NFC-4-COVID-19: High rate manufacture of printed NFC microcontroller circuits to transfer COVID-19 point of need antibody diagnostic test results to the Cloud
NFC-4-COVID-19: High rate manufacture of printed NFC microcontroller circuits to transfer COVID-19 point of need antibody diagnostic test results to the Cloud
批准号:
54584
负责人:
金额:
$6.37万
依托单位:
依托单位国家:
英国
项目类别:
Feasibility Studies
财政年份:
2020
资助国家:
英国
项目状态:
已结题
起止时间:
2020 至 --
中文摘要
NFC-4- covid -19旨在通过先进的制造工艺将NFC柔性电路板的制造速度从10,000/小时提高到400,000/小时以上,这些工艺通常用于食品包装和印刷标签行业。近距离通信电路制造速度的逐步变化及其在每个COVID-19抗体诊断设备中用于家庭测试,使得至关重要的大流行制图数据可以在几秒钟内在云中获得,以供分析。这对于建立一个重要的样本量以进行强有力的统计分析至关重要,从而使各国政府能够更快地采取正确行动,控制疾病在人群中的传播,并能够在知情的情况下就何时实施或取消封锁作出决定。NFC-4-COVID-19提供了大流行管理解决方案的一部分,其中抗体测试通过邮政服务分发给每个公民,并按照简单的说明进行测试,并将测试数据立即发送到安全的基于云的数据管理和仪表板系统。如果没有NFC连接,则需要其他形式的数据传输才能将诊断数据传输到智能手机,然后再传输到云端。光学技术受信号噪声差的影响,而直立式电传感则更健壮。后者是COVID-19抗体检测的首选方法。该项目建立在为远程RFID标签和标签开发的专有材料和制造方法的基础上,并将其应用于智能手机可读标签和设备。极端的生产速度将使需求诊断得以开发,它将传感器数据、地理位置和用户信息立即传输到云端,通过人工智能算法、分布式账本、区块链和其他云计算平台(如微软Azure)进行分析和显示。此外,独特的多层工艺将更具可持续性,允许在使用更少材料的更小电路板上生产更复杂的电路。这种进步将允许生产非常紧凑的分布跟踪和跟踪标签,这些标签可以记录敏感货物在储存和分配过程中看到的环境温度和湿度。
英文摘要
NFC-4-COVID-19 aims to increase the manufacturing rate of NFC flexible circuit boards from 10,000/hour to over 400,000/hr using advanced manufacturing processes which are typically used in the food packaging and printed label industry. The step change in manufacturing rate of NFC circuits and their inclusion in each COVID-19 antibody diagnostic device for home testing allows critically important pandemic mapping data to be available in the cloud for analysis within seconds. This is essential to establish a significant sample size for robust statistical analysis to allow governments to take the correct action quicker to control the spread of the disease throughout the population and to allow informed decision to be made on when lock-downs should be enforced or removed. NFC-4-COVID-19 provides one part of the solution to pandemic management, where antibody tests are distributed through postal services to every citizen and following simple instructions allows a test to run and the test data immediately sent to a secure cloud based data management and dash board system. Without NFC connectivity other forms of data transfer are needed to transfer data from the diagnostic to a SMART phone and then to the Cloud. Optical techniques suffer from poor signal to noise, whilst dierect electrical sensing is more robust. The later is the preferred approach for COVID-19 antibody tests.The project builds on proprietary materials and manufacturing methods developed for long range RFID tags and labels and applies these to make smart phone readable labels and devices. The extreme production rate will enable point of need diagnostics to be developed which immediately transfers sensor data, geo-location and user information to the Cloud for analysis and display by artificial intelligence algorithms, distributed ledger, blockchain and other Cloud Computing platforms, such as Microsoft Azure.In addition, the unique multi-layer process will be more sustainable allowing more complex circuitry to be produced on smaller circuit boards which use less material. Such advances will allow very compact distribution track and trace labels to be produced which may log the environmental temperatures and humidity seen by sensitive goods during storage and distribution.
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