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Coexistence of homogeneous and heterogeneous systems for IEEE 802.15.4g smart utility networks

机译:IEEE 802.15.4g智能公用事业网络的同类系统和异构系统的共存

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This paper presents the overview on coexistence of homogeneous and heterogeneous systems for the IEEE 802.15.4g Smart Utility Network (SUN), a low rate wireless personal area network (WPAN) standard for advanced utility service. The 802.15.4g specifies three alternative physical (PHY) layer designs, thus having multiple homogeneous systems within the SUN system. The three homogeneous systems are allocated across shared frequency bands dependent on different regulatory domains. Besides coexistence for homogeneous systems, the SUN system is also sharing several frequency bands with multiple heterogeneous systems across various other 802 standards. Understanding the details of these coexisting dissimilar systems is an essential step to creating a harmonious radio environment. Therefore, this paper provides the outline of the coexisting homogeneous and heterogeneous systems, as well as the corresponding frequency bands that are allocated in different regulatory domains. Secondly, the overview on the coexistence mechanisms applicable in the 802.15.4g system is presented. Thirdly, coexistence analysis is performed on two dissimilar systems, where the performance degradation of a victim system is evaluated in the presence of an interferer. As a collective result, it is shown that with victim-interferer separation of beyond approximately 30m, dissimilar systems are able to coexist even without higher layer coexistence mechanisms.
机译:本文概述了用于IEEE 802.15.4g智能公用事业网络(SUN)的同类和异构系统的共存概述,SUN是一种用于高级公用事业服务的低速率无线个人局域网(WPAN)标准。 802.15.4g指定了三种可选的物理(PHY)层设计,因此在SUN系统中具有多个同类系统。这三个同质系统根据不同的监管域跨共享频带分配。除了同质系统共存外,SUN系统还与其他802个标准中的多个异构系统共享多个频段。了解这些共存的不同系统的细节是创建和谐无线电环境的重要步骤。因此,本文提供了共存的同质系统和异质系统的概述,以及在不同监管域中分配的相应频段。其次,概述了适用于802.15.4g系统的共存机制。第三,在两个不同的系统上进行共存分析,其中在存在干扰源的情况下评估受害系统的性能下降。总体结果表明,受害方与干扰方之间的距离超过约30m,即使没有更高层的共存机制,不同的系统也能够共存。

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