http://m.007sbw.cn 2025-01-03 17:01 《中華工控網(wǎng)》翻譯
Siemens & PhysicsX Collaborate to Build AI-based Deep Physics Simulation
西門子與PhysicsX合作打造基于AI的深度物理仿真
Siemens Digital Industries Software announced its ongoing collaboration with PhysicsX, a startup leveraging generative AI to enable breakthrough engineering in advanced industries. Together, they aim to create the next generation of AI-based deep physics simulation to accelerate performance prediction and optimization.
西門子數(shù)字工業(yè)軟件宣布與PhysicsX進行持續(xù)合作,后者是一家利用生成式AI推動先進行業(yè)工程創(chuàng)新的初創(chuàng)公司。他們共同的目標(biāo)是創(chuàng)建下一代基于AI的深度物理仿真,以加速性能預(yù)測和優(yōu)化。
PhysicsX is building its latest pre-trained deep physics model for aerodynamics on high-fidelity simulation data generated with the Siemens Xcelerator portfolio.
PhysicsX正在使用西門子Xcelerator產(chǎn)品組合生成的高保真度仿真數(shù)據(jù),構(gòu)建其最新的預(yù)訓(xùn)練深度物理模型,用于空氣動力學(xué)。
“AI represents a truly transformative opportunity for the simulation community, and we are exploring its potential at an accelerated rate,” said Jean-Claude Ercolanelli, senior vice president, Simulation and Test Solutions, Siemens Digital Industries Software. “To scale AI adoption, open collaboration is key and Siemens is delighted to see PhysicsX unveil to the world what it is working on–together, we’re exploring an AI-enhanced simulation industry that has the potential to change how products are ideated and engineered.”
“人工智能為仿真社區(qū)帶來了真正的變革性機遇,我們正在以加速的速率探索其潛力,”西門子數(shù)字工業(yè)軟件仿真和測試解決方案高級副總裁Jean-Claude Ercolanelli表示。“要擴大AI的應(yīng)用,開放合作至關(guān)重要。西門子很高興看到PhysicsX向世界展示其研究成果。我們正在共同探索一個AI增強的仿真行業(yè),這有可能改變產(chǎn)品構(gòu)思和工程的方式。”
“We are delighted to take our collaboration with Siemens to the next level, working together on fundamental technology to improve the way engineering is practiced,” said Robin Tuluie, founder and chairman of PhysicsX.
“我們很高興將與西門子的合作提升到一個新的水平,共同致力于改善工程實踐方式的基礎(chǔ)技術(shù),”PhysicsX的創(chuàng)始人兼董事長Robin Tuluie表示。
“The basis for successful AI deployment into engineering hinges on highest-quality synthetic data, robust integrations between Computer Aided Engineering (CAE) and AI [Artificial Intelligence] and building on the trust customers have in our respective technologies. We are thrilled to be building into the opportunity space together with Siemens with the release of our latest Large Geometry Model (LGM) for aerodynamics, LGM-Aero, trained on high-fidelity data generated with Siemens Xcelerator portfolio tools. We are also delighted to be releasing Ai.rplane, an open-access reference application showcasing the power of LGM-Aero to design innovative aero solutions.”
“成功將AI部署到工程中的基礎(chǔ)在于最高質(zhì)量的合成數(shù)據(jù)、計算機輔助工程(CAE)與AI之間的強大集成,以及建立在客戶對我們各自技術(shù)信任之上。我們很高興能與西門子共同抓住這個機會,發(fā)布我們最新的用于空氣動力學(xué)的大幾何模型(LGM-Aero),該模型使用西門子Xcelerator產(chǎn)品組合工具生成的高保真數(shù)據(jù)進行訓(xùn)練。我們還很高興發(fā)布Ai.rplane,這是一個開放訪問的參考應(yīng)用,展示了LGM-Aero在設(shè)計創(chuàng)新空氣動力學(xué)解決方案方面的強大能力。”
Large Geometry Model (LGM) release
Much of the promise of AI in industrial applications starts with the dramatic acceleration that AI can bring to simulation. PhysicsX’s LGM-Aero is trained on a corpus of more than 25 million geometries and associated physics simulation. The training data contains tens of billions of mesh elements and tens of thousands of Computational Fluid Dynamics (CFD) and Finite Element Analysis (FEA) simulations using high-quality Simcenter STAR-CCM+ software and Simcenter Nastran software. It allows users to fine-tune deep learning models for their own applications with as little as a few tens of simulations.
大幾何模型(LGM)發(fā)布
AI在工業(yè)應(yīng)用中的許多承諾始于AI能夠為仿真帶來的顯著加速。PhysicsX的LGM-Aero是在超過2500萬個幾何體及其相關(guān)的物理仿真數(shù)據(jù)集上訓(xùn)練的。訓(xùn)練數(shù)據(jù)包含數(shù)千億個網(wǎng)格元素和數(shù)萬個使用高質(zhì)量Simcenter STAR-CCM+軟件和Simcenter Nastran軟件進行的計算流體動力學(xué)(CFD)和有限元分析(FEA)仿真。它允許用戶為自己的應(yīng)用微調(diào)深度學(xué)習(xí)模型,只需數(shù)十次仿真即可。
Technology demonstrator goes live
PhysicsX has also released Ai.rplane, a free-to-use public-access reference application offering a set of exploratory tools focused on aerodynamics and aircraft structures with unique AI-shape generation. Powered by LGM-Aero, Ai.rplane showcases the power of a fully trained model that generalizes to a broad set of aeroelastic applications. LGM-Aero is used as a zero-shot model to infer aero performance, flight stability and structural stress for any flying shape generated. The application demonstrates the creation of geometry and the assessment of physics performance in less than a second, compared to the several hours required for traditional numerical simulations.
技術(shù)演示器上線
PhysicsX還發(fā)布了Ai.rplane,這是一個免費供公眾訪問的參考應(yīng)用,提供了一套專注于空氣動力學(xué)和飛機結(jié)構(gòu)的探索性工具,具有獨特的AI形狀生成功能。Ai.rplane由LGM-Aero提供動力,展示了一個經(jīng)過全面訓(xùn)練的模型,該模型可以泛化到廣泛的空氣彈性應(yīng)用。LGM-Aero被用作零射擊模型,以推斷任何飛行形狀的空氣性能、飛行穩(wěn)定性和結(jié)構(gòu)應(yīng)力。與傳統(tǒng)的數(shù)值仿真需要數(shù)小時相比,該應(yīng)用在不到一秒鐘的時間內(nèi)展示了幾何圖形的創(chuàng)建和物理性能的評估。
Starting with a basic set of instructions, users can explore the full generative design space offered by Ai.rplane, then modify or optimize for a desired performance characteristic in seconds. Over time, PhysicsX aims to add new features, including cargo packaging, selection of commercial powertrains, and controls.
從一組基本指令開始,用戶可以探索Ai.rplane提供的完整生成設(shè)計空間,然后修改或優(yōu)化以獲得所需的性能特征,僅需幾秒鐘。隨著時間的推移,PhysicsX計劃添加新功能,包括貨物包裝、商用動力總成選擇和控制。
Ai.rplane was developed using an extensive set of simulation technologies from Siemens to automate the generation of high-quality training data. Both LGM-Aero and Ai.rplane are available on the PhysicsX AI engineering platform.
Ai.rplane的開發(fā)使用了西門子提供的大量仿真技術(shù),以自動化生成高質(zhì)量的訓(xùn)練數(shù)據(jù)。LGM-Aero和Ai.rplane都可在PhysicsX AI工程平臺上獲取。