Abstract

Abstract. The markets for smart home products and services are expected to grow over the next years, driven by the increasing demands of homeowners considering energy monitoring, management, environmental controls and security. Many of these new systems will be installed in existing homes and offices and therefore using radio based systems for cost reduction. A drawback of radio based systems in indoor environments are fading effects which lead to a high variance of the received signal strength and thereby to a difficult predictability of the encountered path loss of the various communication links. For that reason it is necessary to derive a statistical path loss model which can be used to plan a reliable and cost effective radio network. This paper presents the results of a measurement campaign, which was performed in six buildings to deduce realistic radio channel models for a high variety of indoor radio propagation scenarios in the short range devices (SRD) band at 868 MHz. Furthermore, a potential concept to reduce the variance of the received signal strength using a circular polarized (CP) patch antenna in combination with a linear polarized antenna in an one-to-one communication link is presented.

Highlights

  • Indoor radio channels suffer usually from slow fading

  • The last six columns representing the standard deviation of fading for a LOS and NLOS connection between transmitter and receiver

  • One possible explanation for that is that the walls in a building can be treated as dielectric materials

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Summary

Introduction

Indoor radio channels suffer usually from slow fading. That means that the characteristics of the channel vary only slowly in time compared with the duration of a data symbol. This can become a very dramatic effect in the communication between two (or more) radio devices. If these devices are non-mobile devices, like in a smart home system. A deep fade can significantly decrease the signal-to-noise ratio (SNR) of a communication link, which results in a reduced data rate or in a complete drop out of the radio link

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