipitation and wind speed for 35 years covering Japan. The gridded data structure is quite useful for spatial analysis, such as developing crop suitability maps and monitoring regional crop development. Individual farmers, however, make decisions using historical climate information and forecasts for an incoming cropping season of their farms. In this regard, climate data at a point-based structure are convenient for application development to support farmers’ decisions. Through the proposed mechanism in this paper, the agricultural applications and analysis can request point-based climate data from a gridded data source through the standard API with no need to deal with the complicated hierarchical data structure of the gridded climate data source. Clients can easily obtain data and metadata by only accessing the service endpoint. The mechanism also provides several web bindings and data encodings for the clients’ convenience. Caching, including the pre-caching mechanism, was developed and evaluated to secure an effective response time. The mechanism enhances the accessibility and usability of the gridded weather data source, as well as SOS API for agricultural applications.
机译:我们开发了一种机制,可以通过国际标准的Web API(即开放地理空间联盟(OGC)定义的传感器观测服务(SOS))从网格数据源中无缝提供天气数据和长期历史气候数据。日本国家农业和食品研究组织(NARO)已提供由9个每日气象变量组成的网格气候数据,这些变量是平均,最小,最高气温,相对湿度,日照时长,太阳辐射暴露,向下长波辐射,降水和风速覆盖日本35年。网格化的数据结构对于空间分析非常有用,例如开发作物适宜性图和监视区域作物生长。但是,个体农民使用历史气候信息和对他们农场即将到来的种植季节的预测来做出决定。在这方面,基于点的结构的气候数据便于应用程序开发以支持农民的决策。通过本文提出的机制,农业应用和分析可以通过标准API从栅格数据源中请求基于点的气候数据,而无需处理栅格气候数据源的复杂层次数据结构。客户端仅通过访问服务端点即可轻松获取数据和元数据。该机制还提供了几种Web绑定和数据编码,以方便客户使用。开发并评估了包括预缓存机制在内的缓存,以确保有效的响应时间。该机制增强了栅格化天气数据源以及用于农业应用的SOS API的可访问性和可用性。

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