Standard 2 / Technical Requirements for Spatial Computing Application Platforms in Commercial Complexes
The spatial computing application platform for commercial and trade complexes is a scenario-based application based on spatial computing fundamentals, content creation, and computing network support. This standard specifies the business, management, and system capabilities and requirements for the spatial computing application platform in commercial and trade complexes.
The business layer encompasses marketing, advertising, navigation, and interactive gaming. The business capability layer encompasses operations management, security management, and content management. System capabilities include compatibility, scalability, lightweight deployment, and reliability, suitable for guiding the design, development, and service of spatial computing application platforms within commercial complexes.
The spatial computing market has broad potential and development space, and is expected to become the next-generation computing platform. In particular, XR terminals are the key terminal entrances in the field of spatial computing. Application scenarios involve various fields such as industry, education, culture and tourism. Spatial computing technology is expected to become an important force in promoting the digital transformation and development of the industry.
As early as 2016, Xvisio Technology positioned itself in the fields of spatial computing and human-computer interaction. Leveraging its proprietary SLAM algorithms, the company has continuously deepened its expertise in spatial computing and sensory interaction. Currently, Xvisio has developed core spatial computing technologies, including high-precision VST virtual-reality fusion, high-precision OST spatial virtual-reality integration, and high-precision spatial anchoring. These technologies have enabled the development of two product lines: the SeerLens® MR terminal and the SeerSense® visual sensing module .
Among them, in the SeerLens®️ MR terminal series, Xvisio Technology's latest SeerLens®️ II B50R Pro is a domestically produced high-performance MR glasses benchmarked against Hololens 2. This product uses a self-developed high-speed and high-precision 4-eye SLAM algorithm in the underlying algorithm, supports multi-modal interaction methods such as voice, gestures, and 6DOF handles, and has the currently advanced domestic spatial computing and perception interaction capabilities. It performs well in many aspects such as positioning accuracy, intelligent recognition, and multi-modal interaction , providing enterprises with high-precision and highly interactive MR products and services.
In less than six months since its launch, this device has gained widespread industry recognition, with hundreds of units delivered. It has also won numerous honors, including the People's Product Ingenuity Award and the Golden Gyro Award for Best Industry AR Glasses.
Domestic high-performance SeerLens® II B50R Pro MR glasses
In the SeerSense® visual sensing module series, the DS80 is an industry-leading intelligent sensing module integrating a binocular depth engine, a time-of-flight (TOF) engine, a visually localized local area mapping (VSLAM) engine, an AI engine, and a video encoding engine . Its design leverages the strengths of passive binocular vision and time-of-flight (TOF) depth sensing capabilities, achieving complementary capabilities. The SeerSense® DS80 integrates three core spatial perception capabilities: VSLAM, depth perception, and AI reasoning. This enables device-level local deployment, significantly lowering the barrier to entry for user development and use.
Currently, Seer Sense® DS80 can be widely used in a wide range of fields such as virtual production, industry, security, medical care, logistics, retail, etc., and is the basic perception unit for spatial computing and AIOT applications.
SeerSense® DS80 Vision Sensor Module
SeerSense® DS80 Application Scenarios
In the future, Xvisio Technology will continue to tackle core spatial computing technologies and accelerate the commercialization of products. It will use domestically produced, high-performance, full-scenario spatial computing products to help customers improve the efficiency and quality of their business scenarios, and contribute to the vigorous development of my country's spatial computing industry.