Technical Overview
Tianjin Shiyi has been deeply engaged in the field of engineering financial management for many years and has built systematic computer software research and development capabilities. The company has successively developed a number of computer software and utility model patents, forming a 'digital-intelligent engineering cost management and control matrix' focused on the entire process of engineering cost, all elements of the construction site, and the integration of business and financial data. Through its independently developed technology middle platform and mobile APP, the company has successfully transformed traditional cost business into precise, efficient and traceable digital application scenarios, building an industry technology barrier that is difficult to replicate.
Model-Price Integrated Construction Project Bill of Quantities Quotation Software
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This software breaks through the bottleneck of traditional cost quotation that relies on fixed quotas and cannot dynamically respond to market fluctuations. By deeply binding bill of quantities pricing with a real-time building materials market price database, it achieves dynamic updating of quotation data and intelligent price comparison, helping to resolve the core pain point that has long plagued the industry: 'quotas lagging behind the market.'
At the technical architecture level, the system adopts multi-source data fusion algorithms, integrating upstream supplier quotations, historical transaction prices and real-time market data, and supports multi-dimensional price trend analysis. The built-in intelligent price comparison engine can automatically complete the entire process of inquiry, quotation and approval, greatly improving the efficiency of project cost compilation while ensuring quotation accuracy, and providing real-time and reliable price data support for engineering investment decisions.
IoT-Based Construction Material Quality Supervision and Traceability System
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The technical innovation of this system lies in achieving full-process digital traceability of construction material quality inspection, filling the business gap of disconnected data in the material acceptance stage of traditional engineering supervision. The system deeply integrates IoT sensing devices with a data management platform, enabling data from material arrival, sampling, testing, report review and sample management to form a complete closed-loop chain, ensuring the authenticity, compliance and traceability of quality data.
In terms of technical architecture, the system adopts a layered permission management model, providing precise functional access control for personnel in different positions, effectively reducing the risks of data leakage and misoperation. The system supports automated generation of test ledgers and Excel data export, and has built-in multi-dimensional data retrieval and early warning mechanisms, providing safe, efficient and traceable digital guarantees for engineering material quality control.
Big Data-Based Real-time Cost Tracking Data Monitoring System
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The technical core of this system lies in building a data closed-loop system with 'cost centers' as the accounting units. Targeting the industry challenges in traditional engineering financial accounting where cost data is scattered, difficult to aggregate and unable to be tracked in real time, it establishes a standardized cost accounting model, standardizes the classification and tagging of cost elements such as direct materials and direct labor, and achieves complete-chain tracking and real-time early warning from cost occurrence to accounting aggregation.
In terms of technical implementation, the system effectively integrates project progress data and financial cost data, and supports automated cleaning and conversion of multiple data source formats. Through the built-in multi-dimensional cost analysis engine, the system can automatically generate dynamic cost reports, realize real-time early warning and precise positioning of cost deviations, and provide reliable data support and intelligent decision-making assistance for enterprise cost structure optimization and production operation decisions.
Digital Construction Site Real-time Monitoring and Management System
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The technical uniqueness of this system lies in achieving unified access to multi-source heterogeneous data on the construction site and cross-system collaborative linkage. The system integrates and analyzes the operating condition data of large machinery such as tower cranes, high-formwork supports and hoists with environmental indicators such as dust, noise and energy consumption, building a trinity digital supervision system of 'construction safety - environmental monitoring - personnel management,' breaking the situation where data from various subsystems on traditional construction sites is isolated.
At the platform capability level, the system integrates IoT sensing device data, multi-brand video surveillance streams and GIS map services, achieving global and spatialized display of on-site situations. The system adopts a custom alarm threshold configuration mechanism and supports real-time warning push through multiple notification channels, effectively improving the rapid response capability and emergency response efficiency to abnormal events on construction sites, and providing complete digital technical support for safety supervision and intelligent management of construction sites.
Patent Achievements
Utility Model Patent: A Mobile Surveying and Setting-Out Device for Construction Project Cost Estimation
Targeting the industry pain point where traditional surveying instruments are prone to tilting and toppling during frequent relocation and re-measurement on construction sites, leading to measurement inaccuracies, Tianjin Shiyi developed this device. It adopts an innovative structure of a triangular support base combined with an underground anchoring assembly. Through spiral soil-locking blades screwed into the soil layer, underground anchoring and positioning are formed, and in conjunction with a rotary fixing plate, 360-degree horizontal rotation is achieved. Under complex working conditions such as soft soil and backfill soil, the device can provide extremely strong stability and durability for high-precision surveying instruments, effectively ensuring the accuracy and safety of project cost setting-out data, and achieving a major technological innovation in on-site measurement for project cost.