Next-generation wireless technologies trends for ultra low energy

Y. Miyahara
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引用次数: 6

Abstract

Mobile communication technology has been improving the connection speed every year. In addition, the wireless communication LSI improves not only speed but also the reliability and functionality due to market requirements. As a result, the power of consumption of the wireless RF chip LSI has been much bloated. Currently, Panasonic is interested in two categories of technology in the new market area. One is the ultra-low power radio technology with several kbps which requires more than decade operation by a single coin battery. Another is the ultra-high-speed radio technology for data transfer. Both common wireless technologies can extremely reduce power consumption in terms of the parameter of energy expense over 1-bit (pJ/bit technology). In this talk, we introduce the technology of the low power radio system ever developed for a cellular phone. The digital RF architecture with polar transmitter system can improve the power amplifier efficiency. Then we introduce the ultra-low power wireless core technologies for RF, including the standardizations. Simple OOK signal modulation in wireless system can extremely reduce the total power consumption in RF. The low power system and circuit technique are introduced. These ultra-low-power radios are used for the smart grid home network based on the IEEE802.15.4g or body area network based on IEEE802.15.6 for future products. Finally, we explain Giga-bit wireless data communication where 60 GHz-band is one of the most attractive frequency resources, since 60 GHz band has already been allocated as unlicensed band with more than 7 GHz bandwidth in most of countries,. IEEE802.15.3c specification has been developed as the wireless personal area network (WPAN) standard above 1-Gbps in 2009. Other standardization bodies, such as the Wireless Gigabit Alliance and the IEEE802.11ad are also being developed for the wireless local area network (WLAN) toward 2012. All standards are targeting short range wireless connectivity among personal computers, audio-video equipments and mobile devices (e.g. smart phone or digital still camera) for uncompressed high-definition (HD) video stream and/or “sync and go” file transfer applications. In order to realize gigabit wireless connectivity for mobile, low power consumption less than 1 W with more than1 Gbps (less than 1pJ/bit) is required. Achieving such a low power radio at 60 GHz including the high-speed baseband is challenging. Using a CMOS technology is a promising approach to realize single chip solution with less than 1pJ/bit.
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下一代无线技术的超低能耗趋势
移动通信技术每年都在提高连接速度。此外,由于市场的需求,无线通信LSI不仅提高了速度,而且提高了可靠性和功能。因此,无线射频芯片LSI的功耗大大膨胀。目前,松下对新市场领域的两类技术感兴趣。一种是几kbps的超低功率无线电技术,它需要一个硬币电池运行十多年。另一个是用于数据传输的超高速无线电技术。这两种常用的无线技术都可以极大地降低功耗,以超过1位(pJ/bit技术)的能量消耗为参数。在这次演讲中,我们将介绍为蜂窝电话开发的低功率无线电系统的技术。采用极向发射系统的数字射频结构可以提高功率放大器的效率。然后介绍了超低功耗无线射频核心技术及其标准化。无线系统中简单的OOK信号调制可以极大地降低射频总功耗。介绍了低功耗系统和电路技术。这些超低功耗无线电用于基于IEEE802.15.4g的智能电网家庭网络,或用于未来产品的基于IEEE802.15.6的体域网络。最后,我们解释了千兆比特无线数据通信,其中60ghz频段是最具吸引力的频率资源之一,因为在大多数国家,60ghz频段已经被分配为未经许可的频段,带宽超过7ghz。IEEE802.15.3c规范于2009年被制定为1gbps以上的无线个人区域网络(WPAN)标准。其他标准化机构,如无线千兆联盟和IEEE802.11ad也正在为2012年的无线局域网(WLAN)开发。所有标准都针对个人电脑、音视频设备和移动设备(如智能手机或数码相机)之间的短距离无线连接,用于非压缩高清(HD)视频流和/或“同步即走”文件传输应用。为了实现移动的千兆无线连接,需要低功耗小于1w,功耗大于1gbps(小于1pJ/bit)。在包括高速基带在内的60 GHz频段实现这样的低功率无线电是一项挑战。利用CMOS技术实现低于1pJ/bit的单芯片解决方案是一种很有前途的方法。
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