Top Page | English | 简体中文 | 繁體中文 | 한국어 | 日本語
Wednesday, 25 May 2016, 09:28 HKT/SGT
Share:
    

Source: Fujitsu Ltd
Fujitsu Develops Field Engineering Technology to Rapidly Provide IoT Services
Immediate resolution of on-site radio wave issues through simulation and visualization

KAWASAKI, Japan, May 25, 2016 - (JCN Newswire) - Fujitsu Laboratories Ltd. today announced the development of field engineering technology that shortens the time necessary to install on-site IoT devices that use wireless communication, such as Wi-Fi and Bluetooth, and provides stable operations.

Figure 1: Examples of IoT systems using radio waves

Figure 2: Radio wave simulation technology

In locations where IoT devices have been installed, instability in wireless communication can occur as people and things moving about can greatly change the radio wave environment, and as the radio waves emitted by smartphone and other commonly used devices may create interference. Responding to this instability creates issues in installation and operations as time and effort are required for experts to do necessary on-site adjustments through trial and error.

Fujitsu Laboratories has now developed technology that automatically determines where to install wireless devices, carrying out radio wave simulations that automatically take into account the coming and going of people and the layout of the space in which IoT devices will be installed. Fujitsu Laboratories also developed technology that automatically analyzes the use of radio waves at the location where IoT devices will be installed, and visualizes the congestion. With these technologies, wireless devices can be installed in about one-third the time, enabling swift implementation of IoT services.

Fujitsu Limited plans to offer this technology as a consulting service from the first half of fiscal 2016.

A portion of this technology will be exhibited at Wireless Technology Park 2016, which will be held starting May 25 at Tokyo Big Sight.

Development Background

Efforts are currently underway to create practical implementations of IoT systems in locations where people are active, such as factories, shopping centers, stadiums, stations and airports, and office buildings, and in order to install sensors flexibly and efficiently, systems using radio waves, such as Wi-Fi, Bluetooth, and ZigBee, are widely used.

Issues

Environments considered for IoT system implementation often have many people and things coming and going, which can often cause instability in wireless communications during operations because they block or reflect radio waves. In addition, devices such as smartphones carried by people moving through the location emit radio waves that can cause mutual interference among those communications.

It could often take several weeks before the stable operation of IoT systems was achieved, as it was necessary for radio wave experts working on the installations to repeatedly reinstall and re-test the system, relying on their expertise in using specialized measuring devices. These issues in implementation and operation led to a demand for technology that makes it easy to install IoT devices.

About the Technology

Now Fujitsu Laboratories has developed radio wave simulation technology that automatically incorporates the site's three-dimensional image data and video of people's movement to automatically determine installation points for wireless devices, as well as technology that visualizes the actual radio wave interference situation.

The key features of these technologies are as follows:

1. Radio wave simulation technology that can simply and automatically determine installation points for wireless devices

Fujitsu Laboratories has simplified the handling of radio wave simulations, which previously required huge amounts of time and effort, with the following two technologies, which can simply and automatically determine installation points for wireless devices, even without wireless device expertise.

1) 3D spatial digitizing technology:

Fujitsu Laboratories has developed technology to automatically create the 3D layout data necessary for radio wave simulations just by measuring with a laser scan from a few points around the site, and then automatically correcting distortions and smoothly merging measurement data from multiple scans. With this technology, the time required to create the layout data is shortened from around one week when creating it by hand to around two hours, including measurement time.

2) Moving body modeling technology:

In order to reflect the impact of people's movements numerically, it was previously necessary to run many simulations, changing the placement of people a bit each time. Now, by automatically measuring the number of people coming and going using technology developed by Fujitsu Laboratories that recognizes the flow of people from video(1), making patterns for different numbers of people, and using these in simulations, simulations that might have taken three days can now be done on an ordinary PC in less than fifteen minutes.

2. Radio wave interference visualization technology

Fujitsu Laboratories has developed technology that automatically recognizes and displays wireless communications actually being used at sites where IoT devices are installed, and visualizes the state of signal congestion for each channel and location, and for each communications standard. This makes it possible, even for non-experts, to determine appropriate installation locations for IoT devices, data transmission time spacing, and channel settings.

This technology recognizes wireless standards (such as Wi-Fi, Bluetooth and ZigBee) through a unique computation method of correlation coefficient between received signals and signal patterns prepared for each wireless standard. Previous technology would perform a product-sum operation with signal patterns prepared for each standard, after frequency correction of the received signal, but this technology uses the fact that, when the received signal differs from the prepared signal pattern, the results of multiplication of the signal before frequency correction have high randomness to achieve high recognition performance, successfully improving recognition sensitivity to twice that of previous methods.

Effects

With this newly developed technology, Fujitsu Laboratories has reduced the time required to install IoT devices at a site to one-third that of previous methods.

This means that, because the installation of wireless devices, which created issues for implementing and operating an IoT system, and radio wave congestion and interference countermeasures have become easier to do, when using an IoT system with the goal of achieving operational efficiencies or to create value, customers can greatly reduce the time needed before they start actual operations. In addition, even after starting operations, these technologies also make it possible to operate stably, without any major trouble causing operations to stop.

Future Plans

Fujitsu Limited plans to offer this technology as a consulting service from the first half of 2016.

(1) Technology that recognizes the flow of people from video

Fujitsu Develops Industry's First Technology to Recognize Flow of People from Low-Resolution Imaging (Press release, March 6, 2015) http://www.fujitsu.com/global/about/resources/news/press-releases/2015/0306-02.html


Contact:
Fujitsu Limited
Public and Investor Relations
Tel: +81-3-3215-5259
URL: www.fujitsu.com/global/news/contacts/

Fujitsu Laboratories Ltd.
ICT Systems Laboratories 
Server Technologies Lab
E-mail: Retimer_ISSCC2015@ml.labs.fujitsu.com


Topic: Press release summary
Source: Fujitsu Ltd

Sectors: Cloud & Enterprise, IT Individual
http://www.acnnewswire.com
From the Asia Corporate News Network


Copyright © 2024 ACN Newswire. All rights reserved. A division of Asia Corporate News Network.


Fujitsu Ltd Links

http://www.fujitsu.com

https://plus.google.com/+Fujitsu

https://www.facebook.com/FujitsuJapan

https://twitter.com/Fujitsu_Global

https://www.youtube.com/user/FujitsuOfficial

https://www.linkedin.com/company/fujitsu/

Fujitsu Ltd
May 10, 2024 11:20 HKT/SGT
Release of "Fugaku-LLM" - a large language model trained on the supercomputer "Fugaku"
May 9, 2024 09:41 HKT/SGT
Fujitsu introduces "explainable AI" for use in genomic medicine and cancer treatment planning
May 8, 2024 07:52 HKT/SGT
ServiceNow and Fujitsu announce strategic commitment to launch innovative cross-industry solutions
May 7, 2024 16:53 HKT/SGT
Fujitsu launches mainframe modernization automation service for the Japanese market
Apr 23, 2024 09:25 HKT/SGT
Fujitsu SX Survey reveals key success factors for sustainability
Apr 22, 2024 15:09 HKT/SGT
Fujitsu and METRON collaborate to drive ESG success: slashing energy costs, boosting productivity with new manufacturing industry solutions
Apr 19, 2024 09:17 HKT/SGT
Fujitsu develops technology to convert corporate digital identity credentials, enabling participation of non-European companies in European data spaces
Apr 18, 2024 10:14 HKT/SGT
Fujitsu and Oracle collaborate to deliver sovereign cloud and AI capabilities in Japan
Apr 11, 2024 14:10 HKT/SGT
DOCOMO, NTT, NEC and Fujitsu Develop Top-level Sub-terahertz 6G Device Capable of Ultra-high-speed 100 Gbps Transmission
Apr 9, 2024 09:39 HKT/SGT
Fujitsu AI transforms manufacturing lines with new quality control system for REHAU
More news >>
 News Alerts
Copyright © 2024 ACN Newswire - Asia Corporate News Network
Home | About us | Services | Partners | Events | Login | Contact us | Privacy Policy | Terms of Use | RSS
US: +1 214 890 4418 | Beijing: +86 400 879 3881 | Hong Kong: +852 8192 4922 | Singapore: +65 6549 7068 | Tokyo: +81 3 6859 8575

Connect With us: