Inovação e gerenciamento de programa sincronizado e colaborativo para novos programas
Aeroespacial e Defesa
Inovação e gerenciamento de programa sincronizado e colaborativo para novos programas
Explorar o SetorAutomotivo e Transporte
Integration of mechanical, software and electronic systems technologies for vehicle systems
Explorar o SetorProdutos de Consumo e Varejo
A inovação de produtos através do gerenciamento eficaz de formulações, embalagens e processos de manufatura integrados
Explore o SetorEletrônicos e Semicondutores
O desenvolvimento de novos produtos aproveita dados para melhorar a qualidade e a lucratividade e reduz custos e tempo de introdução no mercado
Explore o SetorEnergia e Utilidades
Supply chain collaboration in design, construction, maintenance and retirement of mission-critical assets
Explorar o SetorHeavy Equipment
Construction, mining, and agricultural heavy equipment manufacturers striving for superior performance
Explore IndustryMáquinas Industriais e Equipamento Pesado
Integration of manufacturing process planning with design and engineering for today’s machine complexity
Explorar o SetorInsurance & Financial
Visibility, compliance and accountability for insurance and financial industries
Explore IndustryMarinha
Inovação na construção naval para reduzir de maneira sustentável o custo do desenvolvimento de frotas futuras
Explore o SetorMedia & Telecommunications
Siemens PLM Software, a leader in media and telecommunications software, delivers digital solutions for cutting-edge technology supporting complex products in a rapidly changing market.
Explore IndustryDispositivos Médicos e Farmacêuticos
“Inovação de produtos personalizados" através da digitalização para atender a demandas do mercado e reduzir custos
Explore o SetorSmall & Medium Business
Remove barriers and grow while maintaining your bottom line. We’re democratizing the most robust digital twins for your small and medium businesses.
Explore IndustryNetwork Design in the MBSE Digital Thread
Network Design in the MBSE Digital Thread
In this on-demand webinar, we will show you how you can use a network design tool to smoothly derive a validated, safe and highly resource-optimized network design.
The vehicle E/E architecture contains distributed functions defined over a vehicle topology. Once the system functions are defined, the next stage is to distribute them across the vehicle. To fulfill their intended purpose, communication is needed between those functions. A myriad of different networks within one vehicle are used to achieve this. Common communication protocols used on those networks are CAN, LIN, FlexRay, or Ethernet. Each of those protocols has unique capabilities and comes with a distinct degree of configuration complexity. Harmonizing the functional system design across various technical networked options is a non-trivial task. Often functions are spread out across those networks and have to communicate across individual network boundaries.
It is extremely challenging to design these networks and errors can lead to sub-optimal resource utilization and costly vehicle production. At worst, a wrong network design will become a source for very hard to find errors and a cause for recalls, huge integration efforts, unstable electronics impacting brand reputation, or even endanger human life.
Siemens’ Capital tool suite has the most sophisticated network design tool for the automotive market. In this on-demand webinar, we will show you how you can use it to smoothly derive a validated, safe and highly resource-optimized network design.
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In this on-demand webinar, we will show you how you can use a network design tool to smoothly derive a validated, safe and highly resource-optimized network design.
The vehicle E/E architecture contains distributed functions defined over a vehicle topology. Once the system functions are defined, the next stage is to distribute them across the vehicle. To fulfill their intended purpose, communication is needed between those functions. A myriad of different networks within one vehicle are used to achieve this. Common communication protocols used on those networks are CAN, LIN, FlexRay, or Ethernet. Each of those protocols has unique capabilities and comes with a distinct degree of configuration complexity. Harmonizing the functional system design across various technical networked options is a non-trivial task. Often functions are spread out across those networks and have to communicate across individual network boundaries.
It is extremely challenging to design these networks and errors can lead to sub-optimal resource utilization and costly vehicle production. At worst, a wrong network design will become a source for very hard to find errors and a cause for recalls, huge integration efforts, unstable electronics impacting brand reputation, or even endanger human life.
Siemens’ Capital tool suite has the most sophisticated network design tool for the automotive market. In this on-demand webinar, we will show you how you can use it to smoothly derive a validated, safe and highly resource-optimized network design.