2
Tomakomai Kushiro Sendai Miyagi Kadota Ibaraki Hitachiomiya Omiya Urawa Ichikawa Chiba Chiba Shisui Roppongi Setagaya Setagaya 2 Center Gotanda Bunkyo Shinjuku Kamakura Yokohama Kohoku-ku Yokohama Kanagawa-ku Shin-Yokohama Niijima Susono Shimizu Hamamatsu Osaka Ikeda Shikoku Tokushima Suita 1 Suita 2 Inami Hiroshima Fukui Shinfuji Tama Hachioji Tokamachi Yonezawa Yamagata Shonai Kofu minami Yamanashi Uenohara KItakyusyu Miyagi Kogota San Francisco Turkey Japan: 44 locations Overseas: 2 locations Participating organizations: 40 Center Kurukamo website Electromagnetic noise data is collected at the Center via the Internet from observation points throughout the country. This data is displayed graphically on the website, and the analysis results are delivered to members as prediction information. Earthquake prediction system using electromagnetic noise 1. Offshore south of Tokaido 2009.08.09 M6.8 2. Suruga Bay 2009.08.11 M6.5 1 2 Earthquake occurs Please help to increase observation points  <Participating organizations wanted!> Aiming to improve the accuracy of earthquake prediction The most important task in improving the accuracy of earthquake prediction is increasing the observation points. A certificate is issued to participating organizations (individuals). Also, participating organizations (individuals) are granted the right to use the “Kurukamo Team 3000!!” logo, which can be put on business cards or company websites. Companies displaying our logo are highly regarded as “organizations that contribute to society by helping to improve the earthquake prediction system”. Furthermore, as well as being included in the “List of Participating Organizations” on the Kurukamo website, a link is provided to the official website of the participating organization, so participation also serves as a business opportunity. <Target number of observation points> <Electromagnetic noise detecting equipment> Observation points will be set up at 3,000 locations throughout Japan. By increasing the observation points, the prediction accuracy of Kurukamo will be further improved. This captures the possibility of earthquake occurrence by detecting electromagnetic noise from the natural world. It does this by receiving radio waves in the medium waveband and removing speech waves due to radio broadcasts using the “reverse radio ” method. The electromagnetic noise generation status is then displayed on a computer. <Basic specifications> Reverse radio unit (on left in photo) Standard received frequency: 850 kHz With broadcast signal cancellation circuit using phase manipulation Pulse noise receiving system Power supply: Via PC’ s USB Data communication: Via Internet (constant connection) PC software Automatic transmission of data (once per day) Dedicated software for graphical display * Windows XP-compliant. Non-Windows 7-compliant. [Planning/Operations Management] WIN Corporation Hirata Building, 7-11-3 Nishi-Shinjuku, Shinjuku-ku, Tokyo 160-0023 http://www.win-win.co.jp [Website Creation/Operation] Jesse Co., Ltd. 4F Medicom Saitama Shintoshin Building, 8-2-12 Kamiochiai, Chuo-ku, Saitama City, Saitama 380-0001 http://www.jesse.co.jp [Technology Development/Patents] Shinko Engineering Research Corp. 6-6-18 Kinuta, Setagaya-ku, Tokyo 157-0073 http://www.sa.il24.net/^serc/index.html [Sales Promotion/Sales Service Center] Merisage Inc. S510 The Yokohama Towers, 10-35 Sakae-cho, Kanagawa-ku, Yokohama, Kanagawa 221-0052 http://www.merisage.com Kurukamo Operation Offices Agent List of Kurukamo observation points (as of 4/1/2011) Certification logo Logo for business cards Certificate Earthquake prediction information service Great reputation! Delivery by email!! Kuru kamo rease observation points b ti it <Participating organization P ti i ti i ti Aiming to improve the accuracy of Ai i t i th f Aiming to improve the accuracy of Aiming to improve the accuracy of Aiming to improve the accuracy of earthq uake prediction th k di ti earthquake prediction earthquake prediction earthquake prediction k in improving the accuracy of earthquake prediction is increasing the obs Team 3000!! Team 3000!! Earthquake prediction information service Kuru Kuru kamo kamo Kuru kamo Measurement of noise in the natural world using reverse radio method An earthquake warning sign evident several days in advance… Kurukamo is a service that collects/analyzes electromagnetic noise data using reverse radio equipment and delivers it as “earthquake prediction information” to all its members. Roppongi observation point data (example)

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Page 1: Kuru kamo Kuru kamo

Tomakomai

Kushiro

SendaiMiyagi Kadota

Ibaraki HitachiomiyaOmiyaUrawa

IchikawaChibaChiba Shisui

RoppongiSetagayaSetagaya 2Center

GotandaBunkyo

ShinjukuKamakuraYokohama Kohoku-kuYokohama Kanagawa-ku

Shin-Yokohama

NiijimaSusonoShimizu

Hamamatsu

Osaka Ikeda

Shikoku Tokushima

Suita 1Suita 2

Inami

Hiroshima

Fukui

Shinfuji

TamaHachioji

TokamachiYonezawa

YamagataShonai

Kofu minami

YamanashiUenohara

KItakyusyu

Miyagi Kogota

San Francisco Turkey

Japan: 44 locationsOverseas: 2 locationsParticipating organizations: 40

CenterKurukamo website

Electromagnetic noise data is collected at the Center via the Internet from observation points throughout the country. This data is displayed graphically on the website, and the analysis results are delivered to members as prediction information.

Earthquake prediction system using electromagnetic noise

1. Offshore south of Tokaido  2009.08.09 M6.8

2. Suruga Bay  2009.08.11 M6.5 1

2

Earthquake occurs

Please help to increase observation points  <Participating organizations wanted!>

Aiming to improve the accuracy of earthquake prediction

The most important task in improving the accuracy of earthquake prediction is increasing the observation points.A certificate is issued to participating organizations (individuals).Also, participating organizations (individuals) are granted the right to use the “Kurukamo Team 3000!!” logo, which can be put on business cards or company websites.Companies displaying our logo are highly regarded as “organizations that contribute to society by helping to improve the earthquake prediction system” .Furthermore, as well as being included in the “List of Participating Organizations” on the Kurukamo website, a link is provided to the official website of the participating organization, so participation also serves as a business opportunity.

<Target number of observation points>

<Electromagnetic noise detecting equipment>

Observation points will be set up at 3,000 locations throughout Japan. By increasing the observation points, the prediction accuracy of Kurukamo will be further improved.

This captures the possibility of earthquake occurrence by detecting electromagnetic noise from the natural world. It does this by receiving radio waves in the medium waveband and removing speech waves due to radio broadcasts using the “reverse radio ” method. The electromagnetic noise generation status is then displayed on a computer.

<Basic specifications>■Reverse radio unit (on left in photo)Standard received frequency: 850 kHzWith broadcast signal cancellation circuit using phase manipulationPulse noise receiving systemPower supply: Via PC’ s USB Data communication: Via Internet (constant connection)■PC softwareAutomatic transmission of data (once per day)Dedicated software for graphical display *Windows XP-compliant. Non-Windows 7-compliant.

[Planning/Operations Management]WIN CorporationHirata Building, 7-11-3 Nishi-Shinjuku, Shinjuku-ku, Tokyo 160-0023http://www.win-win.co.jp

[Website Creation/Operation]Jesse Co., Ltd.4F Medicom Saitama Shintoshin Building, 8-2-12 Kamiochiai, Chuo-ku, Saitama City, Saitama 380-0001http://www.jesse.co.jp

[Technology Development/Patents]Shinko Engineering Research Corp.6-6-18 Kinuta, Setagaya-ku, Tokyo 157-0073http://www.sa.il24.net/^serc/index.html

[Sales Promotion/Sales Service Center]Merisage Inc.S510 The Yokohama Towers, 10-35 Sakae-cho, Kanagawa-ku, Yokohama, Kanagawa 221-0052http://www.merisage.com

Kurukamo Operation Offices

Agent

List of Kurukamo observation points (as of 4/1/2011) Certification logo Logo for business cards

Certificate

Earthquake prediction information service Great reputation!

Delivery by email!!

Kuru kamo

rease observation points  b ti i t <Participating organizationP ti i ti i ti

Aiming to improve the accuracy of Ai i t i th fAiming to improve the accuracy ofAiming to improve the accuracy ofAiming to improve the accuracy ofg p yearthqquake predictionth k di tiearthquake predictionearthquake predictionearthquake predictionq p

k in improving the accuracy of earthquake prediction is increasing the obs

Team 3000!!Team 3000!!Earthquake prediction

information service

KuruKurukamokamoKurukamoMeasurement of noise in the natural world

using reverse radio method

An earthquake warning sign evident several days in advance…

Kurukamo is a service that collects/analyzes electromagnetic noise data using reverse radio equipment and delivers it as “earthquake prediction information” to all its members.

Roppongi observation point data (example)

Page 2: Kuru kamo Kuru kamo

Deep below the ground, a large number of plates are shifting such that they overlap each other.Due to this shifting of strata, certain areas become compressed and release electromagnetic waves (energy).These electromagnetic waves exist as noise among the general broadcasting and other radio waves that fly about in daily life.A method for extracting this noise from the radio waves that exist in daily life above ground is “reverse radio” (Patent No. 3188609).By analyzing “noise from below ground” that has been extracted in this way, it is now possible to predict earthquakes with a high probability.

As well as prediction information for the entire country, you can find detailed prediction information for each area.

Kurukamo is a service that makes use of this kind of analysis system to deliver earthquake prediction information to all of its members.

When an earthquake occurrence draws near, a Special Kurukamo Email is delivered.

each

the

erse

.k

Wha S

Abnormalities in data from the Roppongi observation point continued for approximately 1 month from the second half of June, forming a peak higher than any observed over the previous 6 months.

Data from the Ichikawa observation point formed a peak higher than any observed over the previous 6 months.

On August 8, synchronized data occurred at Ichikawa, Gotanda, and Niijima.

The amount of noise at Niijima, Shimizu, and Yamanashi showed a convergence trend towards August 8.

Currently 2009.08.15

Currently 2009.08.08

Currently 2009.08.08

Currently2009.08.08

Currently2009.08.08

Currently2009.08.08

Currently2009.08.08

Data for 180 days Data for 30 days

Data for 30 days

Data for 30 days

Data for 30 days

Data for 30 days

Data for 30 days

Currently 2009.08.15

Data for 180 days

Special email delivery!!

Earthquake!

About Kurukamo Kurukamo website

Page for browsing electromagnetic noise graphs

Earthquake prediction information page

Example of Kurukamo’ s prediction performance (Earthquake on August 11, 2009, Suruga Bay M6.5, maximum seismic intensity of almost 6)

Intensity 6 lower

Intensity 4Offshore south of Tokaido

Suruga Bay

Roppongi

Ichikawa

Ichikawa

Gotanda

Niijima

Niijima

Shimizu

Yamanashi Ryuoh

Intensity 6 lower

Intensity 4Offshore south of Tokaido

Suruga Bay

8/9 Offshore south of Tokaido M6.8

8/11 Suruga Bay M6.5

Maximum seismic intensity 4Maximum seismic intensity 4

Maximum seismic intensity , almost 6Maximum seismic intensity , almost 6

Convergence prediction graphPredicts convergence (date of earthquake occurrence)

Proportional treatment (hourly) graphSuperimposed display of multiple observation points

Radar chart for specific dayShows degree of risk from multiple observation sites

Special prediction information delivery

Special prediction information is also published on the Kurukamo website

Analysis using 5 types of graph depending on the situation. Data updated in real time. 24-hour browsing possible. In addition to current situation, all past data can be browsed.→ Useful in earthquake prediction research.

Can be browsed with display period set in detail.→ Abnormal trends can be found when a yearly display is set. 6 chosen observation sites can be displayed simultaneously.→ Place of earthquake occurrence can be identified by finding synchronized data.