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Introducing quick sleeping using the broadcast channel for 3GPP LTE MTC

机译:为3GPP LTE MTC引入使用广播信道的快速睡眠

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The world is advancing towards Internet of Things (IoT) where various types of devices communicate and share data with each other. The communication between the devices are enabled and controlled through Machine Type Communications (MTC). MTC has a wide range of applications and forms an integral part of IoT. The 3rd Generation Partnership Project (3GPP) standardization body has recognized the potential for MTC and is currently working on standardizing the specifications and deployment of MTC services as part of Long Term Evolution (LTE) networks. The system requirements of these MTC devices are different from the regular devices using the LTE network. Many MTC devices are expected to be low cost, low data rate and delay tolerant. One of the challenges in MTC using 3GPP LTE is to reduce the power consumption of the User Equipment (UE) in order to prolong their battery life. The power consumption of a UE is directly proportional to its processing time. In this paper, we introduce quick sleeping to the current 3GPP LTE MTC framework. First, we compare the quick sleeping mechanism with the present Discontinuous Reception (DRX) mechanism for sleeping in LTE and show that there can be significant savings in the UE processing time if quick sleeping is adopted. Then we present different methods to incorporate quick sleeping into the Physical Broadcast Channel (PBCH) with minimal changes to the current LTE standard. The impact of these quick sleeping solutions on PBCH Block Error Rate (BLER) performance is also discussed.
机译:世界正朝着物联网(IoT)前进,其中各种类型的设备相互通信并共享数据。设备之间的通信通过机器类型通信(MTC)启用和控制。 MTC具有广泛的应用范围,并构成物联网的组成部分。第三代合作伙伴计划(3GPP)标准化机构已经认识到MTC的潜力,并且目前正致力于将MTC服务的规范和部署标准化,作为长期演进(LTE)网络的一部分。这些MTC设备的系统要求与使用LTE网络的常规设备不同。期望许多MTC设备具有低成本,低数据速率和延迟耐受性。使用3GPP LTE的MTC中的挑战之一是减少用户设备(UE)的功耗,以延长其电池寿命。 UE的功耗与它的处理时间成正比。在本文中,我们将快速睡眠介绍给当前的3GPP LTE MTC框架。首先,我们将快速睡眠机制与当前用于LTE的不连续接收(DRX)机制进行了比较,结果表明,如果采用快速睡眠,则可以大大节省UE处理时间。然后,我们提出了不同的方法,以对当前LTE标准的最小更改将快速睡眠合并到物理广播信道(PBCH)。还讨论了这些快速睡眠解决方案对PBCH块错误率(BLER)性能的影响。

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