久久久91-久久久91精品国产一区二区-久久久91精品国产一区二区三区-久久久999国产精品-久久久999久久久精品

最新廣告
關注中國自動化產業發展的先行者!
工業智能邊緣計算2025年會
CAIAC 2025
2025工業安全大會
OICT公益講堂
當前位置:首頁 >> 案例 >> 案例首頁

案例頻道

Industrial Ethernet in the Production of Tomorrow―Requirements―Challenges―Hazards
  • 企業:控制網     領域:工業以太網     行業:其他    
  • 點擊數:2372     發布時間:2004-09-07 14:01:00
  • 分享到:

 

(KUKA Roboter GmbH)  Peter Klüger

1  Foreword

        Do we really need Ethernet in the production of tomorrow? I think, the answer is YES. The production technology of today has to meet the challenge to develop new strategies for a highly flexible, highly available and cost-effective automation technology.

        Through the gradual increase of Ethernet technology in the automation field industrial communication could be standardized considerably to deal with all the requirements of future automation and production strategies. Industrial Ethernet will provide a basis for a decentralized control structure, a standardized real-time and non-real-time communication and a standardized web-based HMI technology and backup/restore mechanism. By using standardized plug&play mechanism and network diagnostics it will be easy to configure and maintain even complex production networks with approx. 10.000 network nodes.

        For modular, heterogeneous control concepts, the performance and openness of the system are determined by the communication technology used. The distribution of control functions can only be managed within a single homogeneous communi-cation network on all levels of production data transfer. An industrial version of Ethernet with a three-level hierarchy will replace conventional field bus technology as the standardized communication technology, from sensors through to the ERP level.

        By using an “open” production network with several communication associations to the “outside world” the customer will have to deal with new and up to now unknown hazards and risks. The interaction of web-based communication, of PC-based controllers and components and of Microsoft operating systems makes the network vulnerable to attacks by viruses, worms or trojans.

        We will need industrial Ethernet to meet the requirements of future production strategies but we have to be very careful in using the network in a secure way. Contents of the presentation:

          Challenges for future market and production strategies in the automotive industry

          Consequences for production

          Consequences for communication

          Hazards and risks

 

2  Market Developments Within the Global Automotive Industry

        What are the challenges for future market and production strategies of the global Automotive Industries (OEMs):

          Shortened model life cycles of car models

          Micro-segmentation:

           ?  Increased diversity of variants

           ?  Niche and cross-over vehicles

          Shorter delivery times

          Production to order

          Reduced life-cycle costs

          Improved product quality

          Integration of e-business strategies

 

        2.1  Shortened Model Cycles

        The model cycles of the global Automotive Industries become shorter and shorter. If in 1990 a car model was designed for a life span of nine years it’s now just a life span of six years. In the future the OEM’s expect even shorter life cycles for a car.

Fig.1  Shortened model cycles of European OEM’s

 

        2.2  Micro-Segmentation of the Market

        The diversity of variants within an automotive compony will increases dramatically because of differentiated customer’s expectations and internal brand policy.

        The automotive industry wants to be present even in niche markets to gain market share and market awareness. This includes new segments, (including ones based on high-volume models), to secure market segments and to aid image development.

Fig.2  Increased diversity of variants within the European OEM’s

Fig.3  Expansion of the range of models

 

        2.3  Shorter Delivery Time

        That is what the customer wants:

        Distribution by market:

          75% of US customers expect to receive their vehicle within 1 week

          61% of EU customers expect to receive their vehicle within 30 days

Distribution by segment:

          50% of customers purchasing series-produced vehicles expect to receive their vehicle no later than 30 days after placing their order

          50% of customers purchasing luxury vehicles expect to receive their vehicle no later than 60 days after placing their order

That is what the customer gets:

          Average delivery time in Europe for series-produced vehicles: 42 days

          At least one in five vehicles is delivered behind schedule

          83% of the delivery time is accounted for by variousinformation processing procedures in the order and planning systems of the OEMs

          Months often pass before the information is passed down the supply chain to the last of the component suppliers

        If we have a detailed look at the delivery time, we can identify three steps from the order of a car, the production of the car and the delivery of the car to the customer:

Fig.4  Time schedule from oder to delivery

 

        83% of the delivery time is accounted for by various information processing procedures in the order and planning systems of the OEMs. It is just 5% of the delivery time that is needed to built the car. The question is

熱點新聞

推薦產品

x
  • 在線反饋
1.我有以下需求:



2.詳細的需求:
姓名:
單位:
電話:
郵件:
主站蜘蛛池模板: 免费影院在线观看| 欧美日韩一区二区综合在线视频| 日韩国产精品99久久久久久| 欧美三级一区| 国产精品久久久久久影视| 91免费在线播放| 精品视频午夜一区二区| 午夜精品久久久久久影视riav| www三级免费| 日韩一级高清| 在线日本三级| 免费看欧美成人性色生活片| 国产视频亚洲| 热re91久久精品国产91热| 国产123| 老子影院午夜伦不卡亚洲| 亚洲一区二区精品| 99草在线观看| 大陆一级毛片免费高清| 中文字幕三区| 亚洲欧美一区二区三区四区 | 人人干视频在线观看| 国产一区二区三区不卡观| 鸥美肥妇特级毛片视频| 播放黄色一级片| 大香焦久久| 国产青青视频| 九九爱这里只有精品| 欧美成人一区二区| 青青久久久国产线免观| 亚洲 欧美 日韩 另类| 亚洲一区www| 亚洲综合射| 在线观看精品91老司机| 91精品国产手机| pr社萌汁福利视频在线观看| 久久91精品国产99久久yfo| 日本xxx护士与黑人| 日本高清中文字幕视频在线| 日韩免费毛片| 日韩美女黄大片在线观看|