Integrated Multi-Bus Communication Test Solution

With the rapid development of next-generation electronic systems, multiple networks and bus signals have become a common trend. In this context, system designers need comprehensive tools to simulate, monitor, and verify communications across diverse bus protocols. Traditional testing approaches are often fragmented and insufficient for complex multi-bus applications. The Integrated Multi-Bus Communication Test Solution provides a highly integrated platform to perform comprehensive testing and verification of multi-network, multi-bus, and multi-signal communication systems, offering technical support for system design, development, and validation.

The system supports multiple advanced bus protocols, including ARINC664, FC-AE, FlexRay, and AVB, enabling data communication and gateway conversion between different buses. It facilitates the design, simulation, and verification of complex business and data flows. By simulating various communication scenarios on the bus, designers can evaluate device interface functionality, communication reliability, and overall system robustness, reducing the risk and cost of downstream testing.

In terms of application, the system can establish prototype networks for next-generation buses, allowing designers to explore the feasibility of new bus applications through simulation and stimulation testing. It also provides multi-bus test and verification capabilities, supporting real-time connection to target devices to assess data communication and interface functionality. Through data acquisition testing, the platform can collect communication data without interfering with the actual device network, evaluating the performance and stability of the entire system. Additionally, it supports field testing and verification, allowing rapid deployment of interface simulation and bypass data acquisition setups to replicate real-world scenarios.

Based on the BEST bus simulation and test platform, this solution offers multiple advantages. It can stimulate and collect bus data to determine whether transmission performance meets design specifications; support ICD-based communication testing; provide natural-language-like automated test case editing and execution, with automatic report generation to improve efficiency; and offer flexible gateway conversion, enabling evaluation of communication across different bus nodes.

Functionally, the platform provides comprehensive configuration management, including node property settings, payload rules, monitoring control binding, data storage attributes, and gateway conversion rules. It supports both static and dynamic testing, enabling lossless interface data acquisition and verification of bus communication functionality. Python-based automated testing is supported, generating detailed reports and logs while allowing users to manage and edit test cases. ICD file import/export and online parsing enable real-time monitoring of engineering values and data visualization.

This solution is widely applicable to bus system design departments in aerospace, aviation, rail transportation, and electric vehicle industries. It supports system simulation and validation of new bus technologies, laboratory testing, interface verification, and field system testing, significantly improving development efficiency and overall system reliability.