Expert - Energy Storage System Solution and Architecture
huaweiresearchcentergermanyaustria
| Company | huaweiresearchcentergermanyaustria |
| Category | Engineering |
| Location | — |
| Remote | — |
| Employment | Not stated |
| Level | Senior |
| Salary | Not stated by the employer |
| Posted | 12 Aug 2026 |
| Last verified | 12 Aug 2026 |
| Source | Employer ATS (teamtailor) |
Description
Huawei Digital Power is a business unit within Huawei that provides Enterprise & Industry customers, products and solutions like clean power generation, transportation electrification, site power facilities, data center facilities, and embedded power. Huawei Digital Power is committed to integrate Digital and Power Electronics technologies to provide customers with high-quality, energy-efficient, green, and low-carbon power electronics products, facilitating their business success The Power Conversion Technology Laboratory within Huawei’s Nuremberg Research Center is responsible for Advanced Digital Power Technology Research, Architecture Evolution Design and Strategic Technology Planning, and plays an important role in the Huawei Digital Power business in the design and development of power converters and control systems for applications such as PV Solar & Battery Energy Storage Field, Data Centers, Electric Vehicle, and Embedded Power Supply. Join us as a Expert - Energy Storage System Solution and Architecture (m/f/d) Become a key technical authority in our mission to develop next-generation energy storage system architectures and solutions. In this role, you will research and design advanced system architectures for utility-scale, commercial & industrial (C&I), renewable co-location and emerging high-power applications such as AI data centers. In this role, you will lead the definition and evolution of end-to-end system architectures for utility-scale, commercial & industrial (C&I), renewable co-location and emerging high-power, high-availability applications such as AI/HPC data centers. You will translate evolving application, grid and market requirements into system-level requirements, reference architectures and optimized product configurations. Working across batteries, DC/DC converters, power conversion systems (PCS), transformers, switchgear, protection, thermal management, automation and plant-level control, you will ensure architectural coherence from the grid connection down to the battery and DC subsystem. As a senior individual-contributor technical leader, you will bridge advanced research, product strategy and engineering implementation. Your work will shape future BESS products and technology roadmaps with higher efficiency, availability, safety, flexibility, scalability and lifecycle value, while addressing the rapidly evolving requirements of European power systems. Your mission Future BESS Applications & System Requirements: Analyze future application requirements for utility-scale and C&I energy storage, including renewable co-location, PV + BESS, AI data centers, large industrial sites, and hybrid behind-the-meter and front-of-the-meter systems. Translate market and application trends into future system and product requirements. Next-Generation BESS Architecture: Research and develop advanced ESS/BESS architectures covering system topology, battery configuration, DC distribution, power conversion, protection, thermal management and system-level control. Explore new architectures to improve system efficiency, reliability, safety, power density, scalability and lifecycle value. AC/DC Coupling & Requirement Translation: Develop and optimize AC- and DC-coupled system architectures and translate grid-side and application requirements into DC-side specifications, including battery configuration, DC voltage/current range, DC/DC topology, PCS sizing, energy-to-power ratio, protection and control requirements. Grid Integration & System Control: Analyze grid codes and system requirements including active/reactive power capability, overload and short-circuit behavior, voltage and frequency support, power quality and grid-forming operation. Develop corresponding system architectures and coordinated control concepts for batteries, PCS, DC/DC converters and plant-level controllers. System Modeling & Architecture Optimization: Develop and apply