WO2021027371A1 - 一种基于 cb2201 的智能照明控制系统 - Google Patents

一种基于 cb2201 的智能照明控制系统 Download PDF

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WO2021027371A1
WO2021027371A1 PCT/CN2020/093674 CN2020093674W WO2021027371A1 WO 2021027371 A1 WO2021027371 A1 WO 2021027371A1 CN 2020093674 W CN2020093674 W CN 2020093674W WO 2021027371 A1 WO2021027371 A1 WO 2021027371A1
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development board
control system
intelligent lighting
lighting control
system based
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PCT/CN2020/093674
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French (fr)
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沈晓燕
邵巍
许�鹏
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南通大学
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W84/00Network topologies
    • H04W84/18Self-organising networks, e.g. ad-hoc networks or sensor networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/30Services specially adapted for particular environments, situations or purposes
    • H04W4/33Services specially adapted for particular environments, situations or purposes for indoor environments, e.g. buildings
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/30Services specially adapted for particular environments, situations or purposes
    • H04W4/38Services specially adapted for particular environments, situations or purposes for collecting sensor information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/70Services for machine-to-machine communication [M2M] or machine type communication [MTC]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/80Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices

Definitions

  • the present invention relates to the technical field of intelligent lighting control, in particular to an intelligent lighting control system based on CB2201.
  • the traditional lighting control method is to introduce the controlled equipment into the control room with wires, which not only causes excessive laying of power cables and increases the investment cost, but also greatly increases the radiation interference of the lamp circuit, causing pollution to the electromagnetic environment of the space.
  • Intelligent lighting control system refers to a distributed wireless telemetry, remote control, and remote control system composed of technologies such as computers, wireless communication data transmission, spread spectrum power carrier communication technology, intelligent information processing, and energy-saving electrical appliance control to achieve Effective intelligent control of home lighting equipment and even home life equipment. With functions such as intensity adjustment of light brightness, soft start of light, timing control, scene setting, etc., it is one of the trends of smart home.
  • Intelligent lighting control can not only be applied to the management of family residences, but also play a great role in school stadium lighting control systems, hospital lighting control systems, and hotel guest control systems.
  • this technology can also be applied to the healthy lighting system of underground places, aiming at the closed characteristics of underground places and the research of lighting psychology and optics, simulating natural light lighting in different scenarios in the morning, midnight and evening to satisfy the staff's understanding of underground projects The adaptation needs of the environment.
  • Digital intelligent lighting can not only be achieved through expensive, cumbersome and complex control systems. People need more convenient, easy to install, and cost-effective lighting methods to solve precise applications in offices, commerce, villas, clubs, homes and other places. , And take into account the concepts of nature, environmental protection and energy saving. Therefore, the realization of energy saving, environmental protection, comfort and convenience of smart lighting is the direction we need to work hard at present.
  • the purpose of the present invention is to provide an intelligent lighting control system based on CB2201 to solve the problems raised in the background art.
  • an intelligent lighting control system based on CB2201 including intelligent lighting control system, Facebook Cloud Internet of Things platform, ZigBee coordinator, CB2201 development board, ordinary lights, dimming lights, so The Facebook Cloud Internet of Things platform, ZigBee coordinator, ordinary lights, and dimming lights on the intelligent lighting control system are respectively wirelessly connected to the CB2201 development board.
  • the CH2201 on the CB2201 development board is used as the MCU, and the CB2201 development board mainly Including CPIO port, digital temperature and humidity sensor, JTAG debugging circuit, USB interface, two YoC interfaces, 4 user buttons, 2 user two-color LEDs, WIFI module.
  • the communication board of the ZigBee coordinator includes 21 IO ports, a reset button, a Debug, and 21 LEDs.
  • the digital temperature and humidity sensor includes a resistive humidity measuring element and an NTC temperature measuring element, and the digital temperature sensor and the single-chip microcomputer adopt an I 2 C bus for communication.
  • the CH2201MCU on the CB2201 development board is based on the CK802T platform
  • CK802T is a 32-bit processor
  • CH2201 contains 256K EFlash and 32+32K+16K internal SRAM
  • 8KSRAM is the secure SRAM of the TEE operating system
  • 80KSRAM is the low-power Consumption mode reserved SRAM.
  • the DHT11 digital temperature and humidity sensor has a working voltage range of 3.5V-5.5V, an average working current of 0.5mA, a humidity measurement range of 20-90%RH, a temperature measurement range of 0-50°C, and a humidity resolution of 1.
  • %RH is 8 bits, and the sampling period is 1s.
  • buttons for common lamp networking buttons for controlling common lamp on and off, buttons for dimming lamp networking, and buttons for controlling brightness of dimming lamps.
  • the ZigBee is a low-power local area network protocol based on the IEEE802.15.4 standard.
  • the ZigBee network is divided into a physical layer, a medium access control layer, a network layer, and an application layer.
  • the physical layer and the MAC layer are composed of IEEE802.15.4 Standard definition, network layer and application layer are defined by ZigBee Alliance.
  • the Facebook Cloud Internet of Things platform is equipped with a high-performance IoT Hub, device access, device management, security capabilities, rule engine, and data analysis.
  • the system is designed with wireless data transmission module and communication networking module based on ZigBee technology to realize one-to-many control.
  • buttons of the development board can also control the lighting lamp group, so that the lamp group in the lighting system can also be controlled when the network is disconnected, so as to realize the dual control function of the lighting lamp group together with the cloud to realize multiple pairs One’s control has made the lighting system a step closer to being intelligent, networked, informatized and low-cost.
  • the intelligent lighting control system is a software and hardware design of the intelligent lighting system based on the CB2201 development board.
  • the system can switch lights in different ways and realize remote control and status monitoring.
  • the system also adds temperature and humidity measurement functions.
  • the temperature and humidity sensor is mainly used to measure the temperature and humidity changes in the surrounding environment. It is transmitted to the CB2201 development board through the I 2 C bus, and then uploads the data to the cloud for real-time display.
  • the system also has a networking function that can achieve one-to-many Control, can be applied to most practical application scenarios, there are ordinary lights and dimming lights in the system, and different lighting modes can be set according to different scenarios, which realizes the humanization, personalization and diversification of lighting.
  • Figure 1 is a schematic diagram of the composition of the system of the present invention.
  • an intelligent lighting control system based on CB2201
  • the intelligent lighting control system 1 includes Facebook Cloud Internet of Things platform 2, ZigBee coordinator 3, CB2201 development board 4, ordinary light group 5 and dimming light group 6, digital temperature and humidity sensor 7, WiFi module 8, Facebook Cloud IoT platform 2, ZigBee coordinator 3, ordinary light group 5, and dimming light group 6 on the intelligent lighting control system 1, respectively.
  • CB2201 development board 4 is wirelessly connected.
  • CH2201 on CB2201 development board 4 is used as the MCU of the development board.
  • CB2201 development board 4 mainly includes GPIO port, JTAG debugging circuit, USB interface, two YoC interfaces, 4 user buttons, and 2 User two-color LED lights.
  • the communication board of the ZigBee coordinator includes 21 IO ports, a reset button, a Debug, and 21 LED lights.
  • the digital temperature and humidity sensor includes a resistive humidity measuring element and an NTC temperature measuring element.
  • the digital temperature and humidity sensor and the single-chip microcomputer use the I 2 C bus for communication.
  • the NTC temperature measuring element is connected to a high-performance 8-bit single-chip microcomputer.
  • the simple circuit connection of the single-chip microcomputer and other microprocessors can collect the local humidity and temperature in real time, and the I 2 C bus can be used for communication between the temperature and humidity sensor and the single-chip microcomputer.
  • the working voltage range of the digital temperature and humidity sensor is 3.5V-5.5V, the average working current is 0.5mA, the humidity measurement range of the digital temperature and humidity sensor is 20-90%RH, the temperature measurement range is 0-50°C, and the humidity resolution is 1% RH8 bit, the sampling period is 1s.
  • the CH2201MCU on the CB2201 development board 4 is based on the CK802T platform.
  • CK802T is a 32-bit processor.
  • the CH2201 contains 256K EFlash and 32+32K+16K internal SRAM.
  • 8KSRAM is the secure SRAM of the TEE operating system, and 80KSRAM is reserved for low-power mode SRAM.
  • the CB2201 development board 4 is equipped with a JTAG debugging circuit and a USB interface, and debugging is realized through the USB interface.
  • the 4 user buttons on the CB2201 development board are the buttons for common lamp networking, the buttons for controlling common lights on and off, the buttons for dimming lamp networking, and the buttons for controlling the brightness of dimming lights.
  • ZigBee is a low-power LAN protocol based on the IEEE802.15.4 standard.
  • the ZigBee network is divided into a physical layer, a medium access control layer, a network layer and an application layer.
  • the physical layer and MAC layer are defined by the IEEE802.15.4 standard, and the network layer and application layer are defined by the IEEE802.15.4 standard.
  • ZigBee Alliance definition is defined.
  • the IoT platform supports a large number of devices to connect to the cloud, and the devices and the cloud have stable and reliable two-way communication through IoT.
  • the device management on the Facebook Cloud IoT platform 2 provides complete device lifecycle management functions for the Facebook Cloud IoT platform 2, supporting device registration, function definition, data analysis, online debugging, remote configuration, firmware upgrade, remote maintenance, and real-time Monitoring, group management, device deletion and other functions.
  • An Amazon Cloud IoT Platform 2 also provides data transfer and scene linkage functions. Simple rules can be configured to seamlessly transfer device data to other devices, realize device linkage, or transfer to other cloud products, and obtain more services such as storage and computing. , The Internet of Things platform of Facebook Cloud Internet of Things Platform 2 provides data analysis services including spatial data visualization and stream computing.
  • the intelligent lighting control system 1 is connected to the CB2201 development board through the ZigBee coordinator.
  • the temperature and humidity sensor is mainly used to measure the temperature and humidity changes in the surrounding environment. It is transmitted to the CB2201 development board through the I 2 C bus, and then the data is uploaded to the cloud real-time display.
  • the intelligent lighting control system is an intelligent lighting system software and hardware design based on the CB2201 development board.
  • the system can switch lights in different ways and realize remote control and status monitoring.
  • the system also adds temperature and humidity measurement functions, digital temperature Humidity sensor is mainly used to measure the temperature and humidity changes in the surrounding environment, which is transmitted to the CB2201 development board through the I 2 C bus, and then uploads the data to the cloud for real-time display.
  • the system also has networking functions, which can realize one-to-many control and Many-to-one control can be applied to most practical application scenarios.

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Circuit Arrangement For Electric Light Sources In General (AREA)

Abstract

本发明公开了一种基于CB2201的智能照明控制系统,包括阿里云物联网平台,CB2201开发板,ZigBee协调器,普通灯,调光灯,该系统设计了一个基于CB2201开发板的智能照明系统,系统主要由阿里云物联网平台,ZigBee协调器以及CB2201开发板三部分组成,通信组网模块采用了ZigBee组网技术,可以通过CB2201开发板接收数据,组网按键开关将普通灯和调光灯分别组网,匹配不同的组号,CB2201开发板上的数据采集模块采集照明系统所处的环境温度,湿度信息,灯组的亮度以及开关状态信息,阿里云物联网平台通过发布消息至开发板,控制普通灯的开关与调光灯的亮度,并采用无线传输技术将采集到的温湿度信息,普通照明灯开关状态以及调光灯的亮度信息上传至云端,实现远程实时监测。

Description

一种基于CB2201的智能照明控制系统 技术领域
本发明涉及智能照明控制技术领域,具体为一种基于CB2201的智能照明控制系统。
背景技术
传统的照明控制方法是将被控制的设备用连线引入控制室,这样不仅造成电力电缆铺设过多增加了投资成本而且还大大增加了灯回路的辐射干扰,对空间电磁环境造成了污染。
随着信息控制技术的发展,现代化建筑中的楼宇自控设备和不同功能的系统越来越多,越来越复杂。但无论何种建筑,也不论该建筑的智能化程度有多高,照明控制一直在其楼宇自控系统中占据十分重要的位置。目前,我国照明用电占建筑用电的20%~30%。照明系统的设计需要向着更舒适、安全和节省能源的方向发展。智能照明控制系统,是指利用计算机、无线通讯数据传输、扩频电力载波通讯技术、智能化信息处理及节能型电器控制等技术组成的分布式无线遥测、遥控、遥讯控制系统,来实现对家居照明设备甚至家居生活设备的有效智能化控制。具有灯光亮度的强弱调节、灯光软启动、定时控制、场景设置等功能,是智能家居的趋势之一。
智能照明控制不仅可以运用于家庭住宅的管理,在学校体育馆灯控系统、医院灯控系统以及酒店客控系统中都可以发挥很大的作用。除此之外,这项技术还可以运用于地下场所的健康照明系统,针对地下场所封闭的特性以及照明心理学和光学的研究,模拟早中晚不同情景的自然光照明以满足工作人员对地下工程环境的适应需求。
数字化的智能照明不是只能通过昂贵、繁琐复杂的控制系统才能实现,人们更需要的是使用便捷、安装简单、成本经济的照明方式来解决办公、商业、别墅、会所、家居等场所的精准应用,并兼顾自然、环保、节能的理念。所以,实现智能照明的节能、环保、舒适、方便是目前我们需要努力的方向。
技术问题
本发明的目的在于提供一种基于CB2201的智能照明控制系统,以解决上述背景技术中提出的问题。
技术解决方案
为实现上述目的,本发明提供如下技术方案:一种基于CB2201的智能照明控制系统,包括智能照明控制系统,阿里云物联网平台,ZigBee协调器,CB2201开发板,普通灯,调光灯,所述智能照明控制系统上的阿里云物联网平台,ZigBee协调器,普通灯,调光灯,分别与CB2201开发板进行无线连接,所述CB2201开发板上CH2201作为MCU,所述CB2201开发板上主要包括CPIO端口,数字温湿度传感器,JTAG调试电路,USB接口,两个 YoC 接口,4 个用户按键,2 个用户双色 LED,WIFI模块。
优选的,所述ZigBee协调器的通信板包括21个IO端口,一个复位按键,一个Debug,21个LED。
优选的,所述数字温湿度传感器包括一个电阻式测湿元件和一个NTC 测温元件,数字温度传感器与单片机之间采用I 2C总线进行通信。
优选的,所述CB2201开发板上的CH2201MCU基于CK802T的平台,CK802T为32位处理器,CH2201含有256K的EFlash和32+32K+16K内部SRAM,8KSRAM是TEE操作系统的安全SRAM,80KSRAM是低功耗模式的保留SRAM。
优选的,所述DHT11数字温湿度传感器工作电压范围为3.5V-5.5V,工作电流平均0.5mA,湿度测量范围为20-90%RH,温度测量范围为0-50℃,湿度分辨率为1%RH 8 位,采样周期为1s。
优选的,所述CB2201开发板上设有4个用户按键分别为普通灯组网按键,控制普通灯亮灭按键,调光灯组网按键,控制调光灯亮度按键。
优选的,所述ZigBee为基于IEEE802.15.4标准的低功耗局域网协议,所述ZigBee网络分为物理层,介质访问控制层,网络层和应用层,所述物理层和MAC层由IEEE802.15.4标准定义,网络层和应用层由ZigBee联盟定义。
优选的,所述阿里云物联网平台上设有高性能IoT Hub,设备接入,设备管理,安全能力,规则引擎以及数据分析。
有益效果
与现有技术相比,本发明的有益效果如下。
(1)该系统设计了基于ZigBee技术的无线数据传输模块以及通信组网模块,实现一对多的控制。
(2)通过云端对普通灯的开关状态和调光灯的亮度进行控制,实现远距离调控。
(3)开发板的按键也能实现对照明灯组的控制,以便在断网时也能对照明系统中的灯组具有控制功能,从而与云端一起对照明灯组实现双控的功能,实现多对一的控制,使照明系统向智能化,网络化,信息化,低成本化迈进了一步。
(4)该智能照明控制系统是一种基于CB2201开发板的智能照明系统软硬件设计,本系统可以通过不同的方式进行灯的开关并实现远程控制和状态监测,系统还添加了温湿度测量功能,温湿度传感器主要用于测量周围环境的温湿度变化,通过I 2C总线传输到CB2201开发板上,然后上传数据至云端实时显示,另外,该系统还具备组网功能,能够实现一对多控制,能应用于多数实际应用场景,系统中有普通灯与调光灯,可以根据不同的场景设置不同的灯光模式,实现了照明的人性化,个性化与多样化。
附图说明
图1为本发明系统的组成示意图。
图中:1、智能照明控制系统;2、阿里云物联网平台;3、按键开关;4、CB2201开发板;5、普通灯;6、调光灯。
本发明的最佳实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1,本发明提供一种技术方案:一种基于CB2201的智能照明控制系统,该智能照明控制系统1包括阿里云物联网平台2,ZigBee协调器3,CB2201开发板4,普通灯组5以及调光灯组6,数字温湿度传感器7,WiFi模块8,智能照明控制系统1上的阿里云物联网平台2,ZigBee协调器3,普通灯组5,调光灯组6,分别与CB2201开发板4进行无线连接,CB2201开发板4上CH2201作为该开发板的MCU,CB2201开发板4上主要包括GPIO端口, JTAG调试电路,USB接口,两个 YoC 接口,4 个用户按键,2个用户双色LED灯。
ZigBee协调器的通信板包括21个IO端口,一个复位按键,一个Debug,21个LED灯。
数字温湿度传感器上包括一个电阻式测湿元件和一个NTC 测温元件,数字温湿度传感器与单片机之间采用I 2C总线进行通信, NTC 测温元件与一个高性能 8 位单片机相连接,通过单片机等微处理器简单的电路连接来实时的采集本地湿度和温度,温湿度传感器与单片机之间能采用I 2C总线进行通信。
数字温湿度传感器工作电压范围为3.5V-5.5V,工作电流平均0.5mA,数字温湿度传感器的湿度测量范围为20-90%RH,温度测量范围为0-50℃,湿度分辨率为1%RH8位,采样周期为1s。
CB2201开发板4上的CH2201MCU基于CK802T的平台,CK802T为32位处理器,CH2201含有256K的EFlash和32+32K+16K内部SRAM,8KSRAM是TEE操作系统的安全SRAM,80KSRAM是低功耗模式的保留SRAM。
CB2201开发板4上设有JTAG 调试电路以及一个USB接口,通过USB接口实现调试。
CB2201开发板上的4个用户按键分别为普通灯组网按键,控制普通灯亮灭按键,调光灯组网按键,控制调光灯亮度按键。
ZigBee为基于IEEE802.15.4标准的低功耗局域网协议,ZigBee网络分为物理层,介质访问控制层,网络层和应用层,物理层和MAC层由IEEE802.15.4标准定义,网络层和应用层由ZigBee联盟定义。
阿里云物联网平台2上设有高性能IoT Hub,物联网平台支持海量设备连接上云,设备与云端通过IoT进行稳定可靠地双向通信。
阿里云物联网平台2上的设备管理,为阿里云物联网平台2提供完整的设备生命周期管理功能,支持设备注册,功能定义,数据解析,在线调试,远程配置,固件升级,远程维护,实时监控,分组管理,设备删除等功能。
阿里云物联网平台2上提供多重防护有效保障设备云端安全,在身份认证方面提供芯片级安全存储方案(ID²)及设备秘钥安全管理机制,防止设备密钥被破解,安全级别很高。
阿里云物联网平台2还提供数据流转和场景联动功能,配置简单规则,即可将设备数据无缝流转至其他设备,实现设备联动,或者流转至其他云产品,获得存储、计算等更多服务,阿里云物联网平台2的物联网平台提供包括空间数据可视化和流计算在内的数据分析服务。
智能照明控制系统1通过ZigBee协调器与CB2201开发板连接,CB2201开发板的控制按键主要有四个,其中,一个按键控制普通灯的亮灭,一个按键控制调光灯的亮度,另外两个按键具备组网功能,整个智能照明控制系统1还包括了温湿度测量部分,温湿度传感器主要用于测量周围环境的温湿度变化,通过I 2C总线传输到CB2201开发板上,然后上传数据至云端实时显示。
该智能照明控制系统是一种基于CB2201开发板的智能照明系统软硬件设计,本系统可以通过不同的方式进行灯的开关并实现远程控制和状态监测,系统还添加了温湿度测量功能,数字温湿度传感器主要用于测量周围环境的温湿度变化,通过I 2C总线传输到CB2201开发板上,然后上传数据至云端实时显示,另外,该系统还具备组网功能,能够实现一对多控制与多对一控制,能应用于多数实际应用场景,系统中有普通灯与调光灯,可以根据不同的场景设置不同的灯光模式,实现了照明的人性化,个性化与多样化。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。

Claims (8)

  1. 一种基于CB2201的智能照明控制系统,包括智能照明控制系统(1),阿里云物联网平台(2),ZigBee协调器(3),CB2201开发板(4),普通灯(5),调光灯(6),其特征在于:所述智能照明控制系统(1)上的阿里云物联网平台(2),ZigBee协调器(3),普通灯(5),调光灯(6),分别与CB2201开发板(4)进行无线连接,所述CB2201开发板(4)上CH2201作为MCU,所述CB2201开发板(4)上主要包括CPIO端口,数字温湿度传感器,JTAG调试电路,USB接口,两个 YoC 接口,4 个用户按键,2 个用户双色 LED,WIFI模块。
  2. 根据权利要求1所述的一种基于CB2201的智能照明控制系统,其特征在于:所述ZigBee协调器的通信板包括21个IO端口,一个复位按键,一个Debug,21个LED。
  3. 根据权利要求1所述的一种基于CB2201的智能照明控制系统,其特征在于:所述数字温湿度传感器包括一个电阻式测湿元件和一个NTC 测温元件,数字温度传感器与单片机之间采用I 2C总线进行通信。
  4. 根据权利要求1所述的一种基于CB2201的智能照明控制系统,其特征在于:所述CB2201开发板(4)上的CH2201MCU基于CK802T的平台,CK802T为32位处理器,CH2201含有256K的EFlash和32+32K+16K内部SRAM,8KSRAM是TEE操作系统的安全SRAM,80KSRAM是低功耗模式的保留SRAM。
  5. 根据权利要求1所述的一种基于CB2201的智能照明控制系统,其特征在于:所述DHT11数字温湿度传感器工作电压范围为3.5V-5.5V,工作电流平均0.5mA,湿度测量范围为20-90%RH,温度测量范围为0-50℃,湿度分辨率为1%RH 8 位,采样周期为1s。
  6. 根据权利要求1所述的一种基于CB2201的智能照明控制系统,其特征在于:所述CB2201开发板(4)上设有4个用户按键分别为普通灯组网按键,控制普通灯亮灭按键,调光灯组网按键,控制调光灯亮度按键。
  7. 根据权利要求1所述的一种基于CB2201的智能照明控制系统,其特征在于:所述ZigBee为基于IEEE802.15.4标准的低功耗局域网协议,所述ZigBee网络分为物理层,介质访问控制层,网络层和应用层,所述物理层和MAC层由IEEE802.15.4标准定义,网络层和应用层由ZigBee联盟定义。
  8. 根据权利要求1所述的一种基于CB2201的智能照明控制系统,其特征在于:所述阿里云物联网平台(2)上设有高性能IoT Hub,设备接入,设备管理,安全能力,规则引擎以及数据分析。
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