NEC Develops High-speed and High-precision Object Detection Acceleration Technology for Edge Equipment

TOKYO, Dec 1, 2021 - (JCN Newswire via SEAPRWire.com) - NEC Corporation (TSE: 6701) today announced the development of a "gradual deep learning-based object detection technology" that enables efficient and high throughput object detection for video analytics while maintaining detection accuracy.This technology enables up to eight times the processing speed of object detection for large volumes of images, even on edge devices with limited processing capacity.NEC aims to commercialize this technology in fiscal 2022, following further research and development.Video analytics are expected to be utilized for a wide range of applications, such as analyzing camera images of vehicles at intersections, optimizing traffic control, and analyzing camera images of stores and warehouses to detect intrusion or to optimize facility management.To perform these video analytics in real time, it is ideal to process them on an edge device near a sensor, such as a camera.However, because cooling is difficult to manage and electricity consumption is restricted in edge devices, high-performance processors such as GPUs used in high-performance servers are not available, and processing capacity is constrained.In video analytics, object detection software that utilizes deep learning (hereinafter "object detection AI model") performs object detection processing in order to find the object to be analyzed from images captured by a cameraSince highly accurate object detection AI models have a large amount of operations though, it is difficult for edge devices to process a large amount of images due to constraints on processing capacity. If the amount of operations for a high-speed object detection AI model is reduced, for example, the accuracy declines and the recognition accuracy requirements for image analysis cannot be met.Application of NEC's newly developed gradual deep learning-based object detection technology enables efficient, high-speed, and high-precision detection of subjects from a large amount of images, even in an edge device with limited processing capacity, and enables simultaneous processing of images from multiple cameras in real time.Technology Features1. High-speed, high-precision detection at the same timeThis technology combines an object detection AI model that is high-speed, but is only roughly accurate, with another object detection AI model that is highly accurate, but computationally complex. This combination enables efficient processing of multiple images and results in high-speed, high-precision detection.First, a high-speed object detection AI model detects multiple objects quickly, but with rough accuracy, then the detected results are processed together with a high-precision object detection AI model to gradually refine the detected objects.As a result, in an example of detecting a car license plate from a camera image, processing speed was approximately eight times faster than when using an object detection AI model with high accuracy alone, while maintaining detection accuracy*.2. Compatible with various detection targets, detection methods, and AI chipsThis technology is compatible with a diverse range of object detection processes according to detection targets, such as people, vehicles and car license plates, without being limited to specific detection targets and specific processing methods.In addition, the technology's application is not limited to a specific AI chip. By taking advantage of the fact that AI chips have a large number of computing resources in common, the technology makes effective use of the internal computing power of chips.Going forward, NEC aims to enhance the safety, security, and convenience of society by expanding the use of video analytics technologies to a wide variety of applications.*Speed varies depending on the device used, the type of detection engine and the quality of image data.About NEC CorporationNEC Corporation has established itself as a leader in the integration of IT and network technologies while promoting the brand statement of "Orchestrating a brighter world." NEC enables businesses and communities to adapt to rapid changes taking place in both society and the market as it provides for the social values of safety, security, fairness and efficiency to promote a more sustainable world where everyone has the chance to reach their full potential. For more information, visit NEC at https://www.nec.com. Copyright 2021 JCN Newswire. All rights reserved. (via SEAPRWire)

中信国际电讯CPC采用备受行业认可的Cloudian对象储存平台推出SmartCLOUD™ Object Storage 对象储存服务

HONG KONG AND SAN MATEO, Calif., Mar 18, 2021 - (亚太商讯 via SEAPRWire.com) - 中信国际电讯集团有限公司(香港交易所股份代号:1883)全资拥有的中信国际电讯(信息技术)有限公司(「中信国际电讯 CPC」)与Cloudian 欣然宣布,中信国际电讯 CPC 透过Cloudian HyperStore®对象储存技术平台推出全新SmartCLOUD™ Object Storage服务 ,为企业客户提供具勒索软件(ransomware)保护、存盘和大数据管理功能的备份服务。作为获得VMware Cloud Verified认证以及VMware最高级别 —“Principal”级云服务供应商,中信国际电讯 CPC SmartCLOUD™ Object Storage 对象储存服务,进一步为企业提供更多元化的云端解决方案,服务不但全面支持VMware技术托管环境,更让客户享受由Cloudian技术带来的优势,包括无限扩展的储存空间、以及业界优质的数据安全保护,达至更理想的成本效益。现今不少企业需要储存及管理大量非结构性数据,包括影片、图像和多媒体内容,如何有效安全处理海量数据变得越来越困难。而数据亦成为日趋重要的企业战略资产,容易受到勒索软件和其他外部网络攻击。因此,中信国际电讯 CPC透过VMware云供应商合作伙伴计划,与Cloudian达成合作协议。结合Cloudian强大兼现代化的储存基础建设,持续为客户提供优化的数据储存服务,既满足客户对数据保护及管理的需求,同时符合不同的法规和合规性要求。中信国际电讯 CPC SmartCLOUD™ Object Storage 对象储存服务经过精心设计,多方满足现代企业的需求:强化的安全数据保护- 充分利用Object Lock对象锁定功能进行异地数据备份,保护数据免受勒索软件威胁,并透过创建不可修改的数据副本,即使在遭受攻击时,亦能快速有效恢复数据;配合法规的数据存盘- 满足客户的法规和合规性要求(例如审计等),确保相关数据储存在指定期间及地区之系统内;无缝存取数据- 可无缝连接多云平台与兼容S3制式的应用程序,减低设置成本和增加便利性;高容量大数据管理- 为庞大而复杂的数据集提供可高度扩展兼符合成本效益的储存服务,有助快速处理人工智能、机器学习和其他分析应用程序等高级元数据; 多网络连接选项- 支持通过互联网、VPN(例如MPLS)、点对点租用专线(point-to-point leased line)的连接,以及对象储存平台部署于客户相同的数据中心 (楼内线直连) 和SmartCLOUD™云服务中心的交互连接;简易收费模式 - 计算基本数据储存和输出费用;并提供免费(API) 应用程序进行存储调用Cloudian屡获殊荣的HyperStore® 对象储存平台除具备无限扩展能力外,还配备多项企业级功能:全面native S3兼容- 确保能与以S3制式为基础的程序无缝连接,扩展生态系统;高等级安全防护规格- 备有 Object Lock对象锁定功能、安全外壳协议(Secure Shell)、RBAC / IAM访问控制、静态数据AES-256服务器端加密和SSL数据传输加密技术等,完全符合更严格国际安全认证的要求;支援多租户 (Multi-tenancy) 平台- 技术支持用户在共享资源平台上按需使用储存资源,并提供安全及自我管理储存能力; 跨地域管理- 透过一站式窗口,进行跨地域管理储存工作。「经过严格考虑各种对象储存解决方案后,我们最终选择了Cloudian作为合作伙伴。除了因为Cloudian可与VMware技术无缝连接外,Cloudian还拥有企业级对象储存平台,在对象锁定技术上更具丰富经验,特别在跨地域管理、支持多租户平台、高级安全防护规格等各方面尽展优势 。」中信国际电讯CPC产品开发及管理部高级副总裁蓝泰来强调:「随着数据成为现代企业的命脉,各地区对数据管理的法规和合规性要求日益严格,全新的SmartCLOUD™ Object Storage对象储存解决方案,配备更突出的高扩展能力,具有可管理性、安全性,弹性和经济性,能为客户提供高品质体验同时满足现代企业的需求。」Cloudian亚太区副总裁Brian Burns表示:「中信国际电讯CPC在推动企业善用新技术来扩大竞争优势,增加策略敏捷性和迅速响应市场需求等方面一直处于领先地位。我们期待能帮助中信国际电讯CPC继续履行强大的客户承诺,并进一步扩展其业务。」中信国际电讯CPC简介中信国际电讯(信息技术)有限公司(「中信国际电讯CPC」)是中信国际电讯集团有限公司的全资附属公司(香港交易所股份代号:1883),公司一直矢志透过先进技术及旗舰解决方案,包括TrueCONNECT™专用网络服务、TrustCSI™信息安全解决方案、DataHOUSE™全球统一云数据中心解决方案及SmartCLOUD™云端运算解决方案,为全球跨国企业提供可高度扩展的客制化方案,以满足他们特定的ICT需求。中信国际电讯CPC的服务遍及全球,不论在东、西方地区均有在地优势,成为领先的「服务在地,连接全球」的信息技术方案伙伴,真正实践了「创新‧不断」的服务理念。作为数码世界赋能者,公司致力推动数码化,在主要市场积极发展信息技术,将人工智能、扩增实境、大数据,物联网和其他尖端新兴技术的强大潜力转化为企业客户的实际价值,持续为他们的业务发展带来更高的生产力、灵活性及成本效益,最终达致全球数码化。作为香港首个获得ISO 9001、14001、20000、27001 及27017 ICT服务相关认证的服务供应商之一,中信国际电讯CPC业务版图覆盖全球,包括部份亚洲、欧洲及非洲高增长市场的地区;超过160个网络服务据点、18个云服务中心、30个以上的数据中心及2个全天候的安全运作中心,承诺给予客户最优质的服务。请浏览 www.citictel-cpc.com 获取更多信息。Cloudian简介Cloudian是行业内最盛名部署对象存储系统的独立供应商,具有业界最先进的S3兼容性和广泛的合作伙伴生态系统。其屡获殊荣的旗舰解决方案HyperStore®,能为数据中心提供无限的可扩展性和具备与云端系统相似的技术性、灵活性和经济效益。 Cloudian的全球数据结构体系,使企业可以在统一的平台上跨地点(本地和公共云)无缝地进行储存、查找、保护对象和文件数据传输。请浏览 cloudian.com 获取更多信息。传媒查询:Rowena Leung中信国际电讯CPCrowena.leung@citictel-cpc.com+852-2170-7536Cloudian传媒查询:Jordan Tewell10Fold Communicationscloudian@10fold.com+1-415-666-6066 Copyright 2021 亚太商讯. All rights reserved. (via SEAPRWire)

CITIC Telecom CPC Launches SmartCLOUD Object Storage Solution Based on Cloudian Object Storage Platform

HONG KONG AND SAN MATEO, Calif., Mar 18, 2021 - (ACN Newswire via SEAPRWire.com) - CITIC Telecom International CPC Limited ("CITIC Telecom CPC"), a wholly owned subsidiary of CITIC Telecom International Holdings Limited (SEHK:1883), and Cloudian today announced that CITIC Telecom CPC is introducing SmartCLOUD(TM) Object Storage solution based on Cloudian's HyperStore object storage platform. The offering, which will be part of CITIC Telecom CPC's SmartCLOUD(TM) solutions portfolio, includes backup with ransomware protection, archiving and big data management. As a VMware Cloud Provider Principal Partner with VMware Cloud Verified status, CITIC Telecom CPC's SmartCLOUD(TM) Object Storage solution further extends the array of service offerings running on a VMware-managed environment. CITIC Telecom CPC's customers will also benefit from Cloudian's limitlessly scalability, industry-leading security and cost effectiveness.Enterprises face a growing challenge of efficiently storing and managing large volumes of unstructured data, including video and other multimedia content. At the same time, as data has become an increasingly strategic asset, it is also increasingly vulnerable to ransomware and other cyber attacks. As a result, CITIC Telecom CPC turned to Cloudian - via the VMware Cloud Provider Program - to provide a robust, modern storage foundation that would enable the company to continue delivering value-added services that address its customers' evolving data protection and management needs, including meeting various regulatory and compliance requirements. CITIC Telecom CPC's SmartCLOUD(TM) Object Storage solution includes:Ultra-secure data protection - Offsite data backup with Object Lock for ransomware protection that creates an immutable data copy for fast, easy recovery of data in the event of an attack.Data archive for compliance needs- Addresses customers' regulatory and compliance requirements, including audits, with the ability to make data unchangeable for a set period of time.Seamless accessibility - Customers gain multi-cloud accessibility to datasets running on S3-based applications for greater convenience with lower overhead.Scalable big data management- Provides highly scalable, cost-effective storage for large datasets, with advanced metadata that facilitates artificial intelligence, machine learning and other analytics applications.Great variety of connectivity options- Supports connection with Internet, VPN (such as MPLS), point-to-point leased line and cross-connection within the same datacenter and SmartCLOUD(TM) Cloud Services Centers.Simple billing model - Basically only includes storage and data transfer out; API call for data access is free of charge.In addition to limitless scalability, benefits of Cloudian's award-winning HyperStore object storage include:Fully native S3 compatibility - Ensures seamless integration with the expanding ecosystem of S3-based applications.Advanced security- Including Object Lock-based data immutability, secure shell, RBAC/IAM access controls, AES-256 server-side encryption for data at rest and SSL for data in transit, as well as certification with the most rigorous international security requirements.Multi-tenancy - Supports for secure, self-managed storage within a shared platform.Geo-distribution - Easy to manage storage across multiple locations, all from a single pane of glass."After considering various object storage solutions, we selected Cloudian for its rich feature set-particularly its geo-distribution, multi-tenancy and security-and its seamless integration with VMware," said Taylor Lam, Senior Vice President, Product Development & Management at CITIC Telecom CPC. "With the rising regulatory and compliance stringency on data management, we're excited about the new SmartCLOUD(TM) Object Storage solution for delivering a cost-effective storage service with enhanced data protection and management to our customers.""CITIC Telecom CPC has been at the forefront in enabling enterprises to leverage new technologies to drive greater competitive advantage, strategic agility, and faster time to market," said Brian Burns, Vice President, Asia Pacific, at Cloudian. "We look forward to helping CITIC Telecom CPC continue to deliver on this strong customer commitment and further grow its business."About CITIC Telecom CPCWe are CITIC Telecom International CPC Limited ("CITIC Telecom CPC"), a wholly owned subsidiary of CITIC Telecom International Holdings Limited (SEHK: 1883), serving multinational enterprises the world over by addressing their specific ICT requirements with highly scalable tailored solutions built upon our flagship technology suites, comprising TrueCONNECT(TM) private network solutions, TrustCSI(TM) information security solutions, DataHOUSE(TM) cloud data center solutions, and SmartCLOUD(TM) cloud computing solutions.As a leading Global Local ICT Solutions Partner with worldwide footprint across East to West and native presence, we truly live our motto, "Innovation Never Stops." Being a preferred Digital Society Enabler, we lead our key markets at the forefront of pioneering ICT development, embracing AI, AR, Big Data, IoT, and other cutting-edge emerging technologies to transform technical potential into real-world value for our customers, helping them achieve higher productivity, agility, cost-efficiency, and ultimately, Digital Globalization.As one of the first managed service providers in Hong Kong to achieve ISO 9001, 14001, 20000, 27001, and 27017 ICT-related certifications, CITIC Telecom CPC delivers on our superior quality commitment through a broad global self-managed infrastructure encompassing some of the highest growth markets in Asia, Europe and Africa, with over 160 points of presence, 18 Cloud service centers, 30+ data centers, and two dedicated 24x7 Security Operations Centers.For more information please visit www.citictel-cpc.com.About CloudianCloudian is the most widely deployed independent provider of object storage systems, with the industry's most advanced S3 compatibility and an extensive partnership ecosystem. Its award-winning flagship solution, HyperStore, provides limitless scalability and cloud-like technology, flexibility, and economics in the data center. Cloudian's global data fabric architecture enables enterprises to store, find and protect object and file data seamlessly across sites, both on-premises and in public clouds, within a single, unified platform. Learn more at cloudian.com.CITIC Telecom CPC Media ContactRowena LeungCITIC Telecom International CPC Limitedrowena.leung@citictel-cpc.com+852-2170-7536Cloudian Media ContactJordan Tewell10Fold Communicationscloudian@10fold.com+1-415-666-6066 Copyright 2021 ACN Newswire. All rights reserved. (via SEAPRWire)

WIMI’s Dr. Guo Songrui: Holographic technology and light fields

BEIJING, Oct 19, 2020 - (ACN Newswire) - Holography comes from the Latin vocabulary, and its meaning is: all, compound. According to the current common knowledge in mainstream technology filed, holography specifically refers to "holographic technology", which is a technology for reproducing diffracted light emitted by objects. Holographic technology uses the principle of interference to record the light wave messages of the object, and uses the principle of diffraction to reproduce the light wave messages of the object, helping users to store all the light information of the object. Thus, the observer can observe the different positions of the object in all directions, and the stored light information records all the light distribution in the three-dimensional space. Therefore, holographic technology is also a kind of optical storage and reproduction technology.The earliest holographic technology was discovered by Denise Gabor (1900-1979), a Hungarian physicist, who won the Nobel Prize in Physics in 1971. However, this technology was first used in electron microscopes to record and display electronic holograms. The earliest use in the field of optics was after the invention of laser technology in 1960.The holographic recording is different from ordinary photography. An ordinary camera only records the intensity of the object's light field. The hologram records the intensity of the reference light and the object light after interference. When it needs to be reproduced, it is only necessary to use the reference light to show the amplitude of the object light that fully characterizes the object information.The hologram production process uses a laser. The laser beam is strictly split 1:1 by a beam splitter. One beam of light shines on the surface of the object to be photographed, and the other beam directly shines on the photosensitive film (holographic dry plate). Moreover, this light is also called the reference beam. When the object beam is reflected by the object, its reflected beam is also irradiated on the film, completing the hologram shooting process.There are several major characteristics of holograms: 1. Omni-directional information recording. The holographic picture records the omnidirectional and comprehensive illumination information of the object, so that the object can be observed from different angles during observation. 2. Learning the whole picture from the parts. When part of the holographic picture is damaged, the whole picture of the object can still be seen from the remaining part. 3. The amount of stored information is huge, and multiple holographic photos can be recorded hierarchically on the holographic film. Moreover, they will not interfere with each other when displaying the picture.Based on the characteristics of holograms mentioned above, the application prospects of holograms are quite broad, but it is not an easy task to collect light fields to form a hologram in the early stage of technological development. Early technical methods were either expensive, such as using the aforementioned laser to irradiate objects, or using camera arrays; or collecting information was limited and inefficient, for example, the light field acquisition systems based on a fixed turntable. After 2000, with the development of digital camera shooting technology and light field shooting technology gradually attracted the attention of researchers, the light field collection technology of the single camera came into being. Until now, the light field collection technology has truly reached the civilian level.The common light field shooting techniques are divided into two categories: integral imaging and aperture coding imaging.Integral imaging is achieved by adding a microlens array or a micromirror array in front of the sensor to realize the collection of images of the light field viewpoints in different directions. There are more well-known integral imaging devices, including the lens array lens launched by Adobe, the Pelican lens array camera on the mobile phone, the Lytro light field camera, the R series light field camera of Raytrix, and so on.The shooting based on the compressed light field is to add an optical mask between the camera lens and the sensor to achieve compression encoding of the light entering the camera aperture. The more well-known equipment is the prototype of the light field camera developed by Babacan et al. They proposed to use the method of encoding mask and programmed aperture to capture light field viewpoints in different directions, which can obtain light field with high spatial resolution.The microlens array has the advantages of low cost and small size, but its disadvantage is that the image resolution loss is serious. The coding imaging technology has the advantages of small size, no loss of resolution, but its advantages are low signal-to-noise ratio and low light field quality.From the perspective of the development of light field cameras, encoding-based light field acquisition equipment breaks the mutual restriction between angular resolution and viewpoint image resolution. The redundant information in the light field can be removed through machine learning, and the light field can be restored from a small amount of information. In the future 4K era, the advantage of not losing resolution will be the focus of this technology.In the near future, when light field acquisition equipment develops to a sufficiently high resolution, as well as has fast enough acquisition speed, and cheap, the light field data, as a kind of rich media data, is stored in a large amount of non-overlapping data that can be passed through a single point. The complete picture of data information will become a new data treasure house for data scientists to research and mine. In particular, unexpected achievements may be obtained in many fields, such as holographic recognition, holographic payment, holographic authentication, and so on.Guo Songrui:Doctor of Computer Science and Technology Engineering from Hunan University, studied mixed reality and augmented reality technology at the State Key Laboratory of Scientific Computing of the Chinese Academy of Sciences, and participated in the research and development of multiple key projects.About WIMI Hologram Cloud Inc.WiMi Hologram Cloud, Inc. (NASDAQ: WIMI), whose commercial operations began in 2015, operates an integrated holographic AR application platform in China and has built a comprehensive and diversified holographic AR content library among all holographic AR solution providers in China. Its extensive portfolio includes 4,654 AR holographic contents. The company has also achieved a speed of image processing that is 80 percent faster than the industry average. While most peer companies may identify and capture 40 to 50 blocks of image data within a specific space unit, WiMi collects 500 to 550 data blocks. For more information, please visit http://ir.wimiar.com/.WIMI Hologram Cloud Inc.Name: Tim WongE-mail: pr@wimiar.comTele: +86 10 89913328 Copyright 2020 ACN Newswire. All rights reserved. www.acnnewswire.com

WIMI’s Dr. Guo Songrui: The development and application prospect of holographic technology: light field collection

BEIJING, China, Oct 15, 2020 - (ACN Newswire) - Holography comes from the Latin vocabulary, and its meaning is: all, compound. According to the current common knowledge in mainstream technology filed, holography specifically refers to "holographic technology", which is a technology for reproducing diffracted light emitted by objects. Holographic technology uses the principle of interference to record the light wave messages of the object, and uses the principle of diffraction to reproduce the light wave messages of the object, helping users to store all the light information of the object. Thus, the observer can observe the different positions of the object in all directions, and the stored light information records all the light distribution in the three-dimensional space. Therefore, holographic technology is also a kind of optical storage and reproduction technology.The earliest holographic technology was discovered by Denise Gabor (1900-1979), a Hungarian physicist, who won the Nobel Prize in Physics in 1971. However, this technology was first used in electron microscopes to record and display electronic holograms. The earliest use in the field of optics was after the invention of laser technology in 1960.The holographic recording is different from ordinary photography. An ordinary camera only records the intensity of the object's light field. The hologram records the intensity of the reference light and the object light after interference. When it needs to be reproduced, it is only necessary to use the reference light to show the amplitude of the object light that fully characterizes the object information.The hologram production process uses a laser. The laser beam is strictly split 1:1 by a beam splitter. One beam of light shines on the surface of the object to be photographed, and the other beam directly shines on the photosensitive film (holographic dry plate). Moreover, this light is also called the reference beam. When the object beam is reflected by the object, its reflected beam is also irradiated on the film, completing the hologram shooting process.There are several major characteristics of holograms: 1. Omni-directional information recording. The holographic picture records the omnidirectional and comprehensive illumination information of the object, so that the object can be observed from different angles during observation. 2. Learning the whole picture from the parts. When part of the holographic picture is damaged, the whole picture of the object can still be seen from the remaining part. 3. The amount of stored information is huge, and multiple holographic photos can be recorded hierarchically on the holographic film. Moreover, they will not interfere with each other when displaying the picture.Based on the characteristics of holograms mentioned above, the application prospects of holograms are quite broad, but it is not an easy task to collect light fields to form a hologram in the early stage of technological development. Early technical methods were either expensive, such as using the aforementioned laser to irradiate objects, or using camera arrays; or collecting information was limited and inefficient, for example, the light field acquisition systems based on a fixed turntable. After 2000, with the development of digital camera shooting technology and light field shooting technology gradually attracted the attention of researchers, the light field collection technology of the single camera came into being. Until now, the light field collection technology has truly reached the civilian level.The common light field shooting techniques are divided into two categories: integral imaging and aperture coding imaging.Integral imaging is achieved by adding a microlens array or a micromirror array in front of the sensor to realize the collection of images of the light field viewpoints in different directions. There are more well-known integral imaging devices, including the lens array lens launched by Adobe, the Pelican lens array camera on the mobile phone, the Lytro light field camera, the R series light field camera of Raytrix, and so on.The shooting based on the compressed light field is to add an optical mask between the camera lens and the sensor to achieve compression encoding of the light entering the camera aperture. The more well-known equipment is the prototype of the light field camera developed by Babacan et al. They proposed to use the method of encoding mask and programmed aperture to capture light field viewpoints in different directions, which can obtain light field with high spatial resolution.The microlens array has the advantages of low cost and small size, but its disadvantage is that the image resolution loss is serious. The coding imaging technology has the advantages of small size, no loss of resolution, but its advantages are low signal-to-noise ratio and low light field quality.From the perspective of the development of light field cameras, encoding-based light field acquisition equipment breaks the mutual restriction between angular resolution and viewpoint image resolution. The redundant information in the light field can be removed through machine learning, and the light field can be restored from a small amount of information. In the future 4K era, the advantage of not losing resolution will be the focus of this technology.In the near future, when light field acquisition equipment develops to a sufficiently high resolution, as well as has fast enough acquisition speed, and cheap, the light field data, as a kind of rich media data, is stored in a large amount of non-overlapping data that can be passed through a single point. The complete picture of data information will become a new data treasure house for data scientists to research and mine. In particular, unexpected achievements may be obtained in many fields, such as holographic recognition, holographic payment, holographic authentication, and so on.Guo Songrui:Doctor of Computer Science and Technology Engineering from Hunan University, studied mixed reality and augmented reality technology at the State Key Laboratory of Scientific Computing of the Chinese Academy of Sciences, and participated in the research and development of multiple key projects.About WIMI Hologram Cloud Inc.WiMi Hologram Cloud, Inc. (NASDAQ: WIMI), whose commercial operations began in 2015, operates an integrated holographic AR application platform in China and has built a comprehensive and diversified holographic AR content library among all holographic AR solution providers in China. Its extensive portfolio includes 4,654 AR holographic contents. The company has also achieved a speed of image processing that is 80 percent faster than the industry average. While most peer companies may identify and capture 40 to 50 blocks of image data within a specific space unit, WiMi collects 500 to 550 data blocks. For more information, please visit http://ir.wimiar.com/.WIMI Hologram Cloud Inc.Name: Tim WongE-mail: pr@wimiar.comTele: +86 10 89913328 Copyright 2020 ACN Newswire. All rights reserved. www.acnnewswire.com