CN204291046U - A kind of tele-control system of intelligent terminal - Google Patents

A kind of tele-control system of intelligent terminal Download PDF

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CN204291046U
CN204291046U CN201420663715.0U CN201420663715U CN204291046U CN 204291046 U CN204291046 U CN 204291046U CN 201420663715 U CN201420663715 U CN 201420663715U CN 204291046 U CN204291046 U CN 204291046U
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王波
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Abstract

本实用新型涉及通信技术领域,公开了一种智能终端的远程控制系统。本实用新型中,该远程控制系统包含:采集终端节点、网络、网关、以太网、云服务器、互联网和智能终端;采集终端节点通过网络与网关相连;网关通过以太网与云服务器相连;云服务器通过互联网与智能终端相连;其中,网关包含无线通信装置和应用处理器;无线通信装置包含主控芯片、覆盖范围扩展器和天线;主控芯片与应用处理器相连,天线通过覆盖范围扩展器与主控芯片相连;采集终端节点为智能灯泡;智能灯泡包含电源、无线单片机、降压转换器LDO、LED驱动芯片和LED灯珠;电源通过LDO与无线单片机相连;电源与无线单片机均通过LED驱动芯片与LED灯珠相连。

The utility model relates to the technical field of communication, and discloses a remote control system of an intelligent terminal. In the utility model, the remote control system includes: collection terminal node, network, gateway, Ethernet, cloud server, Internet and intelligent terminal; collection terminal node is connected with gateway through network; gateway is connected with cloud server through Ethernet; cloud server The gateway is connected to the smart terminal through the Internet; the gateway includes a wireless communication device and an application processor; the wireless communication device includes a main control chip, a coverage extender and an antenna; the main control chip is connected to the application processor, and the antenna is connected to the application processor through the coverage extender. The main control chip is connected; the collection terminal node is a smart light bulb; the smart light bulb includes a power supply, a wireless microcontroller, a step-down converter LDO, an LED driver chip and LED lamp beads; the power supply is connected to the wireless microcontroller through the LDO; the power supply and the wireless microcontroller are driven by LEDs The chip is connected to the LED lamp bead.

Description

一种智能终端的远程控制系统A remote control system for an intelligent terminal

技术领域technical field

本实用新型涉及通信技术领域,特别涉及一种智能终端的远程控制系统。The utility model relates to the technical field of communication, in particular to a remote control system of an intelligent terminal.

背景技术Background technique

智能家居是以住宅为平台,利用综合布线技术、网络通信技术、自动控制技术、音视频技术将家居生活有关的设施集成,构建高效的住宅设施与家庭日程事务的管理系统,提升家居安全性、便利性、舒适性、艺术性,并实现环保节能的居住环境。目前智能家居控制网络连接方式有两种:一种是有线方式,另一种是无线方式。其中,相对于使用有线方式的繁琐和昂贵,使用无线方式则更能得到普通家庭的青睐,不仅安装方便,免去了布线的麻烦;而且不必对家中的原有设备进行全部更新,只需对家居设备进行智能化改造,植入无线通信模块,就能实现对这些家居设备的智能控。现阶段,随着人们对于美好便捷生活的要求越来越高,在不同的生活场景下,人们对于房间灯光的亮度和颜色需求不同,然而现有无线控制系统并不能满足大众对于远距离、灵活地控制灯光颜色、亮度的需求,不利于智能控制系统的推广和使用。Smart home is based on the residence as a platform, using integrated wiring technology, network communication technology, automatic control technology, audio and video technology to integrate home life-related facilities, build an efficient management system for residential facilities and family schedules, and improve home security. Convenience, comfort, artistry, and realize an environment-friendly and energy-saving living environment. At present, there are two ways to connect the smart home control network: one is wired and the other is wireless. Among them, compared with the cumbersome and expensive wired method, the wireless method is more favored by ordinary families. It is not only easy to install, but also saves the trouble of wiring; and it is not necessary to update all the original equipment in the home. Intelligent transformation of household equipment and implantation of wireless communication modules can realize intelligent control of these household equipment. At this stage, as people's requirements for a better and more convenient life are getting higher and higher, in different life scenarios, people have different requirements for the brightness and color of room lighting. However, the existing wireless control system cannot meet the public's requirements for long-distance, flexible The need to accurately control the color and brightness of lights is not conducive to the promotion and use of intelligent control systems.

实用新型内容Utility model content

本实用新型的目的在于提供一种智能终端的远程控制系统,使得利用该远程控制系统能够实现对智能灯泡的远程控制,并且可以减少智能灯泡与网关之间的距离限制,易于推广和使用。The purpose of the utility model is to provide a remote control system of an intelligent terminal, so that the remote control system can realize the remote control of the intelligent light bulb, and can reduce the distance limit between the intelligent light bulb and the gateway, and is easy to popularize and use.

为解决上述技术问题,本实用新型的实施方式提供了一种智能终端的远程控制系统,包含:采集终端节点、网络、网关、以太网、云服务器、互联网和智能终端;采集终端节点通过网络与网关相连;网关通过以太网与云服务器相连;云服务器通过互联网与智能终端相连;其中,网关包含无线通信装置和应用处理器;无线通信装置包含主控芯片、覆盖范围扩展器和天线;主控芯片与应用处理器相连,天线通过覆盖范围扩展器与主控芯片相连;采集终端节点为智能灯泡;智能灯泡包含电源、无线单片机、降压转换器LDO、LED驱动芯片和LED灯珠;电源通过LDO与无线单片机相连;电源与无线单片机均通过LED驱动芯片与LED灯珠相连。In order to solve the above-mentioned technical problems, the embodiment of the present utility model provides a remote control system of an intelligent terminal, including: collecting terminal nodes, network, gateway, Ethernet, cloud server, Internet and intelligent terminals; collecting terminal nodes through the network and The gateway is connected; the gateway is connected to the cloud server through Ethernet; the cloud server is connected to the intelligent terminal through the Internet; wherein, the gateway includes a wireless communication device and an application processor; the wireless communication device includes a main control chip, a coverage extender and an antenna; the main control The chip is connected to the application processor, and the antenna is connected to the main control chip through a coverage extender; the collection terminal node is a smart light bulb; the smart light bulb includes a power supply, a wireless microcontroller, a step-down converter LDO, an LED driver chip and LED lamp beads; the power supply passes through The LDO is connected to the wireless microcontroller; the power supply and the wireless microcontroller are connected to the LED lamp beads through the LED driver chip.

本实用新型实施方式相对于现有技术而言,智能灯泡通过网络与网关相连,网关通过以太网与云服务器相连,云服务器则通过互联网与智能终端连接,智能灯泡通过网络与网关相连,网关通过以太网与云服务器相连,云服务器则通过互联网与智能终端连接,使得智能灯泡采集的数据信息能够通过网关最终传输到云服务器以及智能终端中,实现数据的存储和分析;而在需要调节灯光颜色、明暗程度等的时候,智能终端向云服务器发送信号,经存储和分析后,发送给网关,网关对接收数据进行解析及格式转换,发送给智能灯泡,进而实现对智能灯泡的远距离调控。在上述智能终端的远程控制系统中,一方面,该网关采用了主控芯片、覆盖范围扩展器和天线的组合作为无线通信装置,可将信号的覆盖范围扩大至少5倍,即使智能灯泡的数量较多,与网关的距离较远,也能通过利用该智能终端的远程控制系统实现对智能灯泡的远程控制;另一方面,智能灯泡包含无线单片机,能够对接收到的信号进行解析处理,输出PWM信号给LED驱动芯片,使得LED驱动芯片根据PWM信号控制输出恒定电流,从而控制红、绿、蓝、白等各种颜色的LED灯珠发光时间的长短,达到对智能灯泡的开关、灯光颜色及明暗程度的灵活控制。Compared with the prior art, the embodiment of the utility model is that the smart light bulb is connected to the gateway through the network, the gateway is connected to the cloud server through Ethernet, the cloud server is connected to the smart terminal through the Internet, the smart light bulb is connected to the gateway through the network, and the gateway is connected through The Ethernet is connected to the cloud server, and the cloud server is connected to the smart terminal through the Internet, so that the data information collected by the smart light bulb can be finally transmitted to the cloud server and the smart terminal through the gateway to realize data storage and analysis; and when it is necessary to adjust the light color , brightness, etc., the smart terminal sends a signal to the cloud server, and after storage and analysis, it is sent to the gateway. The gateway analyzes the received data and converts the format, and sends it to the smart light bulb, thereby realizing remote control of the smart light bulb. In the above-mentioned remote control system for smart terminals, on the one hand, the gateway uses a combination of a main control chip, a coverage extender and an antenna as a wireless communication device, which can expand the coverage of the signal by at least 5 times, even if the number of smart bulbs More, the distance from the gateway is far, and the remote control system of the smart terminal can also be used to realize the remote control of the smart light bulb; on the other hand, the smart light bulb contains a wireless single-chip microcomputer, which can analyze the received signal and output The PWM signal is sent to the LED driver chip, so that the LED driver chip controls the output of a constant current according to the PWM signal, thereby controlling the length of time the LED lamp beads of various colors such as red, green, blue, and white emit light, and achieve the switch and light color of the smart bulb. and flexible control of brightness.

进一步地,覆盖范围扩展器为CC2592芯片;CC2592芯片的ANT接口通过电感L111与电容C111与天线连接;主控芯片的RF_N接口通过电容C21、电感L42与CC2592芯片的RF_N接口连接;主控芯片的RF_P接口通过电容C41、电感L41与CC2592芯片的RF_P接口连接;主控芯片的PA_EN(P1_1)接口、LNA_EN(P1_4)接口和HGM_EN(P0_7)接口分别与CC2592芯片的PEAN接口、EN接口和HGM接口连接。其中,CC2592芯片是一个放大芯片,可用来提高输出功率,扩大覆盖范围。采用上述具体连接方式将主控芯片与覆盖范围扩展器CC2592芯片连接在一起,应用在上述远程控制系统中,能够有效增强网关的传输能力,保障了智能终端对智能灯泡的远程控制的实现。Further, the coverage extender is a CC2592 chip; the ANT interface of the CC2592 chip is connected to the antenna through the inductor L111 and the capacitor C111; the RF_N interface of the main control chip is connected to the RF_N interface of the CC2592 chip through the capacitor C21 and the inductor L42; The RF_P interface is connected to the RF_P interface of the CC2592 chip through the capacitor C41 and the inductor L41; the PA_EN (P1_1) interface, LNA_EN (P1_4) interface and HGM_EN (P0_7) interface of the main control chip are respectively connected to the PEAN interface, EN interface and HGM interface of the CC2592 chip connect. Among them, the CC2592 chip is an amplifier chip that can be used to increase output power and expand coverage. Using the above-mentioned specific connection method to connect the main control chip and the coverage extender CC2592 chip together, and applying it to the above-mentioned remote control system can effectively enhance the transmission capacity of the gateway and ensure the realization of remote control of smart bulbs by smart terminals.

进一步地,网关为Zigbee网关,主控芯片为CC2530芯片或CC2630芯片或EM3587芯片。Zigbee是一种低速传输的无线网络协定,具有以下特点:低功耗、安全性高、自组网、抗干扰能力强、低成本、低复杂度等。将结合了CC2592芯片和CC2530芯片或CC2630芯片或EM3587芯片的Zigbee网关应用在上述智能终端的远程控制系统中,不仅能够实现接收数据的协议格式的转换,还能够获取对智能灯泡的远距离控制,且功耗及成本较低、安全性高、稳定性高且抗干扰能力强。Further, the gateway is a Zigbee gateway, and the main control chip is a CC2530 chip or a CC2630 chip or an EM3587 chip. Zigbee is a low-speed wireless network protocol with the following characteristics: low power consumption, high security, self-organizing network, strong anti-interference ability, low cost, low complexity, etc. Applying the Zigbee gateway combined with CC2592 chip and CC2530 chip or CC2630 chip or EM3587 chip in the remote control system of the above-mentioned smart terminal, not only can realize the conversion of the protocol format of the received data, but also can obtain the remote control of the smart light bulb, In addition, the power consumption and cost are low, the safety is high, the stability is high, and the anti-interference ability is strong.

进一步地,网关为蓝牙网关,主控芯片为CC2540芯片或CC2640芯片或Nordic nRF51822芯片。一方面,由于采用的蓝牙技术具有自适应跳频、功率控制等独特的技术措施,避免了与其他无线网络的相互干扰,有效增强了上述基于蓝牙网关的控制系统的抗干扰能力;另一方面,将范围扩展器CC2592芯片和适用于蓝牙网关的CC2540芯片或CC2640芯片或nRF51822芯片结合起来,能够将信号覆盖范围扩大至少5倍,从而有效增强蓝牙网关的无线传输能力,以更好地实现对于智能灯泡的远程控制。Further, the gateway is a Bluetooth gateway, and the main control chip is a CC2540 chip or a CC2640 chip or a Nordic nRF51822 chip. On the one hand, the Bluetooth technology adopted has unique technical measures such as adaptive frequency hopping and power control, which avoids mutual interference with other wireless networks and effectively enhances the anti-interference ability of the control system based on the Bluetooth gateway; on the other hand , combining the range extender CC2592 chip with the CC2540 chip or CC2640 chip or nRF51822 chip suitable for the Bluetooth gateway, can expand the signal coverage by at least 5 times, thereby effectively enhancing the wireless transmission capability of the Bluetooth gateway to better realize for Remote control of smart light bulbs.

进一步地,网关为JenNet-IP网关,所述主控芯片为JN5168芯片。其中,JenNet-IP是一种增强型6LoWPAN网络层,集众多特性于一身,包括超低功耗、射频范围大、占用存储空间小、总体成本低、安全性高等。JN5168芯片可支持包含Zigbee、JenNet-IP协议在内的多个网络堆栈,并且体积小巧,发送、接收及睡眠模式的功耗极低;利用该芯片作为无线通信装置,应用在上述智能终端的远程控制系统中,使接入的智能灯泡能够不受协议的限制,能够提高该远程控制系统的兼容性,扩大适用范围,并能够有效降低功耗及成本。Further, the gateway is a JenNet-IP gateway, and the main control chip is a JN5168 chip. Among them, JenNet-IP is an enhanced 6LoWPAN network layer, which integrates many features, including ultra-low power consumption, large radio frequency range, small storage space, low overall cost, and high security. The JN5168 chip can support multiple network stacks including Zigbee and JenNet-IP protocols, and is small in size, with extremely low power consumption in sending, receiving, and sleep modes; using this chip as a wireless communication device, it can be used in the remote control of the above-mentioned smart terminals In the control system, the connected smart bulbs are not restricted by the protocol, which can improve the compatibility of the remote control system, expand the scope of application, and effectively reduce power consumption and cost.

进一步地,网关还包含以太网控制芯片和RJ45接口,主控芯片通过UART串口与应用处理器相连,应用处理器通过RMII串口与以太网控制芯片相连,以太网控制芯片与RJ45接口相连。采用上述结构,利用主控芯片将天线接收的数据解析处理为原始二进制数据,并通过UART串口发送到应用处理器,其最高速度可达100K左右,能够用作长距离通信所需;应用处理器则用于将解析数据转换为以太网协议格式的数据,依以太网的传输要求进行打包,并控制以太网包通过以太网控制芯片经由以太网接口RJ45传送到云服务器。采用上述网关,能够实现数据协议格式的转换及高速传输,便于实现利用所述远程控制系统进行稳定的远距离无线通信及控制。Further, the gateway also includes an Ethernet control chip and an RJ45 interface, the main control chip is connected to the application processor through the UART serial port, the application processor is connected to the Ethernet control chip through the RMII serial port, and the Ethernet control chip is connected to the RJ45 interface. With the above structure, the main control chip is used to analyze and process the data received by the antenna into the original binary data, and send it to the application processor through the UART serial port. The maximum speed can reach about 100K, which can be used for long-distance communication; the application processor It is used to convert the parsed data into data in the Ethernet protocol format, pack it according to the transmission requirements of the Ethernet, and control the Ethernet packet to be transmitted to the cloud server through the Ethernet interface RJ45 through the Ethernet control chip. By adopting the above-mentioned gateway, data protocol format conversion and high-speed transmission can be realized, and it is convenient to realize stable long-distance wireless communication and control by using the remote control system.

进一步地,应用处理器为以下任意一种芯片:STM32F107、AM3352、STM32F103、STM32F205、STM32F207、SPEAR320、MT7620A、MT7620N、RTL8196E、RTL8196EU、S3C2416、S3C6440、S5P6442;以太网控制芯片为DP83848芯片。以基于ARM-Cortsx-M3核的STM32F107芯片作为应用处理器,其最高工作频率为72MHz,内置高速存储器,具有丰富的增强I/O端口和外设资源;将上述32位微处理器STM32F107芯片与低功耗的10/100单端口物理层的以太网控制芯片DP83848连接,利用STM32F107芯片将接收到的解析数据按以太网传输格式要求进行再打包处理,并控制其通过以太网控制芯片DP83848传输,经由以太网接口RJ45发送到云服务器,能够进一步保障速度快、传输距离较长、功耗及成本较低的远距离调控的实现。Further, the application processor is any one of the following chips: STM32F107, AM3352, STM32F103, STM32F205, STM32F207, SPEAR320, MT7620A, MT7620N, RTL8196E, RTL8196EU, S3C2416, S3C6440, S5P6442; the Ethernet control chip is DP83848 chip. The STM32F107 chip based on the ARM-Cortsx-M3 core is used as the application processor, with a maximum operating frequency of 72MHz, built-in high-speed memory, and rich enhanced I/O ports and peripheral resources; the above-mentioned 32-bit microprocessor STM32F107 chip and The low-power 10/100 single-port physical layer Ethernet control chip DP83848 is connected, and the STM32F107 chip is used to repackage the received analytical data according to the requirements of the Ethernet transmission format, and control its transmission through the Ethernet control chip DP83848. It is sent to the cloud server via the Ethernet interface RJ45, which can further guarantee the realization of remote control with fast speed, long transmission distance, low power consumption and low cost.

进一步地,智能灯泡为N个,N为自然数。利用N个智能灯泡对应用环境中的数据进行采集,通过网络传送给网关,并最终并经由互联网显示在智能终端;另外,通过智能终端能够对N个智能灯泡进行实时监控和远距离调控。Further, there are N smart light bulbs, and N is a natural number. Use N smart light bulbs to collect data in the application environment, transmit it to the gateway through the network, and finally display it on the smart terminal via the Internet; in addition, the smart terminal can monitor and remotely control the N smart light bulbs in real time.

进一步地,无线单片机为CC2530芯片,LED驱动芯片为PAM2861芯片。CC2530芯片是一款高性价比、低功耗的片上系统解决方案,而PAM2861是一款于连续工作模式下的降压转换器,内置高精度电流检测器,能通过外置电阻设定输出电流,十分有利于延长LED灯珠产品的使用寿命,也能使灯光效果更加真实,在实现远程控制智能灯泡的同时进一步降低功耗及成本。Further, the wireless microcontroller is a CC2530 chip, and the LED driver chip is a PAM2861 chip. The CC2530 chip is a cost-effective, low-power system-on-chip solution, while the PAM2861 is a step-down converter in continuous operation mode. It has a built-in high-precision current detector and can set the output current through an external resistor. It is very beneficial to prolong the service life of LED lamp bead products, and can also make the lighting effect more realistic, and further reduce power consumption and cost while realizing remote control of smart bulbs.

进一步地,智能终端为PDA、智能手机或平板电脑。利用采集终端节点采集相应数据,通过网关传送到云服务器上,最终通过互联网显示在PDA、智能手机或平板电脑上,便于更好地进行远程监控和调控。Further, the intelligent terminal is a PDA, a smart phone or a tablet computer. Use the collection terminal node to collect the corresponding data, transmit it to the cloud server through the gateway, and finally display it on the PDA, smart phone or tablet computer through the Internet, which is convenient for better remote monitoring and control.

附图说明Description of drawings

图1是根据本实用新型的第一实施方式的一种智能终端的远程控制系统的具体结构示意图;FIG. 1 is a schematic structural view of a remote control system of an intelligent terminal according to a first embodiment of the present invention;

图2是根据本实用新型的第一实施方式的Zigbee网关的具体结构示意图;Fig. 2 is the specific structural representation of the Zigbee gateway according to the first embodiment of the present utility model;

图3是根据本实用新型的第一实施方式的智能灯泡的具体结构示意图;Fig. 3 is a schematic structural view of a smart light bulb according to a first embodiment of the present invention;

图4是根据本实用新型的第一实施方式的CC2592芯片与CC2530芯片的连接结构示意图;Fig. 4 is a schematic diagram of the connection structure of the CC2592 chip and the CC2530 chip according to the first embodiment of the present invention;

图5是现有技术的Zigbee网关中CC2530芯片的连接结构示意图;Fig. 5 is the connection structure schematic diagram of CC2530 chip in the Zigbee gateway of prior art;

图6是根据本实用新型的第二实施方式的一种智能终端的远程控制系统的具体结构示意图;FIG. 6 is a schematic structural diagram of a remote control system of an intelligent terminal according to a second embodiment of the present invention;

图7是根据本实用新型的第二实施方式的蓝牙网关的具体结构示意图;FIG. 7 is a schematic structural diagram of a bluetooth gateway according to a second embodiment of the present invention;

图8是根据本实用新型的第二实施方式中CC2540芯片的具体结构示意图;FIG. 8 is a schematic structural view of the CC2540 chip according to the second embodiment of the present invention;

图9是根据本实用新型的第三实施方式的一种智能终端的远程控制系统的具体结构示意图;Fig. 9 is a schematic structural diagram of a remote control system of a smart terminal according to a third embodiment of the present invention;

图10是根据本实用新型的第三实施方式的JenNet-IP网关的具体结构示意图;Fig. 10 is the specific structural representation of the JenNet-IP gateway according to the third embodiment of the present invention;

图11是根据本实用新型的第三实施方式中JN5168芯片的具体结构示意图。Fig. 11 is a schematic diagram of the specific structure of the JN5168 chip according to the third embodiment of the present invention.

具体实施方式Detailed ways

为使本实用新型的目的、技术方案和优点更加清楚,下面将结合附图对本实用新型的各实施方式进行详细的阐述。然而,本领域的普通技术人员可以理解,在本实用新型各实施方式中,为了使读者更好地理解本申请而提出了许多技术细节。但是,即使没有这些技术细节和基于以下各实施方式的种种变化和修改,也可以实现本申请各权利要求所要求保护的技术方案。In order to make the purpose, technical solutions and advantages of the present utility model clearer, various implementation modes of the present utility model will be described in detail below in conjunction with the accompanying drawings. However, those of ordinary skill in the art can understand that in each implementation manner of the present utility model, many technical details are proposed in order to enable readers to better understand the present application. However, even without these technical details and various changes and modifications based on the following implementation modes, the technical solution claimed in each claim of the present application can be realized.

本实用新型的第一实施方式涉及一种智能终端的远程控制系统,具体结构如图1所示,包含:采集终端节点1,Zigbee网络2,Zigbee网关3,以太网4,云服务器5,互联网6和智能终端7,采集终端节点1通过Zigbee网络2与Zigbee网关3相连;Zigbee网关3通过以太网4与云服务器5相连;云服务器5通过互联网6与智能终端7相连。其中,如图2所示,Zigbee网关3包含无线通信装置301、应用处理器302、以太网控制芯片303和RJ45接口304;无线通信装置301包含主控芯片3011、覆盖范围扩展器3012和天线3013,天线3013通过覆盖范围扩展器3012与主控芯片3011相连;主控芯片3011通过UART串口与应用处理器302相连,应用处理器302通过RMII串口与以太网控制芯片303相连,以太网控制芯片303与RJ45接口304相连;采集终端节点1为智能灯泡,如图3所示,智能灯泡包含电源、无线单片机、降压转换器LDO、LED驱动芯片和LED灯珠;电源通过LDO与无线单片机相连;电源与无线单片机均通过LED驱动芯片与LED灯珠相连。电源一路给LED驱动芯片供电,一路通过LDO给无线单片机供电。The first embodiment of the present utility model relates to a remote control system of an intelligent terminal. The specific structure is as shown in FIG. 6 and the intelligent terminal 7, the collection terminal node 1 is connected to the Zigbee gateway 3 through the Zigbee network 2; the Zigbee gateway 3 is connected to the cloud server 5 through the Ethernet 4; the cloud server 5 is connected to the intelligent terminal 7 through the Internet 6. Wherein, as shown in Figure 2, Zigbee gateway 3 comprises wireless communication device 301, application processor 302, Ethernet control chip 303 and RJ45 interface 304; Wireless communication device 301 comprises main control chip 3011, coverage extender 3012 and antenna 3013 , the antenna 3013 is connected to the main control chip 3011 through the coverage extender 3012; the main control chip 3011 is connected to the application processor 302 through the UART serial port, and the application processor 302 is connected to the Ethernet control chip 303 through the RMII serial port, and the Ethernet control chip 303 It is connected to the RJ45 interface 304; the acquisition terminal node 1 is a smart light bulb, as shown in Figure 3, the smart light bulb includes a power supply, a wireless microcontroller, a step-down converter LDO, an LED driver chip and LED lamp beads; the power supply is connected to the wireless microcontroller through the LDO; Both the power supply and the wireless microcontroller are connected to the LED lamp beads through the LED driver chip. The power supply supplies power to the LED driver chip all the way, and supplies power to the wireless microcontroller through the LDO all the way.

在需要对智能灯泡进行调控时,利用智能终端7向云服务器6发送信号,信号通过以太网控制芯片303被应用处理器302接收,应用处理器302对接收到的网络数据进行解析,可以得到发送端的原始数据,再将原始数据发送给无线通信装置301,主控芯片将天线接收的数据打包处理成Zigbee协议格式的数据,并发送给Zigbee无线网络中的智能灯泡,智能灯泡中的无线单片机对接收信号进行解析处理,并输出PWM信号给LED驱动芯片,使得LED驱动芯片根据PWM信号控制输出恒定电流,用于调控不同颜色LED灯珠发光时间的长短,从而达到Zigbee与以太网的信息互联,实现对灯泡的开关、灯光颜色及明暗程度的远程控制。When the smart light bulb needs to be regulated, the smart terminal 7 is used to send a signal to the cloud server 6, and the signal is received by the application processor 302 through the Ethernet control chip 303, and the application processor 302 analyzes the received network data to obtain the sent end of the original data, and then send the original data to the wireless communication device 301, the main control chip packs the data received by the antenna into data in the Zigbee protocol format, and sends it to the smart light bulb in the Zigbee wireless network. The receiving signal is analyzed and processed, and the PWM signal is output to the LED driver chip, so that the LED driver chip controls the output of a constant current according to the PWM signal, which is used to regulate the length of the LED light beads of different colors, so as to achieve the information interconnection between Zigbee and Ethernet. Realize the remote control of the switch, light color and brightness of the light bulb.

值得注意的是,主控芯片可以为CC2530芯片或CC2630芯片或EM3587芯片,覆盖范围扩展器可以为CC2592芯片。这里以CC2530芯片为例进行说明,CC2530芯片与CC2592芯片间的连接方式如图4所示,CC2592芯片的ANT接口通过电感L111与电容C111与天线连接;CC2530芯片的RF_N接口通过电容C21、电感L42与CC2592芯片的RF_N接口连接;CC2530芯片的RF_P接口通过电容C41、电感L41与CC2592芯片的RF_P接口连接;CC2530芯片的PA_EN(P1_1)接口、LNA_EN(P1_4)接口和HGM_EN(P0_7)接口分别与CC2592芯片的PEAN接口、EN接口和HGM接口连接。在本实施方式中,在CC2530芯片与CC2592芯片之间采用上述连接方式进行连接,相对于现有Zigbee网关中单独采用CC2530芯片作为无线通信装置,具体连接方式如图5所示,有助于提高CC2530芯片中接收机的灵敏度,使得Zigbee网络中每个节点的范围都能得到显著的提高,从而减小距离对Zigbee网关和智能灯泡的限制,进一步保障了智能终端对智能灯泡的远距离控制。It is worth noting that the main control chip can be CC2530 chip, CC2630 chip or EM3587 chip, and the coverage extender can be CC2592 chip. Here we take the CC2530 chip as an example. The connection between the CC2530 chip and the CC2592 chip is shown in Figure 4. The ANT interface of the CC2592 chip is connected to the antenna through the inductor L111 and the capacitor C111; the RF_N interface of the CC2530 chip is connected through the capacitor C21 and the inductor L42. Connect with the RF_N interface of the CC2592 chip; the RF_P interface of the CC2530 chip is connected with the RF_P interface of the CC2592 chip through the capacitor C41 and the inductor L41; The PEAN interface, EN interface and HGM interface of the chip are connected. In this embodiment, the above-mentioned connection method is used to connect between the CC2530 chip and the CC2592 chip. Compared with the existing Zigbee gateway that uses the CC2530 chip alone as a wireless communication device, the specific connection method is shown in Figure 5, which helps to improve The sensitivity of the receiver in the CC2530 chip enables the range of each node in the Zigbee network to be significantly improved, thereby reducing the distance limitation on the Zigbee gateway and the smart light bulb, and further ensuring the remote control of the smart terminal to the smart light bulb.

本实施方式相对于现有技术而言,采用的是基于Zigbee网关的智能终端的远程控制系统,工作于2.4GHz的频率条件下,由于上述远程控制系统采用CC2530芯片、范围覆盖扩展器CC2592及天线的组合作为无线通信装置,可将该Zigbee网关的覆盖范围扩大至少5倍,显著增强了Zigbee网关的无线传输能力;在需要对智能灯泡的开关、灯光颜色或明暗程度进行调节时,通过智能终端发送控制信号,经由Zigbee网关传送给智能灯泡,智能灯泡中的无线单片机对接收到的信号进行解析处理,并输出PWM信号给LED驱动芯片,使得LED驱动芯片根据PWM信号控制输出恒定电流,用于控制不同颜色LED灯珠发光时间的长短,达到Zigbee与以太网的信息互联,实现对智能灯泡的开关、灯光颜色及明暗程度进行远程调节,给予用户更加良好的体验;另外,CC2530芯片整合了全集成的高性能的射频收发器和高性能低功耗的8051微控制器,具有优良的无线接收灵敏度和抗干扰性,且其从睡眠模式到工作模式的激活转换时间超短,能保证较长的电池使用时间,适用于搭建功能齐全价格低廉的网络节点;CC2592覆盖范围扩展器是一款针对低功率和低压2.4GHz无线应用的经济高效且高性能、支持少量外部材料清单的高集成解决方案,可降低成本,简化布局;使得利用上述智能终端的远程控制系统易于实现对智能灯泡的远距离调控,且功耗和成本低、安全性高、抗干扰能力好、系统稳定。Compared with the prior art, this embodiment adopts the remote control system based on Zigbee gateway intelligent terminal, which works under the frequency condition of 2.4GHz, because the above remote control system adopts CC2530 chip, range coverage expander CC2592 and antenna As a wireless communication device, the coverage of the Zigbee gateway can be expanded by at least 5 times, which significantly enhances the wireless transmission capability of the Zigbee gateway; when it is necessary to adjust the switch, light color or brightness of the smart bulb, through the smart terminal Send the control signal to the smart light bulb through the Zigbee gateway. The wireless microcontroller in the smart light bulb analyzes and processes the received signal, and outputs the PWM signal to the LED driver chip, so that the LED driver chip controls and outputs a constant current according to the PWM signal. Control the length of the light-emitting time of different colors of LED lamp beads, achieve the information interconnection between Zigbee and Ethernet, realize remote adjustment of the switch, light color and brightness of the smart light bulb, and give users a better experience; in addition, the CC2530 chip integrates all The integrated high-performance RF transceiver and high-performance low-power 8051 microcontroller have excellent wireless receiving sensitivity and anti-interference, and its activation transition time from sleep mode to work mode is ultra-short, which can ensure a long The battery life of the battery is suitable for building a full-featured and inexpensive network node; the CC2592 coverage extender is a cost-effective, high-performance, high-integration solution with a small external bill of materials for low-power and low-voltage 2.4GHz wireless applications , can reduce cost and simplify layout; make it easy to realize remote control of smart light bulbs by using the remote control system of the above-mentioned smart terminal, and has low power consumption and cost, high security, good anti-interference ability, and stable system.

另外,应用处理器为STM32F107或AM3352或STM32F103或STM32F205或STM32F207或SPEAR320或MT7620A或MT7620N或RTL8196E或RTL8196EU或S3C2416或S3C6440或S5P6442芯片,以太网控制芯片为DP83848芯片。在本实施方式中,以基于ARM-Cortex-M3核的STM32F107芯片作为应用处理器进行说明,其最高工作频率为72MHz,内置高速存储器,具有丰富的增强I/O端口和外设资源,但并未提供物理层接口,选择DP83848作为以太网物理层接口器件,能够实现CS.MA/CD的部分功能,为数据的可靠传输提供保障;而DP83848控制芯片是一款鲁棒性好、功能全、功耗低的10/100Mbps单路物理层器件,它支持RMII接口、10BASE~T和100BASE~TX以太网外设,且具有良好的兼容性和通用性,能够更好地适应工业控制和工厂自动化,以及通用嵌入式系统等应用场合;并利用RMII以太网接口连接STM32F107芯片与DP83848芯片,降低了多端口设备硬件设计的复杂度,降低了系统功耗及成本,从而实现利用上述智能终端的远程控制系统进行数据的快速、远距离传输。In addition, the application processor is STM32F107 or AM3352 or STM32F103 or STM32F205 or STM32F207 or SPEAR320 or MT7620A or MT7620N or RTL8196E or RTL8196EU or S3C2416 or S3C6440 or S5P6442 chip, and the Ethernet control chip is DP83848 chip. In this embodiment, the STM32F107 chip based on the ARM-Cortex-M3 core is used as the application processor for illustration. No physical layer interface is provided, and DP83848 is selected as the Ethernet physical layer interface device, which can realize some functions of CS.MA/CD and provide guarantee for reliable data transmission; and DP83848 control chip is a robust, full-featured, 10/100Mbps single-channel physical layer device with low power consumption, it supports RMII interface, 10BASE~T and 100BASE~TX Ethernet peripherals, and has good compatibility and versatility, which can better adapt to industrial control and factory automation , and general embedded systems and other applications; and use the RMII Ethernet interface to connect the STM32F107 chip and the DP83848 chip, which reduces the complexity of multi-port device hardware design, reduces system power consumption and cost, and thus realizes the use of the above-mentioned intelligent terminal. The control system performs fast and long-distance transmission of data.

另外,智能灯泡为N个,N为自然数。也就是说,智能灯泡可以是一个,也可以是多个,由于采用覆盖范围扩展器CC2592和主控芯片CC2530芯片的组合实现了信号覆盖范围的扩大,使得利用上述智能终端的远程控制系统能够实现对一个或多个智能灯泡的监控及管理。In addition, there are N smart light bulbs, and N is a natural number. That is to say, there can be one or more smart light bulbs. Since the combination of the coverage extender CC2592 and the main control chip CC2530 chip realizes the expansion of the signal coverage, the remote control system using the above-mentioned smart terminal can realize Monitoring and management of one or more smart light bulbs.

另外,无线单片机为CC2530芯片,LDO为7533-1芯片,LED驱动芯片为常用的横流驱动PAM2861芯片。其中,LED灯珠发出灯光为红、绿、蓝、白等各种颜色,具体的各种颜色的LED灯珠的数量可以依照特定情况来确定。其中,PAM2861芯片是一款于连续工作模式下的降压转换器,内置高精度电流检测器,能通过外置电阻设定输出电流。电流检测电压极低,只有0.1V,输出横流精度为2%,十分有利于延长LED灯珠产品的使用寿命,也能使灯光效果更加真实。利用智能终端向云服务器发送信号,并通过Zigbee网关将信号发送给智能灯泡,智能灯泡中的CC2530芯片对接收到的信号进行解析处理,并输出PWM信号给LED驱动芯片,LED驱动芯片根据PWM信号控制输出恒定电流,用于控制红、绿、蓝、白等各种颜色的LED灯珠发光时间的长短,控制智能灯泡灯光颜色的变化,从而实现利用智能终端对智能灯泡的开关、灯光颜色及明暗程度进行远程监控和调节,给予用户更加良好的体验。In addition, the wireless microcontroller is the CC2530 chip, the LDO is the 7533-1 chip, and the LED driver chip is the commonly used cross-flow driver PAM2861 chip. Wherein, the LED lamp beads emit lights in various colors such as red, green, blue, and white, and the specific quantity of LED lamp beads of various colors can be determined according to specific conditions. Among them, the PAM2861 chip is a step-down converter in continuous working mode, with a built-in high-precision current detector, which can set the output current through an external resistor. The current detection voltage is extremely low, only 0.1V, and the output cross-current accuracy is 2%, which is very beneficial to prolong the service life of LED lamp bead products, and can also make the lighting effect more realistic. Use the smart terminal to send signals to the cloud server, and send the signal to the smart light bulb through the Zigbee gateway. The CC2530 chip in the smart light bulb analyzes the received signal and outputs the PWM signal to the LED driver chip. The LED driver chip is based on the PWM signal. Control output constant current, used to control red, green, blue, white and other colors of LED light emitting time length, control the change of light color of smart bulbs, so as to realize the use of smart terminals to control the switch of smart bulbs, light color and Remote monitoring and adjustment of brightness and darkness can give users a better experience.

另外,智能终端为PDA、智能手机或平板电脑。利用智能灯泡采集相应数据,通过网关传送到云服务器上,最终通过互联网显示在PDA、智能手机或平板电脑上,并通过PDA、智能手机或平板电脑发出控制信号,对智能灯泡进行远距离监控和灵活的调节,为用户带来更加良好的用户体验。In addition, the intelligent terminal is a PDA, a smart phone or a tablet computer. Use the smart light bulb to collect the corresponding data, transmit it to the cloud server through the gateway, and finally display it on the PDA, smart phone or tablet computer through the Internet, and send a control signal through the PDA, smart phone or tablet computer to remotely monitor and control the smart light bulb. Flexible adjustment brings users a better user experience.

本实用新型的第二实施方式涉及一种智能终端的远程控制系统,如图6所示。本实施方式与第一实施方式大致相同,主要区别在于:在第一实施方式中,网关为Zigbee网关,网络为Zigbee网络,主控芯片为CC2530芯片或CC2630芯片或EM3587芯片;在本实施方式中,网关为蓝牙网关,网络为蓝牙网络;如图7所示,蓝牙网关中的主控芯片为CC2540芯片或CC2640芯片或Nordic nRF51822芯片。其中,蓝牙网关工作在免许可的2.4GHz ISM射频频段,具有跳频快、功耗低、灵活性强,且易于穿透障碍物,能够实现全方位的数据传输等优点,将其应用在上述控制系统中,利用智能终端发送控制信号,经蓝牙网关传送给智能灯泡,智能灯泡中的无线单片机对接收到的信号解析处理并输出PWM信号给LED驱动芯片。根据PWM信号,LED驱动芯片控制输出恒定电流,进而控制不同颜色LED灯珠发光时间的长短,实现对智能灯泡的开关、灯光颜色及明暗程度的远程调节,给予用户更加良好的体验。The second embodiment of the present utility model relates to a remote control system of an intelligent terminal, as shown in FIG. 6 . This embodiment is roughly the same as the first embodiment, and the main difference is: in the first embodiment, the gateway is a Zigbee gateway, the network is a Zigbee network, and the main control chip is a CC2530 chip or a CC2630 chip or an EM3587 chip; in this embodiment , the gateway is a Bluetooth gateway, and the network is a Bluetooth network; as shown in Figure 7, the main control chip in the Bluetooth gateway is a CC2540 chip or a CC2640 chip or a Nordic nRF51822 chip. Among them, the Bluetooth gateway works in the license-free 2.4GHz ISM radio frequency band, which has the advantages of fast frequency hopping, low power consumption, strong flexibility, easy to penetrate obstacles, and can realize all-round data transmission. It is applied in the above-mentioned In the control system, the smart terminal is used to send control signals to the smart light bulb through the Bluetooth gateway. The wireless single-chip microcomputer in the smart light bulb analyzes and processes the received signal and outputs a PWM signal to the LED driver chip. According to the PWM signal, the LED driver chip controls the output of a constant current, and then controls the length of the LED light beads of different colors to realize the remote adjustment of the switch, light color and brightness of the smart bulb, giving users a better experience.

值得注意的是,上述远程控制系统采用适用于2.4GHz蓝牙网关的CC2540芯片或CC2640芯片或Nordic nRF51822芯片作为主控芯片,这里以CC2540芯片为例进行说明,CC2540芯片的具体结构如图8所示,芯片上集成有高性能、低功耗的8051微控制器内核和射频收发器、8路输入8~14位模数转换器(Analog to Digital,简称“ADC”)、高级加密标准(AdvancedEncryption Standard,简称“AES”)协处理器等,具有功耗低、体积小、传输距离远、抗干扰能力强等特点。利用该芯片上集成的ADC进行数据解析,并传送给智能灯泡进行相应处理,能够实现功耗低、安全性高的无线数据传输;同时,将上述CC2540芯片与覆盖范围扩展器CC2592芯片组合使用,能够将信号覆盖范围扩大至少5倍,减小距离对Zigbee网关和智能灯泡的限制,进而实现对智能灯泡的远程控制。It is worth noting that the above-mentioned remote control system adopts the CC2540 chip or CC2640 chip or Nordic nRF51822 chip suitable for 2.4GHz Bluetooth gateway as the main control chip. Here, the CC2540 chip is used as an example for illustration. The specific structure of the CC2540 chip is shown in Figure 8 , the chip integrates a high-performance, low-power 8051 microcontroller core and RF transceiver, 8-channel input 8-14-bit analog-to-digital converter (Analog to Digital, referred to as "ADC"), Advanced Encryption Standard (Advanced Encryption Standard , referred to as "AES") coprocessor, etc., has the characteristics of low power consumption, small size, long transmission distance, and strong anti-interference ability. The ADC integrated on the chip is used to analyze the data and send it to the smart light bulb for corresponding processing, which can realize wireless data transmission with low power consumption and high security; at the same time, the above-mentioned CC2540 chip is used in combination with the coverage extender CC2592 chip, It can expand the signal coverage by at least 5 times, reduce the distance limitation on Zigbee gateways and smart light bulbs, and then realize the remote control of smart light bulbs.

在本实施方式中,由于采用了蓝牙技术,具有功耗低、速度快等优点,只要在有效范围内,可以穿透不同的物质,且设备间的互联对角度没有限定,将采用了蓝牙技术的网关应用在上述远程控制系统中,大大增强了使用的便捷性;在蓝牙网关中,将范围扩展器CC2592芯片与CC2540芯片或CC2640芯片或Nordic nRF51822芯片结合在一起使用,有效扩大了信号的覆盖范围,显著增强了蓝牙网关的无线传输能力;另外,将CC2540芯片或CC2640芯片或Nordic nRF51822芯片作为主控芯片,利用该主控芯片与智能灯泡中的无线单片机之间的数据交互,能够通过控制红、绿、蓝、白等各种颜色的LED灯珠发光时间的长短来实现对于智能灯泡开关及灯光颜色的控制,给用户带来便利,具有功耗低、安全性高和传输距离远等特点。In this embodiment, due to the use of Bluetooth technology, it has the advantages of low power consumption and fast speed. As long as it is within the effective range, it can penetrate different substances, and the interconnection between devices has no limitation on the angle. Bluetooth technology will be used. The application of the gateway in the above-mentioned remote control system greatly enhances the convenience of use; in the Bluetooth gateway, the range extender CC2592 chip is combined with the CC2540 chip or CC2640 chip or Nordic nRF51822 chip to effectively expand the coverage of the signal range, which significantly enhances the wireless transmission capability of the Bluetooth gateway; in addition, the CC2540 chip or CC2640 chip or Nordic nRF51822 chip is used as the main control chip, and the data interaction between the main control chip and the wireless microcontroller in the smart light bulb can be controlled by Red, green, blue, white and other colors of LED beads light up the length of time to realize the control of smart light bulb switch and light color, which brings convenience to users, has low power consumption, high safety and long transmission distance, etc. features.

本实用新型的第三实施方式涉及一种智能终端的远程控制系统,如图9所示,本实施方式与第一实施方式大致相同,主要区别在于:在第一实施方式中,网关为Zigbee网关,网络为Zigbee网络,主控芯片为CC2530芯片或CC2630芯片或EM3587芯片;而在本实施方式中,网关为JenNet-IP网关,网络为JenNet-IP网络,其中,如图10所示,JenNet-IP网关中的主控芯片为JN5168芯片。在上述远程控制系统中,JenNet-IP网关通过JenNet-IP网络向智能灯泡传送数据,其中,JenNet-IP网关以一种可扩展的IP平台为基础,为上述智能终端的远程控制系统提供一种稳健的自我修复型树状网络,可支持500个以上的节点以及网际协议版本4(Internet Protocol version 4,简称“IPv4”)和网际协议版本6(Internet Protocol version 6,简称“IPv6”)标准、提供128位AES加密算法,具有网络升级能力、占用存储空间小且安全性极高等特性,与Zigbee相比,本实施方式中采用的JenNet-IP可以随意组建私有网络而不需要授权,一方面缩短了认证时间及步骤,另一方面则是节约了授权认证费用。The third embodiment of the present utility model relates to a remote control system of an intelligent terminal. As shown in FIG. 9, this embodiment is roughly the same as the first embodiment, and the main difference is that in the first embodiment, the gateway is a Zigbee gateway , the network is a Zigbee network, and the main control chip is a CC2530 chip or a CC2630 chip or an EM3587 chip; and in this embodiment, the gateway is a JenNet-IP gateway, and the network is a JenNet-IP network, wherein, as shown in Figure 10, the JenNet- The main control chip in the IP gateway is JN5168 chip. In the above-mentioned remote control system, the JenNet-IP gateway transmits data to the smart light bulb through the JenNet-IP network, wherein the JenNet-IP gateway is based on a scalable IP platform to provide a remote control system for the above-mentioned smart terminal. Robust self-healing tree network that can support more than 500 nodes and Internet Protocol version 4 (Internet Protocol version 4, referred to as "IPv4") and Internet Protocol version 6 (Internet Protocol version 6, referred to as "IPv6") standards, Provides 128-bit AES encryption algorithm, has the characteristics of network upgrade capability, small storage space and high security. Compared with Zigbee, the JenNet-IP adopted in this implementation mode can set up a private network at will without authorization. On the one hand, it shortens the On the other hand, it saves the cost of authorization and authentication.

另外,JN5168芯片为一款超低功耗、高性能的无线片上系统芯片,如图11所示,该芯片内置增强型32位RISC处理器、一个2.4GHz IEEE802.15.4标准的收发器和一个全面的混合模拟和数字外设,内嵌最高32K Flash、最高256K Flash和4kB EEPROM;并包含SPI接口、UART接口、I2C接口、PWM接口等,其中SPI可用于连接其他外部内存,PWM接口可用于访问PWM等;并且JN5168芯片兼容JenNet-IP、Zigbee等多种网络协议栈,使得智能灯泡能够不受协议的限制,进一步扩大了上述远程控制系统的适用范围;该芯片支持点对点、星形网络、树形网络、网状网络等组网方式,能够满足各种标准以及非标准的网络拓扑需求,使用户能够在最短的时间内,以最经济的设计实现基于JenNet-IP或Zigbee的无线网络系统,使得通过智能终端能够实现对于智能灯泡的远距离灵活调控,且功耗极低。In addition, the JN5168 chip is an ultra-low power consumption, high-performance wireless system-on-chip chip, as shown in Figure 11, the chip has a built-in enhanced 32-bit RISC processor, a 2.4GHz IEEE802.15.4 standard transceiver and a comprehensive Mixed analog and digital peripherals, embedded up to 32K Flash, up to 256K Flash and 4kB EEPROM; and includes SPI interface, UART interface, I2C interface, PWM interface, etc., where SPI can be used to connect other external memories, and PWM interface can be used to access PWM, etc.; and the JN5168 chip is compatible with various network protocol stacks such as JenNet-IP, Zigbee, etc., so that the smart light bulb can not be restricted by the protocol, and further expands the scope of application of the above remote control system; the chip supports point-to-point, star network, tree Formed network, mesh network and other networking methods can meet various standard and non-standard network topology requirements, enabling users to realize a wireless network system based on JenNet-IP or Zigbee in the shortest time and with the most economical design. It enables remote and flexible control of smart light bulbs through smart terminals with extremely low power consumption.

在本实施方式中,由于采用基于JenNet-IP的智能终端的远程控制系统,可以通过JenNet-IP无线网络连接数十台甚至数百台设备,具有无线IP连接、节能和低待机功耗等特点,能够最大限度地节省能源。在具体的操作过程中,可以通过PDA、智能手机、平板电脑等发送控制信号给云服务器,并经由JenNet-IP网关及JenNet-IP网络传送给智能灯泡中的CC2530芯片,该芯片对接收数据进行解析处理,并输出PWM信号给LED驱动芯片,并由LED驱动芯片PAM2861根据PWM信号控制输出恒定电流,对各种颜色的LED灯珠的发光时间进行调节,达到JenNet-IP与以太网的信息互联,从而实现利用智能终端对智能灯泡的开关、灯光颜色及明暗程度进行远距离的调控,带给用户更加良好的体验;另外,以JN5168芯片为主控芯片,使得该网关能够支持包括Zigbee、JenNet-IP协议在内的多个网络堆栈,并且功耗极低;在上述智能终端的远程控制系统中使用上述JN5168芯片,使接入的智能灯泡能够不受协议的限制,提高该远程控制系统的兼容性,扩大适用范围,并能够有效降低功耗及成本。In this embodiment, since the remote control system based on the JenNet-IP intelligent terminal is used, dozens or even hundreds of devices can be connected through the JenNet-IP wireless network, which has the characteristics of wireless IP connection, energy saving and low standby power consumption. , can save energy to the greatest extent. In the specific operation process, the control signal can be sent to the cloud server through PDA, smart phone, tablet computer, etc., and then sent to the CC2530 chip in the smart light bulb through the JenNet-IP gateway and JenNet-IP network, and the chip performs data processing on the received data. Analyze and process, and output the PWM signal to the LED driver chip, and the LED driver chip PAM2861 controls the output of a constant current according to the PWM signal, and adjusts the light-emitting time of the LED lamp beads of various colors to achieve the information interconnection between JenNet-IP and Ethernet , so as to realize the long-distance regulation and control of the switch, light color and brightness of the smart bulb by using the smart terminal, and bring users a better experience; in addition, the JN5168 chip is used as the main control chip, so that the gateway can support Zigbee, JenNet -Multiple network stacks including the IP protocol, and the power consumption is extremely low; the above-mentioned JN5168 chip is used in the remote control system of the above-mentioned smart terminal, so that the connected smart light bulb can not be restricted by the protocol, and the remote control system can be improved. Compatibility, expanding the scope of application, and can effectively reduce power consumption and cost.

本领域的普通技术人员可以理解,上述各实施方式是实现本实用新型的具体实施例,而在实际应用中,可以在形式上和细节上对其作各种改变,而不偏离本实用新型的精神和范围。Those of ordinary skill in the art can understand that the above-mentioned embodiments are specific examples for realizing the utility model, and in practical applications, various changes can be made to it in form and details without departing from the utility model spirit and scope.

Claims (10)

1. a tele-control system for intelligent terminal, is characterized in that, comprises: acquisition terminal node, network, gateway, Ethernet, Cloud Server, the Internet and intelligent terminal;
Described acquisition terminal node is connected with described gateway by described network;
Described gateway is connected with described Cloud Server by described Ethernet;
Described Cloud Server is connected with described intelligent terminal by described the Internet;
Wherein, described gateway comprises radio communication device and application processor;
Described radio communication device comprises main control chip, coverage extension device and antenna;
Described main control chip is connected with described application processor, and described antenna is connected with described main control chip by described coverage extension device;
Described acquisition terminal node is intelligent bulbs;
Described intelligent bulbs comprises power supply, wireless singlechip, step-down controller LDO, LED drive chip and LED lamp bead;
Described power supply is connected with described wireless singlechip by described LDO; Described power supply is all connected with described LED lamp bead by described LED drive chip with described wireless singlechip.
2. the tele-control system of a kind of intelligent terminal according to claim 1, is characterized in that, described coverage extension device is CC2592 chip;
The ANT interface of described CC2592 chip is connected with described antenna with electric capacity C111 by inductance L 111;
The RF_N interface of described main control chip is connected with the RF_N interface of described CC2592 chip by electric capacity C21, inductance L 42;
The RF_P interface of described main control chip is connected with the RF_P interface of described CC2592 chip by electric capacity C41, inductance L 41;
The PA_EN interface of described main control chip, LNA_EN interface and HGM_EN interface are connected with the PEAN interface of described CC2592 chip, EN interface and HGM interface respectively.
3. the tele-control system of a kind of intelligent terminal according to claim 1, is characterized in that, described gateway is Zigbee gateway, and described main control chip is CC2530 chip or CC2630 chip or EM3587 chip.
4. the tele-control system of a kind of intelligent terminal according to claim 1, is characterized in that, described gateway is Bluetooth gateway, and described main control chip is CC2540 chip or CC2640 chip or nRF51822 chip.
5. the tele-control system of a kind of intelligent terminal according to claim 1, is characterized in that, described gateway is JenNet-IP gateway, and described main control chip is JN5168 chip.
6. the tele-control system of a kind of intelligent terminal according to claim 1, it is characterized in that, described gateway also comprises ethernet control chip and RJ45 interface, described main control chip is connected with described application processor by UART serial ports, described application processor is connected with described ethernet control chip by RMII serial ports, and described ethernet control chip is connected with described RJ45 interface.
7. the tele-control system of a kind of intelligent terminal according to claim 6, is characterized in that, described application processor is any one chip following:
STM32F107、AM3352、STM32F103、STM32F205、STM32F207、SPEAR320、MT7620A、MT7620N、RTL8196E、RTL8196EU、S3C2416、S3C6440、S5P6442;
Described ethernet control chip is DP83848 chip.
8. the tele-control system of a kind of intelligent terminal according to claim 1, is characterized in that, described intelligent bulbs is N number of, and N is natural number.
9. the tele-control system of a kind of intelligent terminal according to claim 1, is characterized in that, described wireless singlechip is CC2530 chip, and described LDO is 7533-1 chip, and described LED drive chip is PAM2861 chip.
10. the tele-control system of a kind of intelligent terminal according to claim 1, is characterized in that, described intelligent terminal is PDA, smart mobile phone or panel computer.
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CN105185085A (en) * 2015-09-22 2015-12-23 小米科技有限责任公司 Data communication system, method and device
CN105376702A (en) * 2015-11-27 2016-03-02 山东阿拉丁信息技术有限公司 Locating system
CN106973451A (en) * 2016-01-13 2017-07-21 江西奥科特照明科技有限公司 A kind of Intelligent LED lighting control system
DE102016011815B3 (en) * 2016-10-05 2018-02-15 IAD Gesellschaft für Informatik, Automatisierung und Datenverarbeitung mbH Control gear with staggered overvoltage and overcurrent protection for the control of intelligent light sources and devices as well as light sources with this control gear
CN110120902A (en) * 2019-03-25 2019-08-13 电子科技大学 A kind of messaging systems of smart home system
CN110519869A (en) * 2019-07-30 2019-11-29 江苏富联通讯技术有限公司 A kind of achievable batch intelligently adjusts the Bluetooth gateway and its application method of lamp brightness
CN112601315A (en) * 2020-12-28 2021-04-02 温州晶彩光电有限公司 Intelligent lighting system based on cloud platform and brightness and full-color adjusting method thereof
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CN105185085B (en) * 2015-09-22 2018-12-18 小米科技有限责任公司 Data communication system, method and device
CN105185085A (en) * 2015-09-22 2015-12-23 小米科技有限责任公司 Data communication system, method and device
CN105376702A (en) * 2015-11-27 2016-03-02 山东阿拉丁信息技术有限公司 Locating system
CN106973451A (en) * 2016-01-13 2017-07-21 江西奥科特照明科技有限公司 A kind of Intelligent LED lighting control system
US11252803B2 (en) 2016-10-05 2022-02-15 IAD Gesellschaft für Informatik, Automatisierung und Datenverarbeitung mbH Operating device with staggered protection circuits against overvoltage and overcurrent and antenna for driving intelligent lamps and lighting appliances
WO2018065120A2 (en) 2016-10-05 2018-04-12 Iad Gesellschaft Für Informatik Automatisierung Und Datenverarbeitung Mbh Operating device with staggered protection circuits against overvoltage and overcurrent and antenna for driving intelligent lamps and lighting appliances
DE102016011815B3 (en) * 2016-10-05 2018-02-15 IAD Gesellschaft für Informatik, Automatisierung und Datenverarbeitung mbH Control gear with staggered overvoltage and overcurrent protection for the control of intelligent light sources and devices as well as light sources with this control gear
CN110120902A (en) * 2019-03-25 2019-08-13 电子科技大学 A kind of messaging systems of smart home system
CN110519869A (en) * 2019-07-30 2019-11-29 江苏富联通讯技术有限公司 A kind of achievable batch intelligently adjusts the Bluetooth gateway and its application method of lamp brightness
CN110519869B (en) * 2019-07-30 2022-06-17 江苏富联通讯技术有限公司 Bluetooth gateway capable of realizing batch intelligent lamp brightness adjustment and use method thereof
CN112601315A (en) * 2020-12-28 2021-04-02 温州晶彩光电有限公司 Intelligent lighting system based on cloud platform and brightness and full-color adjusting method thereof
CN114844783A (en) * 2021-01-14 2022-08-02 新智云数据服务有限公司 Agent starting deployment system based on cloud platform computing decision
CN114844783B (en) * 2021-01-14 2024-04-19 新智云数据服务有限公司 Agent starting deployment system based on cloud platform calculation decision

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