{"type":"rich","version":"1.0","provider_name":"Transistor","provider_url":"https://transistor.fm","author_name":"Programming Tech Brief By HackerNoon","title":"Building Scalable ROS 2 Applications with Microservice Architecture","html":"<iframe width=\"100%\" height=\"180\" frameborder=\"no\" scrolling=\"no\" seamless src=\"https://share.transistor.fm/e/2c2c150a\"></iframe>","width":"100%","height":180,"duration":1320,"description":"\n        This story was originally published on HackerNoon at: https://hackernoon.com/building-scalable-ros-2-applications-with-microservice-architecture.\nBy lowering latency and resource consumption across platforms, containerization improves autonomous driving systems' performance, isolation, and stability.\nCheck more stories related to programming at: https://hackernoon.com/c/programming.\n            You can also check exclusive content about #microservice-architecture, #containerization-technology, #autonomous-driving-software, #robot-operating-system, #software-defined-vehicles, #latency-reduction-techniques, #multi-container-deployment, #edge-computing,  and more.\nThis story was written by: @containerize. Learn more about this writer by checking @containerize's about page,\n            and for more stories, please visit hackernoon.com.\nIn particular, the ROS 2 and Autoware frameworks are used in this study to illustrate the performance benefits of containerization for autonomous driving applications.  According to the results, as compared to bare-metal deployments, containerized systems regularly deliver lower latency, reduced jitter, and enhanced resource efficiency.","thumbnail_url":"https://img.transistorcdn.com/KhCapPSRkLGL2Xw8888yuChkNRWthaKapLYTvNdu4W4/rs:fill:0:0:1/w:400/h:400/q:60/mb:500000/aHR0cHM6Ly9pbWct/dXBsb2FkLXByb2R1/Y3Rpb24udHJhbnNp/c3Rvci5mbS9zaG93/LzQxMTY2LzE2ODM1/ODIzMzAtYXJ0d29y/ay5qcGc.webp","thumbnail_width":300,"thumbnail_height":300}