Showing posts with label IOWN. Show all posts
Showing posts with label IOWN. Show all posts

Wednesday, December 14, 2022

NTT to test Open All Photonics Network wavelength interconnects

NTT, in collaboration with Ciena, Fujitsu, and NEC Corporation (NEC), will conduct Open All Photonics Network (APN) proof-of-concept (PoC) trial of on-demand wavelength technologies.

NTT said the work is based on the Open All Photonics Network (APN) Functional Architecture document published by the IOWN GF earlier this year.

The network nodes defined in the Open APN Functional Architecture can be constructed from the Open ROADM MSA’s standard components, which are available from global optical product vendors such as Ciena, Fujitsu, and NEC. To prove the viability and operability of Open APN, NTT will conduct a PoC jointly with Ciena, Fujitsu, NEC, and other companies in the fourth quarter of fiscal 2022. The PoC will validate wavelength connection creation/deletion functions and evaluate the performance of optical communications in terms of throughput, delay, and jitter.

The PoC should prove that Open APN is implementable and operable with products already available in the global market and encourage many organizations in the world to build and implement Open APN.

While conventional ROADM products are designed to create optical connections between telecommunication carriers’ sites, an Open APN creates connections between all endpoints, including customer sites. This difference leads to the need for new functions as listed below:

  • A function for automatically designing and provisioning wavelength connections that satisfy service requirements by cooperation and coordination of terminals deployed in user sites and carrier equipment, and functions for selecting the best transmission mode, etc.
  • A function for configuring and managing optical wavelength end points of terminals deployed in user sites and a function for passing and blocking optical signals in carrier equipment based on the authentication status of each terminal
  • A function for adapting different types of optical fibers to be connected in the same optical wavelength

NTT has developed the above functions and started a field test in the Tokyo metropolitan area. The test should validate their operability under various conditions, such as fiber length and loss levels in a real environment. As the test will also utilize the outcome from Open ROADM MSA and Telecom Infra Project Open Optical & Packet Transport6, it should demonstrate how the results from the three organizations can be combined to build open and disaggregated infrastructures.

Monday, April 25, 2022

IOWN Global Forum accelerates growth, elects directors

The Innovative Optical and Wireless Network Global Forum (IOWN Global Forum) has nearly doubled in membership over the past year, adding 44 new organizations and bringing its roster to 95 organizations.

At last week's Annual Member Meeting, five recently elected Directors were introduced: Brad Booth of Microsoft, Chris Wright of Red Hat, Hey-Chyi Young of Chunghwa Telecom, Per Beming of Ericsson, and Dr. Ulrich Dropmann of Nokia Corporation.

Upon his election, Chris Wright, Senior Vice President and Chief Technology Officer of Red Hat said, "Developing next generation networking technology to infuse data with compute is the foundation for a smarter and more sustainable future. As the world’s leading provider of open source solutions, Red Hat shares this vision with the IOWN Global Forum and looks forward to collaborating with industry and open source communities to bring it to life."

Per Beming of Ericsson on his re-election noted that the “IOWN Global Forum will shape the future of communication networks and how they will support a more sustainable society for all.”

Dr. Ulrich Dropmann from Nokia on the election and direction of the Forum said, “at Nokia, we believe IOWN Global Forum will play a key role in shaping the future of communication and Infrastructure technology. As a market leader in optical networking, we believe innovation in optical networking such as all-photonic networks, data-centric infrastructure will provide the backbone of the future. On that backbone the Information society will continue to strive, with particular emphasis on the sustainable support of wireless technology such as 5G-Advanced and 6G. By joining the IOWN GF Board, we will drive the IOWN GF mission to realize a smarter future for the world.”

On the election of Brad Booth, a Microsoft spokesperson said “Microsoft is a world leader in artificial intelligence and high speed computing that is accessible globally through our highly innovative WAN, Metro and Datacenter networks. The next 10 years will require many innovations to provide every person on our planet with limitless access to personalized and highly intelligent services that will help us navigate our daily lives. Microsoft shares IOWN’s vision to break free from today’s power and technology challenges and to navigate the next wave of innovations that our future will be built upon. Today we are pleased that Brad Booth, Principal Network Hardware Architect in Azure’s Hardware Architecture team, will be returning to the board of directors to ensure active participation of the cloud and networking community. Together as a community of innovators, we will meet the challenges of the next decade to build a new and better digital world.”

https://iowngf.org


IOWN Global Forum's Vision 2030 Roadmap 

The IOWN Global Forum, which is pursuing the vision of an Innovative Optical and Wireless Network based on next generation photonics-based technologies, published its Vision 2030 Roadmap. The consortium said has completed Phase 1 of its mission and is now moving onto Phase 2, which includes designing Proof of Concepts for some of the world’s most advanced communications technologies.“We are progressing steadily towards achieving our 2030 goals for...

IOWN advances All-Photonics Data and Communications Architecture

 The Innovative Optical and Wireless Network Global Forum (IOWN Global Forum) has released six technology reference documents in support of its goal to provide reliable, high-speed, low-latency data and communications paths using an all-optical data transport architecture.The reference documents focus on methodologies for the provisioning of data and communications paths along with computing improvements which are designed to deliver more energy-efficient...


Monday, April 11, 2022

IOWN Global Forum's Vision 2030 Roadmap

The IOWN Global Forum, which is pursuing the vision of an Innovative Optical and Wireless Network based on next generation photonics-based technologies, published its Vision 2030 Roadmap. The consortium said has completed Phase 1 of its mission and is now moving onto Phase 2, which includes designing Proof of Concepts for some of the world’s most advanced communications technologies.

“We are progressing steadily towards achieving our 2030 goals for a more connected world,” said Katsuhiko Kawazoe, Ph.D., President and Chairperson of the board, IOWN Global Forum. “The finalization of our Roadmap and other key work items showcases how far we’ve come and a path for delivering the communications infrastructure of tomorrow. Now more than ever, this is the ideal time for innovators to join with us to build the future.”

The Vision 2030 Roadmap summarizes the group’s plan to realize reliable, high-speed, low-latency data and communications paths over an all-optical data transport layer using a data-centric infrastructure. The IOWN Global Forum’s technical reference documents focus on the network architecture framework and methodologies for moving data in faster and more energy-efficient ways than what is available today.

Now the organization’s focus will shift to developing the technical specifications needed to build reference implementations and Proof of Concepts based on adopting IOWN technologies. The learnings gained from these next work items will inform a clearer view of how the group’s technical concepts, such as Open All-Photonics Network (Open APN), Data-Centric Infrastructure (DCI), and Data Hub, will be implemented in future real-world applications.

In addition, the IOWN Global Forum said it will continue to build new liaison relationships with other organizations to align and complement the various aspects of its respective work and standardization efforts.

https://iowngf.org/white-papers/


Monday, January 31, 2022

IOWN advances All-Photonics Data and Communications Architecture

 The Innovative Optical and Wireless Network Global Forum (IOWN Global Forum) has released six technology reference documents in support of its goal to provide reliable, high-speed, low-latency data and communications paths using an all-optical data transport architecture.

The reference documents focus on methodologies for the provisioning of data and communications paths along with computing improvements which are designed to deliver more energy-efficient ways of routing network traffic than what is available today.

“Today’s world is experiencing faster than ever data growth, thanks to advancements in communication and computing technologies,” said Katsuhiko Kawazoe, Ph.D., President and Chairperson of the board, IOWN Global Forum. “However, the evolution of sensing/capture technologies suggests that their critical requirements will be much higher than is achievable with existing technologies. Moving forward, another quantum leap in computing and communication capabilities is needed to move the world into a new era of growth.”

The newly released “starter packs” cover the following areas:

Open All-Photonic Network (APN) Functional Architecture. The Open APN expands existing network communications paths such as local area networks (LANs), access networks, and inter-data-center networks, with a direct optical communication path that spans multiple segments and allows end-to-end communication with deterministic performance.

Data-Centric Infrastructure (DCI) Functional Architecture. The DCI subsystem provides applications with a distributed, heterogeneous, end-to-end computing and networking environment across clouds, edges and customer premises. The DCI is designed to enable service providers with the tools needed to build and flexibly place data pipelines, including data processing and storage functions, while dynamically selecting data transfer and network protocols on a pipe-by-pipe basis.

Data Hub Functional Architecture. This data management and sharing infrastructure enables fast and trusted data processing, usage and exchange among multiple parties or locations. This architecture sits on top of the DCI architecture and supports APIs that are functionally compatible with those of well-adopted services, such as Apache Kafka/Pulsar, AWS S3 and SQL. The Data Hub Functional Architecture provides unified secure access to its internal storage as well as the data that each organization keeps on-premises or in the cloud.

Fiber Sensing for Open APN. Fiber-optic sensing has many advantages over conventional sensors, including the ability to extend sensing range to hundreds of kilometers; reduced latency, size and weight; the ability to operate outside of line-of-site and immunity to electromagnetic interference. Distributed Fiber Optics Sending (DFOS) technology performs multi-point, real-time and continuous measurement of changing environmental conditions, such as temperature, strain and vibration (including acoustic) along the entire fiber optic cable.

Technical Outlook for Mobile Networks Using IOWN Technology. Emerging mobile technologies such as massive MIMO, dynamic spectrum sharing and mmWave wide spectrum deliver high data rates to enable video-centric, latency-sensitive applications such as remote surgery, AR/VR and industrial automation. To render these use cases possible, the reference documents for the IOWN Global Forum APN architecture allow implementers of the reference designs to address new requirements for handling capacity, reliability and availability in next generation networks.

Reference Implementation Model (RIM) for the Area Management Security Use Case. The RIM-TF oversees the Cyber-Physical System (CPS) Use Case and Artificial Intelligence-Integrated Communications (AIC) Use Case defined in 3.2.4 of the IOWN Global Forum System and Technology Outlook Report issued April 14, 2021. The RIM-TF produced reference document describes an IOWN Global Forum end-to-end system that will meet the requirements of a target use case. The reference design also aims to demonstrate many of the benefits of the IOWN Global Forum architecture and technology over today’s cloud-based implementations.

The reference documents will be introduced in detail at the next IOWN Global Forum Member Meeting, a virtual event scheduled for Feb. 15-17, 2022. Membership in IOWN Global Forum is required for attendance.

https://www.iowngf.org

IOWN Global Forum adds 23 new members

The Innovative Optical and Wireless Network Global Forum announced 23 new member companies supporting its ambition to developn an all-photonics network and data-centric infrastructure. The organization now includes over 70 companies, academic and research institutes from Asia, North America and Europe that are committed to developing an all-optical approach to data sensing, collection, storage, processing and distribution.

“We were delighted to greet members old and new and share how far IOWN Global Forum has come in such a short time,” said Dr. Kawazoe, President and Chairperson of the forum. “The robust turnout reaffirmed our commitment to define an all-photonics network and a next-generation distributed computing architecture by 2030.”


New IOWN members include:

Sponsor Members: KIOXIA Corp., PwC Japan and Samsung Electronics

General Members: Advantest Corp., AIOCORE, DIC Corp., Hitachi Ltd., Honda Tsushin Kogyo Co., Ltd., IBIDEN Co., Ltd., I-PEX Inc., MIRISE Technologies Corp., OKI Electric Industry, Peers Co., Ltd., Sumitomo Corp. Kyushu Co., Ltd., Toyo Ink SC Holdings Co., Ltd. and UNIADEX Ltd.

Academic/Research Members: The National Institute of Advanced Industrial Science and Technology, the National Research Institute for Earth Science and Disaster Resilience, the Photonics Electronics Technology Research Association, the Photonics Industry & Technology Development Association and Tohoku University.

https://www.iowngf.org

NTT establishes IOWN Integrated Innovation Center

NTT Corporation will establish an "IOWN Integrated Innovation Center" to advance R&D for optical and 6G wireless networks. Hidehiro Tsukano, Corporate Adviser of NTT Advanced Technology Corporation, will be appointed as the Head of the IOWN Integrated Innovation Center.The IOWN concept announced in May 2019 aims to develop an innovative network and information processing platform using photonics-electronics convergence technologies in 2030. NTT...

NTT and Fujitsu focus on silicon photonics manufacturing

 NTT Corporation (NTT) and Fujitsu Limited announced a strategic alliance focused on innovations for the “Realization of a Sustainable Digital Society,” including the Innovative Optical and Wireless Network (IOWN) initiative.A key focus is on establishing photonics-electronics convergence manufacturing technology. Key points:NTT Electronics Corporation (NEL), which develops hardware products utilizing NTT R&D’ s advanced device technologies,...


Monday, October 25, 2021

IOWN Global Forum adds 23 new members

The Innovative Optical and Wireless Network Global Forum announced 23 new member companies supporting its ambition to developn an all-photonics network and data-centric infrastructure. The organization now includes over 70 companies, academic and research institutes from Asia, North America and Europe that are committed to developing an all-optical approach to data sensing, collection, storage, processing and distribution.

“We were delighted to greet members old and new and share how far IOWN Global Forum has come in such a short time,” said Dr. Kawazoe, President and Chairperson of the forum. “The robust turnout reaffirmed our commitment to define an all-photonics network and a next-generation distributed computing architecture by 2030.”


New IOWN members include:

Sponsor Members: KIOXIA Corp., PwC Japan and Samsung Electronics

General Members: Advantest Corp., AIOCORE, DIC Corp., Hitachi Ltd., Honda Tsushin Kogyo Co., Ltd., IBIDEN Co., Ltd., I-PEX Inc., MIRISE Technologies Corp., OKI Electric Industry, Peers Co., Ltd., Sumitomo Corp. Kyushu Co., Ltd., Toyo Ink SC Holdings Co., Ltd. and UNIADEX Ltd.

Academic/Research Members: The National Institute of Advanced Industrial Science and Technology, the National Research Institute for Earth Science and Disaster Resilience, the Photonics Electronics Technology Research Association, the Photonics Industry & Technology Development Association and Tohoku University.

https://www.iowngf.org

NTT establishes IOWN Integrated Innovation Center

NTT Corporation will establish an "IOWN Integrated Innovation Center" to advance R&D for optical and 6G wireless networks. Hidehiro Tsukano, Corporate Adviser of NTT Advanced Technology Corporation, will be appointed as the Head of the IOWN Integrated Innovation Center.The IOWN concept announced in May 2019 aims to develop an innovative network and information processing platform using photonics-electronics convergence technologies in 2030. NTT...

NTT and Fujitsu focus on silicon photonics manufacturing

 NTT Corporation (NTT) and Fujitsu Limited announced a strategic alliance focused on innovations for the “Realization of a Sustainable Digital Society,” including the Innovative Optical and Wireless Network (IOWN) initiative.A key focus is on establishing photonics-electronics convergence manufacturing technology. Key points:NTT Electronics Corporation (NEL), which develops hardware products utilizing NTT R&D’ s advanced device technologies,...

NTT charts a roadmap to the future IOWN All-Photonics Network

NTT outlined a technology roadmap for its Innovative Optical and Wireless Network (IOWN) vision, which was first announced in May 2019. IOWN has three technical elements: All Photonics Network, Digital Twin Computing, and Cognitive Foundation. The roadmap calls for four technical directions: (1) Full-Stack Communication Acceleration (Layer 4/Layer 3 Acceleration: CY2021, Technology for massive optical/wireless capacity: CY2023) In order to...

Sunday, April 19, 2020

NTT charts a roadmap to the future IOWN All-Photonics Network

NTT outlined a technology roadmap for its Innovative Optical and Wireless Network (IOWN) vision, which was first announced in May 2019.

IOWN has three technical elements: All Photonics Network, Digital Twin Computing, and Cognitive Foundation. The roadmap calls for four technical directions:

(1) Full-Stack Communication Acceleration (Layer 4/Layer 3 Acceleration: CY2021, Technology for massive optical/wireless capacity: CY2023)

In order to take full advantage of the large capacity of IOWN All-Photonics Network, NTT will develop a new accelerated Layer 4/Layer 3 communication method that is less subject to the distance-related throughput degradation than TCP/IP. As the new communication method will lead to the explosive growth of data traffic, we will also develop a new network architecture and technology for massive optical and wireless capacity.

(2) Data-Centric Communication and Computing (CY2021)

NTT will develop Cognitive Foundation Data Hub (CF Data Hub), which enables nodes (sensor nodes or AI analysis nodes) to instantly exchange or share large data objects. By leveraging CF Data Hub as a central exchange point that faces multiple types of networks and computing infrastructures, IT infrastructures will shift from the conventional IP-centric paradigm to a new data-centric paradigm.

(3) Computing Scaling Across Device, Edge, and Center Cloud (CY2021)

NTT will develop a high-speed distributed computing technology that leverages ultra-broadband and low-latency communication on IOWN All-Photonics Network to realize a new cloud computing infrastructure that seamlessly spans multiple data centers.

(4) Sustainable Growth with Energy Efficiency (CY2023)

NTT will develop an architecture and technologies for photonic disaggregated computing, which significantly improves energy efficiency by replacing electronic data bus for inter-module data transfer with photonic data plane. After that, shift from electronic to photonic will also be applied to inter-package and inter-device interconnections on a step by step basis, which will eventually lead to a quantum leap improvement in energy efficiency.

https://www.ntt.co.jp/news2020/2004e/200416a.html