AgriSound: Advancing in-field pollinator detection for Net Zero Agriculture
AgriSound:推进净零农业的田间传粉媒介检测
基本信息
- 批准号:10025710
- 负责人:
- 金额:$ 6.37万
- 依托单位:
- 依托单位国家:英国
- 项目类别:Collaborative R&D
- 财政年份:2022
- 资助国家:英国
- 起止时间:2022 至 无数据
- 项目状态:已结题
- 来源:
- 关键词:
项目摘要
Food production systems are under pressure to produce more food from less resources to feed a growing population. UK demand for high quality fruit and vegetables is high, with ~32% increase in demand vs. 2019, driven by health awareness post-lockdowns (EIT Food, 2020). New innovations are required to address existing bottlenecks to production, increase agricultural yields and food quality and reduce food imports.Pollination is a key part of horticultural production, which triggers fruit production by the plant. Over 70% fruit crops produce rely on insect pollinators (bees, hoverflies, wasps, moths), yet pollination services to support commercial horticultural production are unsustainable -- representing a major bottleneck for UK food production. Current practices rely on importing bumblebees (from mainland Europe) or renting honeybees and has serious financial and ecological costs. Costs of renting/purchasing bees costs are growing annually (due to honeybee colony collapse and regulatory changes) and saturation of fields/orchards with non-native bees can starve indigenous pollinators, creating over-reliance on single bee type and limiting local biodiversity.AgriSound believes monitoring the activity of pollinators can deliver increased crop yields and quality by ensuring that any pollinator deficits within an environment can be detected and addressed (sowing wildflowers, creating new bee habitat or moving hives around), resulting in a diverse mix of pollinators at the right place and at the right time. We use low-cost sensor technologies to monitor insect presence via sound analysis and help growers and beekeepers to deliver sustainable pollination and biodiversity enhancement.Previous funding from InnovateUK has enabled AgriSound to launch monitoring technology for honeybee welfare and productivity monitoring, as well as an in-field pollinator counter (named POLY), as well as leveraging SEIS and EIS investment. Follow-on funding from Young Innovators' Award will enable further technical and commercial innovation, as well as support AgriSound to exploit earlier successes delivered at the conclusion of the previous Young Innovators' award (including presentation at COP26).Specifically, innovation activities will focus on:* Creation of new sound analysis tools for expanding the total number of insect types monitored by the POLY device;* Trialling new strategies for attracting high value customers using data collected from existing customers.Completion of the project will lead to a step-change in business profitability and environmental outcomes. The expansion of algorithms to detect new species will generate far greater insights for end-users about current biodiversity levels on farm and help to improve on-farm pollination strategies.
粮食生产系统面临压力,必须用更少的资源生产更多的粮食,以养活不断增长的人口。英国对高品质水果和蔬菜的需求很高,与2019年相比,需求增长了约32%,这是由于封锁后的健康意识(EIT Food,2020)。需要新的创新来解决现有的生产瓶颈,提高农业产量和粮食质量,减少粮食进口。超过70%的水果作物生产依赖昆虫授粉者(蜜蜂,食蚜蝇,黄蜂,蛾),但授粉服务,以支持商业园艺生产是不可持续的-代表了英国粮食生产的主要瓶颈。目前的做法依赖于进口大黄蜂(从欧洲大陆)或租用蜜蜂,并有严重的财政和生态成本。租用/购买蜜蜂的费用每年都在增加(由于蜂群崩溃和监管变化)和非本地蜜蜂的田地/果园饱和可能会饿死本地授粉者,创造了超过-AgriSound认为,通过监测传粉者的活动,可以确保可以检测到环境中任何传粉者的不足,解决(播种野花、创造新的蜜蜂栖息地或移动蜂箱),从而在正确的地点和正确的时间产生多样化的传粉者组合。我们使用低成本的传感器技术通过声音分析来监测昆虫的存在,并帮助种植者和养蜂人提供可持续的授粉和生物多样性增强。之前来自InnovateUK的资金使AgriSound能够推出用于蜜蜂福利和生产力监测的监测技术,以及现场授粉者计数器(名为POLY),以及利用SEIS和EIS投资。青年创新者奖的后续资金将促进进一步的技术和商业创新,并支持AgriSound利用上一届青年创新者奖结束时取得的早期成功。(包括在COP 26上的介绍)。具体而言,创新活动将集中在:* 创建新的声音分析工具,以扩大POLY设备监测的昆虫类型总数;* 利用从现有客户收集的数据,尝试新的策略,以吸引高价值客户。项目完成后,业务盈利和环境成果将发生重大变化。检测新物种的算法的扩展将为最终用户提供关于农场当前生物多样性水平的更深入的见解,并有助于改进农场授粉策略。
项目成果
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其他文献
吉治仁志 他: "トランスジェニックマウスによるTIMP-1の線維化促進機序"最新医学. 55. 1781-1787 (2000)
Hitoshi Yoshiji 等:“转基因小鼠中 TIMP-1 的促纤维化机制”现代医学 55. 1781-1787 (2000)。
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LiDAR Implementations for Autonomous Vehicle Applications
- DOI:
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2021 - 期刊:
- 影响因子:0
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吉治仁志 他: "イラスト医学&サイエンスシリーズ血管の分子医学"羊土社(渋谷正史編). 125 (2000)
Hitoshi Yoshiji 等人:“血管医学与科学系列分子医学图解”Yodosha(涉谷正志编辑)125(2000)。
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Effect of manidipine hydrochloride,a calcium antagonist,on isoproterenol-induced left ventricular hypertrophy: "Yoshiyama,M.,Takeuchi,K.,Kim,S.,Hanatani,A.,Omura,T.,Toda,I.,Akioka,K.,Teragaki,M.,Iwao,H.and Yoshikawa,J." Jpn Circ J. 62(1). 47-52 (1998)
钙拮抗剂盐酸马尼地平对异丙肾上腺素引起的左心室肥厚的影响:“Yoshiyama,M.,Takeuchi,K.,Kim,S.,Hanatani,A.,Omura,T.,Toda,I.,Akioka,
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