SBIR Phase I: Microelectromechanical System Radio Transceivers for Low-Power Wireless Networks
SBIR Phase I: Microelectromechanical System Radio Transceivers for Low-Power Wireless Networks
批准号:
1549465
负责人:
Tristan Rocheleau
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
这项小型企业创新研究(SBIR)第一阶段项目的更广泛影响/商业潜力是大幅减少短距离无线电链路所需的功率,例如家庭自动化设备中使用的无线电链路。无线技术已经在我们的日常生活中发挥了重要作用,预计未来几年将进一步扩展到由数十亿个自主传感器组成的网络:即所谓的物联网。在一种设想中,传感器采用微小的、低成本的无线mote,通过网状网络收集和传输数据,同时只使用拾取或电池供电。在这里,小尺寸、频谱效率、低功耗的无线通信链路是必不可少的。特别是,家庭和工业自动化市场的使用量呈指数级增长,低成本电池供电的温度、光和功率传感器与无线控制开关相结合已经成为一个巨大的市场。该项目旨在通过生产只需要当前技术功率的一小部分的无线电来帮助将这一愿景变为现实。由于节能和减少资源使用,对家庭用户和商业办公大楼的潜在经济效益都是显著的。事实上,仅在美国,这一市场就已经超过70亿美元,预计年增长率将超过8%。这个小企业创新研究(SBIR)第一阶段项目提出了一种基于微机电系统(MEMS)的无线电的开发,该无线电可以大幅降低运行功率。目前可用的无线电消耗10毫瓦的电池不友好功率,远程设备需要大电池,从而增加了成本和尺寸。在这样的功耗下,无处不在的传感器节点网络,仅靠回收或电池供电长时间运行的愿景,仍然难以实现。通过将MEMS技术与传统CMOS设计相结合,与传统技术相比,本文提出的系统将使功耗降低两个数量级,低到足以使这些无线电仅靠电池供电即可连续工作。第一阶段SBIR的工作将侧重于设计和验证这种MEMS无线电的性能,使用适合批量生产的制造工艺。该项目的最终目标是展示一个完整的基于mems的无线电,与广泛使用的z波协议兼容,同时在接收模式下以100微瓦或以下的速度工作。
英文摘要
The broader impact/commercial potential of this Small Business Innovation Research (SBIR) Phase I project is a drastic reduction in the power needed for short-range radio links, such as those used in home automation devices. Wireless technology, which already plays a major part in our daily lives, is expected to further expand to networks of billions of autonomous sensors in coming years: the so-called Internet of Things. In one vision, sensors employing tiny, low-cost wireless motes collect and transmit data through a mesh network while operating only on scavenged or battery power. Here, small form-factor, spectrum efficient, low-power wireless communication links are essential. In particular, the home and industrial automation markets are experiencing exponential growth in usage, and low-cost battery-operated temperature, light, and power sensors combined with wirelessly controlled switches have already become a large market. This project aims to help bring this vision to reality by producing radios that require a small fraction of the power of current technology. With power savings and resource usage reduction, the potential economic benefit to both home users and commercial office buildings is significant. Indeed, this market is already over seven billion dollars in the US alone, with over 8% yearly growth expected. This Small Business Innovation Research (SBIR) Phase I project proposes development of a Microelectromechanical System (MEMS)-based radio offering a steep reduction in operating power. Currently available radios consume battery unfriendly powers of 10's of milliWatts, requiring large batteries for remote devices, with resultant increased costs and size. With such power consumption, the vision of ubiquitous sensor node networks, operating for long periods on only scavenged or battery power, remains difficult to achieve. By combining MEMS technology with traditional CMOS design, the proposed system here will enable a two order of magnitude reduction in power consumption compared to conventional technology, low enough that these radios will allow continuous operation on battery power alone. The work of this Phase I SBIR will focus on designing and verifying performance of such MEMS radios using fabrication processes suitable for mass production. The end goal of this project is to demonstrate a complete MEMS-based radio compatible with the widely-used Z-wave protocol while operating at or below 100 microWatt in receive-mode.
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SBIR Phase II: Microelectromechanical System Radio Transceivers for Low-Power Wireless Networks
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批准号:1738563
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项目类别:Standard Grant
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资助金额:$75.0万
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财政年份:2017
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负责人:Tristan Rocheleau
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依托单位:
国内基金
海外基金
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