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Data Acquisition & Monitoring Cloud数据采集与监测云平台

The nerve center of every Rasber monitoring system: a self-developed acquisition gateway series and the Rasber Monitoring Cloud connect field sensors to dashboards, alerts and AI analytics — one continuous, fully owned data chain. 整个监测系统的"神经中枢":自研采集网关系列与监测互联云平台,把前端传感器与数据看板、预警推送和 AI 分析连成一条完整、全自研自控的数据链路。

RASBER MONITORING CLOUD · RIPI-DS01/DS02 · RFRS1260
RIPI-DS01 wired data logger — Rasber acquisition gateway
Acquisition gateway series采集网关系列

Edge devices that never lose a reading 不丢一条数据的边缘采集设备

Three self-developed gateways cover wired buses, long-range wireless and vibrating-wire sensors. Data is filtered and checked at the edge, buffered locally during network loss, and pushed to the cloud the moment connectivity returns. 三款自研网关覆盖有线总线、远距离无线与振弦传感三类场景。数据在边端完成滤波与校验,断网时本地缓存,网络恢复后即刻续传上云。

  • Edge computing + filtering边缘计算 + 滤波

    Anomalies are identified and flagged right at the front end, before upload.异常数据在前端即被识别与标记,再行上传。

  • Breakpoint-resume + event-triggered reporting断点续传 + 触发加报

    On-board storage rides out network loss; rapid changes trigger accelerated reporting.本地存储抵御断网;数据突变时自动提高上报频率。

  • Hardened for the field为野外环境而生

    Solar power sized for 7 days of overcast with 30% reserve, lightning-protected enclosures, remote OTA upgrades.太阳能按"7 天阴雨 + 30% 冗余"配置,机箱防雷接地,支持远程 OTA 升级。

RIPI-DS01

Wired Data Logger有线采集器

RS485 bus input with AutoID auto-addressing, 4G uplink, and 16 GB on-board storage for breakpoint-resume on network loss.RS485 总线接入、AutoID 自动编址、4G 上传,16GB 本地存储实现断网续传。

RIPI-DS02

LoRa Base StationLoRa 无线基站

1 km+ transmission range with ad-hoc mesh networking and 4G/MQTT uplink — cable-free coverage for remote, dispersed sites.传输距离 1km 以上,自组网 Mesh 组网,4G/MQTT 上传——偏远分散场景免布线覆盖。

RFRS1260

VW Acquisition Module振弦采集模块

16 channels with intelligent frequency-sweep, compatible with vibrating-wire sensors from multiple vendors. 8-ch (RFRS1240) and 4-ch (RFRS1220) variants available.16 通道智能扫频,兼容多厂家振弦传感器;另有 8 通道(RFRS1240)与 4 通道(RFRS1220)可选。

16 GB
On-Board Storage本地存储

Store-and-forward keeps data safe through network loss.断网缓存,网络恢复自动续传。

1 km+
LoRa RangeLoRa 传输距离

Ad-hoc mesh networking, no cabling required.自组网组网,无需现场布线。

16 ch
VW Channels / Module单模块振弦通道

Intelligent frequency-sweep, multi-vendor compatible.智能扫频,兼容多厂家传感器。

IP65
Field Enclosure现场机箱防护

Lightning protection with <10 Ω grounding, −40 to 70 °C.防雷接地电阻 <10Ω,工作温度 −40~70℃。

Edge layer边缘层

Inside the Edge Layer: Six Function Blocks边端设备内部:六大功能块

Field-service statistics show that most edge failures trace to power, lightning protection and APN/SIM configuration — not the sensors. That is why every Rasber edge device is engineered around six clearly separated function blocks.现场售后统计表明,多数边端故障源于电源、防雷与 APN/SIM 配置——而非传感器本身。因此瑞茨柏边端设备围绕六个清晰分离的功能块设计。

Protective enclosure · IP65 / IP67 · −40~70 ℃ · surge 8/20 µs · 20 kA 防护机箱 · IP65 / IP67 · −40~70℃ · 防雷浪涌 8/20µs · 20kA Sensor interfaces 传感器接口 VW sweep · 4–20 mA 振弦扫频 · 4–20mA RS-485 · CAN · SDI-12 Power management 电源管理 Solar MPPT charging 太阳能 MPPT 充电 Li / lead-acid battery 锂电 / 铅酸蓄电池 DC-DC 5 / 12 / 24 V Main control SoC 主控 SoC ARM Cortex-A / RISC-V Linux / RTOS Edge algorithms: 边缘算法: filter · check · flag anomalies 滤波 · 校验 · 异常标记 Local storage 本地存储 SD / eMMC Buffer through network loss 断网缓冲 Comms module 通讯模块 4G / 5G · NB-IoT · WiFi LoRa · BeiDou short message LoRa · 北斗短报文 Cloud 云平台 Power + sensors → main control → storage + comms 电源 + 传感器 → 主控 → 存储 + 通讯
The six function blocks of a Rasber edge device and the power / main-control / comms relay: power management and the sensor interfaces feed the main-control SoC, which hands data to local storage and the communication module — all housed in the protective enclosure. 瑞茨柏边端设备六大功能块与"主控 / 通讯 / 电源"接力:电源管理与传感器接口汇入主控 SoC,主控将数据交给本地存储与通讯模块——全部置于防护机箱之内。

Main Control SoC主控 SoC

ARM Cortex-A / RISC-V running Linux or an RTOS, executing edge algorithms — filtering, checking and anomaly flagging before upload.ARM Cortex-A / RISC-V,运行 Linux 或 RTOS,执行边缘算法——上传前完成滤波、校验与异常标记。

Sensor Interfaces传感器接口

Vibrating-wire frequency-sweep, 4–20 mA, RS-485, CAN and SDI-12 — one box aggregates mixed sensor fleets.振弦扫频、4–20mA、RS-485、CAN 与 SDI-12——一台设备汇聚多类型传感器。

Communication Module通讯模块

4G/5G, NB-IoT, WiFi, LoRa — plus BeiDou short message for sites with no public network at all.4G/5G、NB-IoT、WiFi、LoRa——以及面向完全无公网场景的北斗短报文。

Power Management电源管理

Solar MPPT charging with lithium or lead-acid batteries, and DC-DC rails at 5/12/24 V for the sensor bus.太阳能 MPPT 充电,锂电 / 铅酸蓄电池,DC-DC 输出 5/12/24V 为传感器总线供电。

Local Storage本地存储

SD / eMMC buffering rides out network loss; data resumes to the cloud from the breakpoint once connectivity returns.SD / eMMC 缓存抵御断网;网络恢复后从断点继续上传云端。

Protective Enclosure防护机箱

IP65/IP67 housings rated −40 to 70 °C, with surge protection rated 8/20 µs · 20 kA against lightning.IP65/IP67 机箱,工作温度 −40~70℃,防雷浪涌防护 8/20µs · 20kA。

Field Deployment Checklist现场部署清单

  • 1
    Size the solar power with a safety factor太阳能配置留安全系数

    Panel wattage ÷ site average daily sunshine × 0.5 safety factor must exceed the device's average daily consumption — a rule calibrated on rainy-season field data. Even a 10% shortfall can mean an outage after sustained overcast.太阳能板瓦数 ÷ 现场日均日照 × 0.5 安全系数 ≥ 设备日均功耗——该规则源自雨季实测。哪怕少 10%,连续阴雨后也可能断电。

  • 2
    APN configured at the factoryAPN 出厂前配置完成

    On site, only the SIM card is swapped — eliminating the most common cause of "phantom" 4G failures: a mistyped APN.现场只需更换 SIM 卡——杜绝 4G"假性故障"最常见的原因:APN 配置错误。

  • 3
    Lightning grounding under 10 Ω防雷接地电阻 <10Ω

    Earth resistance below 10 Ω, with the lightning rod at least 3 m from the device. Substandard grounding is the leading cause of strike damage.接地电阻低于 10Ω,避雷针距设备不小于 3 米。接地不达标是雷击损坏的首要原因。

  • 4
    OTA upgrades proven in the lab firstOTA 升级先过实验室

    Every remote firmware rollout is validated in the lab before being pushed to cold, remote or hard-to-reach stations.每次远程固件升级先在实验室跑通,再推送至低温、远郊或难以到达的站点。

Data chain数据链路

One Continuous Cloud-Edge-Device Chain完整的云-边-端数据链路

From the sensor in the borehole to the chart on your control-room wall, every link is developed and maintained by Rasber — no black-box dependence, full data sovereignty.从测孔中的传感器到指挥大屏上的曲线,每一个环节均由瑞茨柏自研自控——无黑盒依赖,数据主权完全可控。

01 / SENSORS

Field Sensors前端传感器

  • MEMS high-precision sensingMEMS 高精度传感
  • RS485 bus / AutoID addressingRS485 总线 / AutoID 编址
  • Vibrating-wire & LoRa options振弦与 LoRa 无线可选
02 / GATEWAY

Acquisition Gateway采集网关

  • RIPI-DS01 / DS02 / RFRS1260RIPI-DS01 / DS02 / RFRS1260
  • Edge computing + filtering边缘计算 + 滤波
  • Breakpoint-resume / event-triggered断点续传 / 触发加报
03 / NETWORK

Transmission传输网络

  • 4G/5G/NB-IoT all-carrier4G/5G/NB-IoT 全网通
  • MQTT / TCP / HTTPMQTT / TCP / HTTP
  • LoRa ad-hoc networkingLoRa 自组网
04 / CLOUD

Monitoring Cloud监测云平台

  • Microservices architecture微服务架构
  • GIS/BIM 3D visualizationGIS/BIM 3D 可视化
  • Tiered warning / multi-project分级预警 / 多项目管理
05 / USERS

PC / App / Video WallPC / App / 大屏

  • Web dashboards & reports网页看板与报表
  • Mobile app alert push手机 App 预警推送
  • Control-room video wall指挥中心大屏
FULL-CHAIN IN-HOUSE R&D  |  NO BLACK-BOX DEPENDENCE  |  FULL DATA SOVEREIGNTY全链路自研  |  无黑盒依赖  |  数据主权可控
Rasber Monitoring Cloud监测互联云平台

Six Core Capabilities, One Platform一个平台 · 六大核心能力

Built on a microservices architecture, the Rasber Monitoring Cloud turns raw sensor streams into decisions — with full audit trails: every threshold change is version-logged and every alarm leaves a trigger record.基于微服务架构的瑞茨柏监测云,把原始传感数据转化为决策依据——并提供完整审计:阈值修改留版本记录,每次报警留触发日志。

Real-Time Monitoring实时监控

Second-level data refresh across all measurement points, with live curves, cloud maps and period statistics.全测点数据秒级刷新,实时曲线、监测云图与期数统计一览无余。

Intelligent Tiered Early Warning智能分级预警

Configurable graded alert levels pushed by SMS and app, with version-logged thresholds and trigger logs for every alarm.报警阈值可配置、分级推送至短信与 App;阈值留版本、报警留日志,事后可追溯。

GIS/BIM 3D VisualizationGIS/BIM 3D 可视化

Measurement points placed on design drawings, GIS maps and BIM models — see the structure, not just the numbers.测点落位于设计图、GIS 地图与 BIM 模型之上——看见结构本身,而不只是数字。

Multi-Project Management多项目管理

Tiered role-based permissions let owner, contractor and supervisor accounts work on the same platform in parallel.权限分级管理,业主、施工、监理多方账号在同一平台并行使用。

Open REST APIREST API 开放接口

Standard RESTful + MQTT interfaces integrate with your existing GIS, BIM, OA and regulatory supervision platforms — no vendor lock-in.标准 RESTful + MQTT 协议,对接既有 GIS / BIM / OA 及政务监管平台——不锁定供应商。

AI Analytics EngineAI 分析引擎

Neural-network models deliver trend forecasting and decision support on top of live monitoring data.神经网络模型基于实时监测数据,提供趋势预测与辅助决策。

Architecture & governance架构与权限

Three Layers, Clear Permission Boundaries三层架构 · 清晰权限边界

The platform follows the standard three-layer IoT architecture: a device layer of sensors, an edge layer handling acquisition, protocol conversion, buffering and edge AI, and a cloud layer that splits into access (MQTT / HTTP / device shadow), data (time-series + relational + object storage), algorithm (rules + anomaly detection) and application (dashboards, mobile, government access, API) tiers.平台遵循标准三层物联网架构:端层为传感器;边层负责采集、协议转换、缓冲与边缘 AI;云层细分为接入(MQTT / HTTP / 设备影子)、数据(时序库 + 关系库 + 对象存储)、算法(规则 + 异常检测)与应用(看板、移动端、政务接入、API)四级。

Module模块 Purpose用途 Permission boundary权限边界
Control indicators (alarm thresholds)控制指标(报警阈值)Graded alarm threshold configuration分级报警阈值配置Writable by owner + supervising engineer only; every change version-logged仅业主与监理可写;修改留版本记录
Project overview / cloud map工程概况 / 监测云图Project info, progress, measurement points on design drawings工程信息、进度、设计图上的测点落位Readable by owner, contractor and supervision业主 / 施工 / 监管三方可读
Daily reports日报Daily monitoring summaries每日监测汇总Writable by the supervising engineer监理可写
Data summary / comparison / period statistics数据汇总 / 对比 / 期数统计Multi-dimensional queries; contractor vs. third-party comparison flags deviations >10% in red多维度查询;乙方与第三方对比,偏差 >10% 红字标出Readable by all parties全员可读
Project management (staff)工程管理(人员)Staff categories and accounts员工类目与账号Writable by the owner only仅业主可写
Automation management自动化管理Device status and remote upgrades设备状态与远程升级Writable by Rasber O&M only仅瑞茨柏运维可写

Four Audit Trails, Traceable Reviews四项审计 · 复盘可追溯

Beyond the version-logged thresholds and alarm trigger records noted above, account changes leave approval records (applicant, approver, permissions before and after), and every API call leaves an audit log (caller, time, endpoint, parameters). Together these four audit trails make any post-event review traceable to a person and a timestamp. 在前述阈值版本记录与报警触发日志之外,账号变更留审批记录(申请人、审批人、变更前后权限),每次 API 调用留审计日志(调用方、时间、接口、参数)。四项审计共同保证事后复盘可定位到人、到时间。

API Access in Five StepsAPI 对接五步走

Integration over standard RESTful API + MQTT follows a fixed flow: requirements → interface documentation from pre-sales → customer development → joint testing → go-live. The platform already interfaces with government regulatory platforms — meeting mandates such as Shanghai's 2024 rule that automated monitoring data be transmitted directly to the supervision platform. 基于标准 RESTful API + MQTT 的对接流程固定为五步:提出需求 → 售前提供接口文档 → 客户开发 → 联调 → 上线。平台已对接政务监管平台——满足如上海市 2024 年"自动化设备数据不落地、直传监管平台"的合规要求。

AI layer智能层

AI That Works on Engineering Data面向工程数据的 AI 能力

Three production AI capabilities sit on top of the cloud platform, turning monitoring data into early, defensible safety judgments.三项已落地的 AI 能力构建于云平台之上,把监测数据转化为更早、更可靠的安全判断。

Neural-Network Safety Assessment神经网络安全评估

Models trained on monitoring data assess structural safety state and forecast deformation trends before thresholds are reached.基于监测数据训练的模型评估结构安全状态,在触及阈值之前预测变形趋势。

Kalman / Sidereal-Day Filtering卡尔曼 / 恒星日滤波

Advanced denoising for GNSS time series strips multipath and orbital noise to expose true millimeter-level displacement.针对 GNSS 时序数据的先进降噪算法,剔除多路径与轨道噪声,还原真实毫米级位移。

Machine-Vision Defect Recognition机器视觉病害识别

Computer-vision models recognize surface defects such as cracking, complementing sensor data with visual evidence.计算机视觉模型识别裂缝等表观病害,以影像证据补充传感数据。

FAQ

Frequently Asked Questions常见问题

What happens to the data when the network drops?断网时数据会丢吗?
Nothing is lost. The edge device buffers readings to local storage (16 GB on the RIPI-DS01) and resumes the upload from the breakpoint the moment connectivity returns. If readings change rapidly during the outage, event-triggered reporting raises the sampling and reporting frequency automatically.不会丢。边端设备将数据缓存至本地存储(RIPI-DS01 为 16GB),网络恢复后从断点自动续传。若断网期间数据发生突变,触发加报机制会自动提高采样与上报频率。
Can our existing GIS / BIM / OA systems pull data from the platform?我们已有的 GIS / BIM / OA 系统能从平台取数吗?
Yes — over standard RESTful API + MQTT. The onboarding flow is: state the requirement, receive the interface documentation from pre-sales, develop the integration, run joint testing, then go live. Every API call leaves an audit log recording the caller, time, endpoint and parameters.可以——通过标准 RESTful API + MQTT 协议。对接流程为:提出需求 → 售前提供接口文档 → 客户开发 → 联调 → 上线。每次 API 调用均留审计日志,记录调用方、时间、接口与参数。
Who is allowed to change alarm thresholds?谁有权修改报警阈值?
Only owner and supervising-engineer roles can write to the control-indicator module. Every change is version-logged with the value before, the value after, the person and the time — so a later review can always establish who changed what, and when.仅业主与监理角色可写入控制指标模块。每次修改均留版本记录——修改前值、修改后值、修改人、修改时间——事后复盘随时可查清谁在何时改了什么。
Can owner, contractor and supervisor all use the platform at once?业主、施工、监理能同时使用平台吗?
Yes. Multi-party accounts work in parallel under tiered role-based permissions: all parties read the project overview, cloud maps and data summaries, while write access is bounded per module — staff management for the owner, daily reports for the supervising engineer, device management for Rasber O&M. Account changes leave approval records.可以。多方账号在分级权限下并行使用:三方均可读工程概况、监测云图与数据汇总,写权限按模块划分——人员管理归业主、日报归监理、设备管理归瑞茨柏运维。账号变更留审批记录。
A gateway drops offline right after commissioning. What is the usual cause?网关上线即掉线,通常是什么原因?
The two most common causes are an APN configuration error and an unpaid SIM — check both by logging into the controller. Rasber devices ship with the APN pre-configured at the factory so only the SIM is swapped on site. Severe data latency usually points to weak 4G signal; switch to a LoRa or NB-IoT backup link.最常见的两个原因是 APN 配置错误与 SIM 卡欠费——登录控制器即可排查。瑞茨柏设备出厂前已预配 APN,现场只需换卡。数据延迟严重通常是 4G 信号差——切换 LoRa 或 NB-IoT 备份链路。
How is the field cabinet protected against lightning and power failure?现场机箱如何防雷、防断电?
Grounding resistance is kept below 10 Ω with the lightning rod at least 3 m from the device, and the enclosure carries 8/20 µs · 20 kA surge protection. Solar systems are sized for 7 days of overcast plus a 30% reserve; on a low-voltage alarm, clean the panels and check the battery — batteries are replaced every 3 years.接地电阻控制在 10Ω 以下,避雷针距设备不小于 3 米,机箱具备 8/20µs · 20kA 浪涌防护。太阳能按"7 天阴雨 + 30% 冗余"配置;出现低电压告警时清洁太阳能板并检查蓄电池——蓄电池每 3 年更换一次。
Delivery & support交付与服务

From Order to Long-Term O&M从下单到长期运维

Every unit ships with factory QC reports, and accuracy is traceable through third-party metrology institute calibration.每台设备随附出厂质检报告,精度可通过第三方计量机构校准溯源。

48 h
Standard-Product Shipping标准品发货

Standard products ship from stock; fast response on customization.标准产品现货发出,定制需求快速响应。

7×24
Remote Technical Support远程技术支持

On-site installation guidance and partner enablement training.现场安装指导与合作伙伴赋能培训。

1 yr+
Warranty Period质保期

Backed by full-lifecycle technical service across four phases.四阶段全生命周期技术服务保障。

Lifetime Cloud Account终身云平台账号

Cloud-hosted O&M, remote device-status monitoring and periodic reports.云端托管运维、设备状态远程监控与定期报告。

Connect your project to the cloud让您的项目接入监测云

Our engineers respond with gateway selection guidance, API documentation and a platform demo configured for your project scale.我们的工程师将提供网关选型建议、API 接口文档,并按您的项目规模配置平台演示。

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