储能企业齐聚,液冷技术成标配,构网型储能与长时技术引领新风向
2026年4月1日,北京。第十四届储能国际峰会暨展览会(ESIE 2026)在北京首都会展中心盛大开幕。作为储能领域最具影响力的行业盛会之一,本届展会以“场景创新,价值重构,全球共赢”为主题,吸引了储能产业链上下游企业参展,全面展示了从材料、器件到系统集成、检测认证的最新成果。
I. System Architecture
1. Text Description
The system adopts a three-layer architecture: Perception Layer, Control Layer, and Application Layer.
- Perception Layer
- Flexible SBR Fabric Sensor: Embedded in seats or mattresses to collect signals such as posture, body movement, bed exit status, and respiration.
- NTC Temperature Sensors: Arranged at multiple points on the heating pad surface for real‑time temperature monitoring.
- Environmental Sensors (optional): Temperature, humidity, and light sensors for adaptive control.
- Control Layer
- Signal Conditioning Circuit: Amplification, filtering, and analog‑to‑digital conversion.
- Microcontroller Unit (MCU): Runs embedded algorithms to process sensor data, execute PID temperature control, and detect abnormal events.
- Drive Circuit: MOSFET or relays to control the power supply to the graphene heating pad.
- Communication Module: Wi‑Fi / Bluetooth / LoRa / 4G for uploading data to the cloud and receiving remote commands.
- Application Layer
- Cloud IoT Platform: Device management, data storage, and rule engine (e.g., bed‑exit alarm, automatic heating).
- Mobile App / Mini‑Program: Provides real‑time status, push notifications, and remote temperature adjustment for family members or caregivers.
- Institution Management Dashboard: Centralized monitoring for multiple beds, energy consumption statistics, alarm logs, and report export.
Giving Robots the Warmth and Sensitivity of Life
Presented by Beijing Richsifang Automotive Technology Co., Ltd.
Automotive‑Grade Precision × Next‑Generation Biomimetic Interfaces
From “Lifelike” to “Alive”
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For service robots, humanoid robots, and high‑end animatronics, realism is no longer just about appearance. True human‑like interaction requires skin that delivers warmth, tactile sensitivity, and dynamic response.