SBIR Phase I: Analog Power Supply Integrated Circuit System for High Intensity Light Emitting Diode Lighting
SBIR Phase I: Analog Power Supply Integrated Circuit System for High Intensity Light Emitting Diode Lighting
批准号:
1548367
负责人:
Louis Scalzo
金额:
$15.0万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-01-01 至 2017-01-31
中文摘要
这个小型企业创新研究(SBIR)第一阶段项目的广泛影响/商业潜力将使我们能够开发一种独特的低成本功率模拟集成电路系统ASSP(专用标准产品),该系统将在发光二极管(LED)照明行业的全球范围内大规模部署。基于创新的电源设计,通过集成实现了显著的成本节约和可靠性。此外,LED照明公司可以显著降低LED路灯的制造成本,使LED照明能够以比目前低得多的成本销往世界各地的市政当局。通过使用这种独特的电源系统,世界各地的城市可以节省大量能源,从而节省成本。这一小型企业创新研究(SBIR)第一阶段项目将首次实现为市政发光二极管(LED)照明设计的高度集成电源芯片组,通过智能管理城市照明显著降低能源消耗,同时实现显著更长的寿命、更高的效率和可靠性。将开发一个模拟电源集成电路系统,以实现高度集成,并包括通信、遥感和监测接口。集成电路将使用模拟器进行建模、原型和测试,并对硬件和软件进行优化,以获得最佳结果。这种分析将能够在很短的时间内制造出原型单元,并允许在全球范围内大规模生产和部署集成电路。使用开发的技术,通过智能配置城市照明以优化本地化需求,将实现比传统照明节省75%以上的能源。
英文摘要
The broader impact/commercial potential of this Small Business Innovation Research (SBIR) Phase I project will enable the development of a unique low cost power analog Integrated circuit system ASSP (Application Specific Standard Product) that will be mass deployed worldwide in the light emitting diode (LED) lighting industry. Based on an innovative power supply design, significant cost savings and reliability is achieved through integration. Furthermore LED lighting companies can significantly reduce the cost of manufacturing of LED Street lighting, enabling LED lighting to be sold to municipalities worldwide at a far lower cost than exists today. Cities worldwide can save significant amounts of energy and therefore costs by implementing LED lamps using this unique power supply system.This Small Business Innovation Research (SBIR) Phase I project will enable for the first time a highly integrated power supply chip set, designed for municipal light emitting diode (LED) lighting, to significantly reduce energy consumption by intelligently managing urban lighting, while achieving significantly longer lifetime, higher efficiency and reliability. An analog power supply integrated circuit system will be developed to allow a high degree of integration, and incorporate interfaces for communication, remote sensing and monitoring. The integrated circuits will be modeled, prototyped, and tested using simulators, and hardware and software will be optimized to achieve the best results. This analysis will enable manufacturing of prototype units in a very short interval, and allow mass production and deployment of the integrated circuits worldwide. Using the technology developed, energy savings of over 75% compared to conventional lighting will be realized by intelligently configuring urban lighting to optimum localized needs.
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