Information distribution service Product List and Ranking from 10 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

Information distribution service Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

  1. ジェノバ Tokyo//Information and Communications
  2. JFEコムサービス 本社 Tokyo//Information and Communications
  3. AKT|アカサカテック 横浜本社、中部営業所、福岡営業所 Kanagawa//Information and Communications
  4. 4 バカン 本社 Tokyo//Information and Communications
  5. 4 レスキューナウ Tokyo//Information and Communications

Information distribution service Product ranking

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

  1. High-precision and high-quality Genoa GNSS positioning correction service ジェノバ
  2. Exhibition Exhibit: Emergency Earthquake Alert Distribution Service "Broadcast Equipment Collaboration" JFEコムサービス 本社
  3. [Technical Information] Differences Between Virtual Point Method and Surface Correction Method ジェノバ
  4. Facility congestion information displayed on a map 'VACAN Maps' バカン 本社
  5. 4 Web Asset Manager 3.0 NTTデータ・エービック

Information distribution service Product List

1~15 item / All 32 items

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[Technical Information] Differences Between Virtual Point Method and Surface Correction Method

The virtual point method distributes virtual reference point data! The surface correction method distributes correction information from the reference station!

I will introduce the differences between the "Virtual Point Method" and the "Surface Correction Method." These two methods differ in the content of the data they deliver. The "Virtual Point Method" delivers observation data and correction information from virtual reference points. The "Surface Correction Method" delivers correction information from reference stations and surface correction parameters. *For more details, please refer to the PDF document or feel free to contact us.*

  • Other earthworks, foundation works, and exterior floors
  • Other measuring instruments
  • Surveying

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[Technical Information] Patent technology for network-based positioning considering crustal deformation.

A patented surveying system! Distributing correction information through real-time data acquisition!

We would like to introduce our patented technology, "Patent Technology Considering Japan's Crustal Movements," in the context of network-based distribution services. Our patented "Surveying System" focuses on the ability to obtain electronic reference point data in real-time and provides correction information that aligns the results of GNSS surveying and positioning with the output values of electronic reference points located near the surveyor. This technology addresses concerns such as "significant variability in positioning results" and "poor reproducibility of positioning" that arise when crustal movements occur. 【Features】 ■ Correction method for virtual reference points and surveying method (Patent No. 5832050) ■ High-quality data distribution considering crustal movements ■ Alignment with the nearest electronic reference point results ■ Distribution suitable for surveying operations "Technical partnership with GNSS manufacturers" *For more details, please refer to the PDF document or feel free to contact us.

  • Other earthworks, foundation works, and exterior floors
  • Other measuring instruments
  • Surveying

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Multi-GNSS Demonstration Experiment (Hokkaido Area) [Case Study Introduction]

GNSS maintains FIX solutions longer than GPS alone, and the recovery speed from FLOAT solutions is fast, benefiting from the larger number of satellites!

Our company receives real-time data from electronic reference points provided by the Geospatial Information Authority of Japan at the Genoa Center, conducting analyses 24 hours a day, 365 days a year, and offering high-precision positioning correction data distribution services to our customers. In Bitoe, Tobetsu Town, Ishikari District, Hokkaido, we conducted a demonstration experiment of network-type RTK-GNSS using three electronic reference points: Atsuta, Sapporo, and Eniwa. 【Static Observation】 - Using GLONASS tends to result in less variation compared to using GPS alone. - It was confirmed that using GLONASS during the preparation phase speeds up initialization. - Variability in data occurs during satellite switching (when the number of satellites decreases) for network-type RTK-GNSS observation values. 【Mobile Observation Experiment】 - When using GLONASS, many satellites are acquired, making it less likely to enter a FLOAT solution state. - It was confirmed that even when in FLOAT solution or standalone positioning, the speed of returning to FIX solution (initialization) improves. - It was confirmed that FIX solution is maintained even in environments where satellites are difficult to receive at consistently low elevation angles. - The quick recovery from FLOAT solution was also demonstrated. *For more details, please refer to the PDF document or feel free to contact us.

  • Other earthworks, foundation works, and exterior floors
  • Other measuring instruments
  • Surveying

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High-precision and high-quality Genoa GNSS positioning correction service

Contributing to significant improvements in work efficiency and cost reduction in various fields that require high-precision positioning through the use of real-time data from electronic reference points! Also compatible with public surveying!

Our company receives real-time data from electronic reference points provided by the Geospatial Information Authority of Japan at the Genova Center, conducting analyses 24 hours a day, 365 days a year. We offer a high-precision positioning correction data delivery service to our customers using a virtual reference point method. By utilizing our services, there is no need to install and manage physical reference stations, significantly reducing work efficiency, labor, and management costs. The measurement results are processed using our unique correction method (Genova method), achieving high-precision positioning that complies with public surveying standards. 【Features of the Delivery Service】 ■ Virtual reference point RTK and electronic reference point RTK are also available ■ Compatible with GPS, GLONASS, Galileo, and QZS ■ Aligns with the results of the nearest electronic reference point (Patent No. 5832050) ■ Generates GNSS data using a high-density network of electronic reference points (utilizing approximately 1,300 points nationwide) ■ No need for the installation and management of reference stations, enabling observations by a single person.

  • Other measuring instruments
  • IoT
  • Other civil engineering works

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Centimeter-level positioning service! High-precision GNSS network-based RTK.

High-precision positioning and location data using GNSS! Utilized in surveying, ICT construction machinery, drones, smart agriculture, automobiles, robots, and more.

Our company, a specialist in location-based services, provides high-precision positioning and location information at the centimeter level by sending corrected data using the electronic reference points from the Geospatial Information Authority of Japan (GSI) for location information observed via GNSS (GPS, GLONASS, Galileo, QZS). The data is transmitted over the internet, allowing for real-time location information requests. ■ We have created a video about our business, so please take a look ■ https://www.jenoba.jp/movie.html 【Main Use Cases】 ■ Public surveying, land and house surveys ■ Construction work and project management using ICT construction machinery (i-Construction) ■ Surveys, inspections, and logistics using drones and UAVs ■ Unmanned agriculture using ICT agricultural machinery ■ Autonomous driving, etc. 【Features of the Distribution Service】 ■ Network-based RTK service using virtual reference points ■ Compatible with GPS, GLONASS, Galileo, and QZS (Michibiki) ■ Aligns with the results of the nearest electronic reference points (Patent No. 5832050) ■ No need for the installation and management of physical reference stations

  • Other civil engineering works
  • IoT

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Case Studies on the Use of Network RTK: UAVs and Drones

Introducing use cases of "network-type RTK" in the UAV and drone field.

This document introduces examples of the use of a unique technology (JENOBA method) that utilizes real-time data from electronic reference points in the field of UAVs and drones with a "network-type RTK." [Published Examples] ■ Application in Firefighting Robot Systems (From the Fire Research Center, National Fire Academy) *For more details, please refer to the catalog or feel free to contact us.

  • Other measuring instruments
  • Specially equipped vehicles

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Emergency Earthquake Information Distribution Service "Mobile Alert"

To protect what is important, as quickly as possible! Emergency earthquake information distribution service for corporations and organizations.

"Mobile Alert" is an emergency earthquake information distribution service compatible with the PLUM method. It allows you to know the magnitude of the earthquake's shaking (intensity) and the number of seconds until shaking occurs, enabling you to stop machinery or prepare for evacuation actions, thus protecting people and equipment. We have been participating in the industry since the demonstration experiment stage by the Japan Meteorological Agency and have a wealth of construction achievements across various industries. [Features] - Proposals tailored to budget and industry - Extensive track record of integration with numerous device controls - Reliable distribution using a robust data center - Comprehensive provision from dedicated lines to terminals - 24/7 operator support in emergencies *For more details, please refer to the PDF materials or feel free to contact us.

  • others

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Exhibition Exhibit: Emergency Earthquake Alert Distribution Service "Broadcast Equipment Collaboration"

[Free Admission] Crisis Management Industry Exhibition (10/5 to 10/7) Participation! Automatic broadcasting of earthquake arrival times and predicted seismic intensity from broadcasting equipment before the shaking of an earthquake.

JFE Com Service Co., Ltd. will exhibit our products at the "Crisis Management Industry Exhibition 2022" held at Tokyo Big Sight from October 5 (Wednesday). This is a chance to see the actual equipment up close! ● Exhibition Dates: October 5-7, 2022 ● Scheduled Exhibits: Emergency Earthquake Alert Reception Terminal, CO2 Monitor 'Mobile Alert' is an emergency earthquake information distribution service that can receive alerts faster than mobile phones and provides estimated seismic intensity and lead time based on the customer's address. Our emergency earthquake alert system has been involved in the industry since the Japan Meteorological Agency's demonstration experiment phase, and we have a wealth of construction experience across many industries. 【Features】 ■ Proposals tailored to budget and industry ■ Extensive track record of integration with numerous device control systems ■ Reliable distribution using robust data centers ■ Comprehensive provision from dedicated lines to terminals ■ 24/7 operator support in emergencies ■ Integration with elevators, broadcasting equipment, and manufacturing devices ■ Emergency stop of hazardous areas such as production lines and gas facilities through emergency earthquake alert integration *For more details, please download the PDF or feel free to contact us.

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  • Other Software

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Facility congestion information displayed on a map 'VACAN Maps'

Distribute congestion information for various facilities in a list on a smartphone map. It can be used for a wide range of facilities, regardless of genre.

"VACAN Maps" is a service that allows you to view the current availability and congestion information of stores and facilities on a map on your smartphone or PC. The methods for detecting congestion include: - Automatic detection using cameras and sensors - Low-cost detection through visual observation and manual input - Detection linked with a digital ticketing system You can choose from multiple methods. 【Features】 ■ Visualize real-time availability in various locations ■ Choose detection methods based on location and budget ■ By posting a URL on the store's website or social media, it can also serve as a way to encourage visits ■ The last-minute reservation service "10-Minute Hold" is also available ■ Being rapidly adopted by various stores across different genres *For more details, please refer to the PDF document or feel free to contact us.

  • IoT
  • Other commercial buildings and service facilities

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Metal resource-related information distribution service

We operate two media outlets that support the "best match of information and resources."

Our company provides information distribution related to metal resources. We operate two media platforms: "MIRU.com," a resource information site that offers a wide range of information from upstream resources to various downstream products, scrap recycling, advanced electronic materials, and semiconductor market trends, and "MIRUplus," an information site that provides original articles and columns on energy, metals, finance, and economics. Our members include a wide range of industries, primarily large companies, such as steel manufacturers, non-ferrous metal smelting companies, automobile manufacturers, home appliance manufacturers, trading companies, and recyclers. Please feel free to contact us if you have any inquiries. *For more details, please download the PDF or feel free to reach out to us.

  • others

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GNSS Correction Information Distribution Service RINQ (Link)

Centimeter-level accuracy achieved with a private cloud-based relative positioning method for HDT280: Single-frequency GNSS correction information distribution service.

RINQ (RTCM Internet Neo Query) is a GNSS correction information delivery service for our product HDT280. The HDT280 can be used as a delivery station for GNSS correction information, allowing the mobile station HDT280 to achieve high-precision single-frequency RTK positioning using the correction information. 【Features】 - Easy installation of base stations and mobile stations. Both the base station and mobile station have a simple configuration consisting only of the HDT280 and GNSS antenna. - Utilizes the built-in 3G/LTE communication of the HDT280, eliminating the need for additional radio equipment. There is no need to worry about radio interference. - Up to 999 mobile station HDT280 units can be positioned with a single base station HDT280. - The mobile station HDT280 can use up to 2 GNSS (GPS+GLONASS or GPS+BeiDou). - The Akasaka Tech Cloud Service is used for sending and receiving correction information. - The positioning data for single-frequency RTK-GNSS is output as NMEA0183 and can be used with an Android app that operates within the HDT280. - NMEA sentences (GGA, GNS, GSA, GSV, RMC, VTG, ZDA) can be output at a maximum rate of 5Hz.

  • Construction and process management software

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Network-based RTK distribution service

Contributing to significant improvements in work efficiency and cost reduction in various fields that require high-precision positioning through the use of real-time data from electronic reference points!

Our company receives real-time data from electronic reference points provided by the Geospatial Information Authority of Japan at the Genova Center, conducting analyses 24 hours a day, 365 days a year, and offering high-precision positioning correction data distribution services to our customers. Using our unique technology (JENOBA method) that utilizes real-time data from electronic reference points, we respond to demands for "improved accuracy" and "cost reduction," while aiming to provide optimal network-based RTK positioning correction data for our customers' businesses. 【Features】 ■ High-quality data distribution considering crustal deformation ■ Alignment with the nearest electronic reference point results ■ Distribution suitable for surveying operations "Technical collaboration with GNSS manufacturers" ■ Reduced personnel and equipment, resulting in significant cost savings ■ Reduced workload and increased efficiency through the use of virtual point method static data *For more details, please refer to the catalog or feel free to contact us.

  • Other measuring instruments
  • Surveying

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Case Studies of Network RTK Utilization in Civil Engineering

Introducing examples of the use of "network-type RTK" in the civil engineering field.

This document introduces case studies in the civil engineering field utilizing a unique technology (JENOBA method) that employs real-time data from electronic reference points, known as "network-type RTK." From several examples, it has been demonstrated that network-type RTK is a highly effective system in locations where GPS satellites can be supplemented, leading to increased productivity and cost reduction due to the elimination of the need for base station installation. A report on the "First Information Technology Construction Utilization Support Seminar" is also included. 【Featured Cases】 ■ Japan's first! Height control of bulldozer blades using 3DMC with network-type RTK (Sato Construction Co., Ltd.) ■ Compaction management system using network-type RTK with multi-GNSS (trial operation) (Miyagi Construction Co., Ltd.) ■ First application of network-type RTK at a land development construction site: Case study using GNSS compaction management system (Kajima Corporation) ■ Introduction example of a sand pile driving vessel utilizing network-type RTK (Aomi Construction Co., Ltd.) *For more details, please refer to the catalog or feel free to contact us.

  • Other earthworks, foundation works, and exterior floors

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Collection of Case Studies on Utilizing Network RTK: "Land and House Surveyor Services"

Introducing examples of the use of "network-type RTK" in the field of land and building surveying.

This document introduces examples of the use of a unique technology (JENOBA method) utilizing real-time data from electronic reference points in the field of land and house surveying with "network-type RTK." It includes examples of applications such as "initiatives for registration surveying," "boundary confirmation surveying," and "integration with land and house surveying services." Compared to traditional static surveying, it demonstrates significant reductions in work time. 【Published Examples】 ■ Initiatives for network-type RTK registration surveying (Kumamoto Prefecture Land and House Surveyors Association) ■ Application of network-type RTK in boundary confirmation surveying (Land and House Surveyor Yoichi Suzuki Office) ■ Integration examples of land and house surveying services with network-type RTK (Omura GPS Research Group) *For more details, please refer to the catalog or feel free to contact us.

  • Surveying

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Collection of Case Studies on Network RTK Utilization: "Other Application Examples"

Introducing other application examples of "network-type RTK."

This document introduces application examples of the "network-type RTK" that employs a unique technology (JENOBA method) utilizing real-time data from electronic reference points. It includes applications such as "measurement using the Mitsubishi Mobile Mapping System (MMS) high-precision mobile measurement device," as well as examples from the "unmanned rice planting machine system" and the "snow removal support system." 【Published Examples】 ■ Measurement case using the Mitsubishi Mobile Mapping System (MMS) high-precision mobile measurement device (Toyonaka City, Osaka Prefecture) ■ Example of network-type RTK utilization in the unmanned rice planting machine system (National Agriculture and Food Research Organization) ■ Application of network-type RTK in the snow removal support system (Tateyama Route Snow Removal Association) *For more details, please refer to the catalog or feel free to contact us.

  • Surveying

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