Extend functionality of Smart Isolators to low-voltage grid monitoring
Extend functionality of Smart Isolators to low-voltage grid monitoring
批准号:
10073577
负责人:
金额:
$2.55万
依托单位:
依托单位国家:
英国
项目类别:
Collaborative R&D
财政年份:
2023
资助国家:
英国
项目状态:
已结题
起止时间:
2023 至 --
中文摘要
在这个项目中,我们的目标是进一步扩展Verv智能隔离器的功能,这是一种对电信号进行非侵入性负载监测的设备。我们希望验证我们的产品,已经在英国各地的客户站点部署,也可以用作低压电网传感器,以检测谐波失真和瞬态信号等电能质量现象。该项目的成功完成将使我们能够证明,我们的Verv智能隔离器网络可以被配电网运营商(dno)利用,以促进对其网络中的供电电压的监测,并在我们的能源系统检测到任何干扰时迅速发出警报。对此类问题的迅速反应既可以防止对能源基础设施的破坏,也可以防止潜在的有害客户断网。我们将与我们选择的合作伙伴NPL合作,验证我们的智能隔离器硬件可以在几分钟内检测到其专业实验室产生的参考信号。我们相信,这一创新概念有可能大大提高DNOs可以使用的监测能力。需要验证的参考信号类型将结合现有标准(如EN 50160和IEC 61000-4-30)的定义,以及可能出现在现代电网上的全新测试信号或对现有信号的改编。
英文摘要
In this project, we aim to further extend the functionality of Verv Smart Isolators, a device that performs non-intrusive load monitoring of electrical signals. We wish to validate that our product, already deployed at customer sites around the UK, may also be used as low-voltage grid sensors to detect power quality phenomena such as harmonic distortion and transient signals.Successful completion of this project will allow us to demonstrate that our network of Verv Smart Isolators can be leveraged by Distribution Network Operators (DNOs) to facilitate the monitoring of supply voltage in their network, and quickly raise an alarm if any disturbances have been detected by our energy systems. A swift response to such problems can prevent both damage to energy infrastructure and potentially harmful customer disconnection.We will collaborate with our chosen partner, NPL, to validate that our Smart Isolator hardware can detect reference signals generated in their specialist laboratory within a matter of minutes. We believe this innovative concept has the potential to drastically enhance the monitoring capability that DNOs have access to.The types of reference signals to be validated will be a combination of both definitions from existing standards (such as EN 50160 and IEC 61000-4-30) along with completely new test signals, or adaptations of existing ones, that are likely to occur on the modern grid network.
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会议论文
国内基金
海外基金
增强子在小鼠早期胚胎细胞命运决定中的功能和调控机制研究
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批准号:82371668
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项目类别:面上项目
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资助金额:52.00万元
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批准年份:2023
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负责人:乔云波
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依托单位: