WO2013029367A1 - 带气象站的万年历 - Google Patents

带气象站的万年历 Download PDF

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Publication number
WO2013029367A1
WO2013029367A1 PCT/CN2012/072596 CN2012072596W WO2013029367A1 WO 2013029367 A1 WO2013029367 A1 WO 2013029367A1 CN 2012072596 W CN2012072596 W CN 2012072596W WO 2013029367 A1 WO2013029367 A1 WO 2013029367A1
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Prior art keywords
perpetual calendar
weather
weather station
station according
information
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PCT/CN2012/072596
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English (en)
French (fr)
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陈芒
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深圳市超维实业有限公司
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Publication of WO2013029367A1 publication Critical patent/WO2013029367A1/zh

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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09DRAILWAY OR LIKE TIME OR FARE TABLES; PERPETUAL CALENDARS
    • G09D3/00Perpetual calendars
    • G09D3/12Perpetual calendars electrically operated

Definitions

  • the invention relates to a perpetual calendar, in particular to a perpetual calendar with a weather station.
  • the perpetual calendar is a common item in many families. Through the perpetual calendar, people can clearly understand date and time information, such as lunar and solar calendar, festivals and 24 solar terms. However, not only date and time information, but also weather information, weather information will directly affect people's travel or work. But the current perpetual calendar only shows the effect of date and time. If you want to know the real-time weather information, you need to install another weather station, which is too cumbersome for home decoration.
  • the technical problem to be solved by the present invention is to provide a perpetual calendar with a weather station for the defect that the perpetual calendar can only display date and time information in the prior art.
  • a perpetual calendar with a weather station comprising a perpetual calendar with a display screen and an outdoor weather station connected with the perpetual calendar wireless communication;
  • the weather station includes at least one weather sensor, a second wireless interface, and a power source, and the meteorological information collected by the weather sensor is transmitted to the wireless network via the second wireless interface;
  • the perpetual calendar includes a first wireless interface, a control circuit, and a memory and power supply device, the first wireless interface receiving weather information from a weather station via a wireless network, and storing the weather information to the memory; the control circuit The weather information stored in the memory is read and processed, and the processed weather information is transmitted to the display screen of the perpetual calendar for display.
  • the weather sensor includes a wind speed sensor, a wind direction sensor, a rain sensor, a barometric pressure sensor, a temperature sensor, and a humidity sensor.
  • the perpetual calendar further includes a button through which the user inputs a button command
  • the button commands include opening a perpetual calendar, restarting a perpetual calendar, resetting time parameters, and resetting date parameters.
  • the perpetual calendar further includes a timer for transmitting a time signal command to the control circuit.
  • the time signal command is a time interval for updating weather information.
  • the time interval for updating the weather information is a preset fixed value or is set by the key input.
  • the perpetual calendar further includes a speaker, and the control circuit processes the received weather information into a voice signal and transmits the signal to the speaker.
  • the wireless communication is Ethernet communication, infrared communication, Bluetooth communication, or radio frequency communication.
  • the wireless communication is radio frequency communication, and the radio frequency is 433 KHz; wherein the second radio interface is a radio frequency transmitter, and the first radio interface is a radio frequency receiver.
  • the perpetual calendar with a weather station further includes an NFC unit connected to the control circuit for short-range communication with the mobile terminal to acquire weather information from the Internet, and store the weather information in the memory.
  • the control circuit reads and processes the weather information stored in the memory, and transmits the processed weather information to a display screen for display.
  • the weather information includes weather forecast information.
  • the perpetual calendar further includes a second button connected to the control circuit, and when the second button is pressed, the NFC unit exchanges information with a nearby mobile terminal.
  • the perpetual calendar also includes a third button coupled to the control circuit, the display screen displaying weather information from the NFC unit when the third button is depressed.
  • the perpetual calendar also includes an LED indicator light coupled to the control circuit that indicates the operational status of the NFC unit.
  • the invention has the following beneficial effects: since the outdoor weather station is provided in the perpetual calendar with the weather station of the invention, the outdoor weather information, including temperature, humidity and rainfall, can be collected in real time; because the outdoor weather station and the indoor Perpetual calendar wireless communication connection, so the meteorological information collected in real time can be displayed on the display screen of the perpetual calendar, so people can always know the temperature dynamic information of the outdoor while watching the perpetual calendar, without relying on the prior weather forecast, and only Relying on indoor temperature and humidity data and pressure data is more accurate, which is conducive to people's work and travel.
  • FIG. 1 is a logic block diagram of a perpetual calendar with a weather station according to an embodiment of the present invention
  • FIG. 2 is a schematic structural view of a display screen of the perpetual calendar of FIG. 1;
  • FIG. 3 is a schematic structural diagram of an example of a display screen of the perpetual calendar of FIG. 2;
  • FIG. 4 is a logic block diagram of a perpetual calendar with a weather station in accordance with a preferred embodiment of the present invention
  • Figure 5 is a schematic structural view of the display screen of the perpetual calendar of Figure 4.
  • FIG. 6 is a schematic structural diagram of a display screen of the perpetual calendar of FIG. 5.
  • FIG. 6 is a schematic structural diagram of a display screen of the perpetual calendar of FIG. 5.
  • the perpetual calendar with the weather station includes a perpetual calendar 100 of wireless communication connections and a weather station 200, wherein the perpetual calendar 100 is installed indoors and the weather station 200 is installed outdoors.
  • 1 shows a logic block diagram of a perpetual calendar with a weather station in accordance with an embodiment of the present invention.
  • the weather station 100 includes a housing and at least one weather sensor 210, a second wireless interface 220, and a power source (not shown in FIG. 1) disposed in the housing.
  • the weather sensor 210 includes a wind speed sensor, a wind direction sensor, a rain sensor, a barometric pressure sensor, a temperature sensor or a humidity sensor, etc.
  • the weather sensor 210 can collect outdoor weather information, including temperature, loudness humidity, rainfall, wind speed, and the like.
  • the weather sensor 210 is electrically connected to the second wireless interface 230, and the second wireless interface 230 can be connected to the wireless network, so that the weather station 200 can communicate with the wireless network to exchange data, and the meteorological information collected by the weather sensor 210 is passed.
  • the second wireless interface 220 is sent to the wireless network.
  • the power source can be, for example, a dry battery or a solar photovoltaic cell for providing operational power to various components in the weather station 200.
  • the perpetual calendar 100 includes a housing with a display screen 140, wherein the housing is mounted with a speaker 150 and a button 160 in which the first wireless interface 110, the control circuit 120, the timer 130, the memory 170, and the power supply device are mounted. Not shown in 1).
  • the user can input a button command through the button 160 and transmit it to the control 120.
  • the button command can be, for example, a calendar to turn on the perpetual calendar, restart the perpetual calendar, reset the time parameter, reset the date parameter, set the time interval for updating the weather information, and the like.
  • the timer 130 can send a time signal command to the control circuit 120 on the one hand; on the other hand, the timer 130 is electrically connected to the button 160 so that the timing can be controlled by the input of the button 160.
  • the timer 130 may also have a preset fixed timing duration.
  • the first wireless interface 110 can be accessed into a wireless network and communicatively coupled to the second wireless interface 230 of the weather station 200 via a wireless network for data transmission such that weather data received from the weather station 200 can be transmitted to the memory 170.
  • the memory 170 is electrically coupled to the first wireless interface 110 and the control circuit 120, respectively, for storing weather data received from the weather station 200 in real time, where the memory 170 can be optionally a random access memory (RAM).
  • the control circuit 120 can read the weather data from the memory 170, process the received weather data and the control command, and then transmit the display signal and the voice signal to the display screen 140 and the speaker 150, respectively. In use, the control circuit 120 can be selected from a single chip microcomputer.
  • the power supply unit is used to supply power to various components in the weather station through the utility power.
  • the display screen of the perpetual calendar with the weather station is no longer limited to displaying only information related to date and time, and can also display various information related to weather.
  • 2 is a schematic structural view of a display screen of a perpetual calendar.
  • the display screen 114 includes a weather parameter display area and a weather icon display in addition to the original perpetual calendar display area.
  • the perpetual calendar display area like the existing perpetual calendar display, can display date, time, solar terms, and the like.
  • the weather parameter display area can, for example, display temperature, relative humidity, and wind speed.
  • the weather icon display area may, for example, display a clear logo.
  • the wireless network here may be an Ethernet, an infrared, a Bluetooth or a radio frequency.
  • a wireless connection in a radio frequency mode is preferred.
  • the first wireless interface 110 in FIG. 1 is a radio frequency receiver, and the second wireless interface 230 For the RF transmitter.
  • the radio frequency is preferably 433 KHz.
  • the temperature is taken as an example to illustrate the operation process of the perpetual calendar with a weather station.
  • the temperature sensor 211 collects the temperature of the current outdoor.
  • the temperature parameter is sent to the second wireless interface 220 and sent to the first wireless interface 110 over the wireless network.
  • the first wireless interface 110 stores the received temperature parameters in real time into the memory 170 for use.
  • the user inputs the time duration of the timer 130 through the button 160, for example, 2 hours, so that the timer 130 sends a time signal command to the control circuit 120 every 2 hours.
  • the control circuit 120 reads the current weather data, such as temperature, from the memory 170.
  • the temperature parameter is processed, for example, by converting the temperature information into a digital display (e.g., 35 ° C) to the display 140 to display the data; and converting to a voice signal for reporting to the person in the room via the speaker 150.
  • the perpetual calendar 100 can provide real-time weather conditions, it cannot provide future weather forecasts.
  • the perpetual calendar 100 also includes The control circuit 120 is connected to the NFC unit 180 for short-range communication with the mobile terminal 300 to acquire weather information from the Internet and store the weather information in the memory 170, and the control circuit 120 reads and processes the weather stored in the memory 170.
  • the information is transmitted to the display screen 140 for display.
  • the NFC unit 180 is an existing NFC component, and includes, for example, a chip, an antenna, and software.
  • the mobile terminal 300 can be, for example, an existing smart phone, and of course can be other mobile devices capable of data interaction with the Internet.
  • the meteorological information obtained here includes both real-time weather information obtained from the Internet, weather forecast information for the next few days, weather trends, and weather warnings.
  • the data of the weather information may be transmitted to the perpetual calendar 100, or the weather information displayed on the mobile terminal 300 may be transmitted to the perpetual calendar 100 in the form of a picture.
  • the perpetual calendar 100 further includes a second button 191 connected to the control circuit 120.
  • the NFC unit 180 exchanges information with the nearby mobile terminal 300.
  • the perpetual calendar 100 does not need to always look for a suitable mobile terminal in the vicinity.
  • the perpetual calendar 100 further includes a third button 192 connected to the control circuit 120.
  • the display screen 140 displays weather information from the NFC unit 180 or updates the weather from the NFC unit 180. information.
  • the perpetual calendar 100 further includes an LED indicator (not shown in FIG. 4) indicating the operating state of the NFC unit 180 connected to the control circuit 120, for example, when the LED indicator is on, the display perpetual calendar 100 is being communicated with the mobile terminal 300. Communicate.
  • FIG. 5 shows a schematic diagram of a display screen 140 in accordance with the preferred embodiment.
  • the display screen 140 shown in FIG. 5 also includes a weather forecast display.
  • Fig. 6 shows an exemplary display diagram of the weather forecast display portion of Fig. 5, Fig. 6 shows the weather today, and shows the weather forecast for Tuesday to Friday, while also showing weather trends.
  • the weather condition of the outdoor can be detected in real time, so that people can know the current situation on the basis of obtaining the date and time information through the perpetual calendar.
  • Weather information does not need to rely on weather forecasts that may not be accurate.
  • it is more accurate to set up weather sensors outdoors than to rely solely on indoor temperature and humidity data and pressure data.
  • NFC unit in the perpetual calendar it is used to communicate with the mobile terminal, thereby obtaining more abundant weather information, such as weather forecasts, weather trends, and the like, from the Internet through the mobile terminal.
  • the weather information provided by the perpetual calendar is more abundant.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Controls And Circuits For Display Device (AREA)
  • Electric Clocks (AREA)

Abstract

一种带气象站(200)的万年历(100),包括带显示屏(140)的万年历(100)和与所述万年历(100)无线通信连接的室外气象站(200);其中,所述气象站(200)包括至少一个气象传感器(210)、第二无线接口(220)和电源,所述气象传感器(210)采集的气象信息经过所述第二无线接口(230)传输至无线网络;所述万年历(100)包括第一无线接口(110)、控制电路(120)、存储器(170)和电源装置,所述第一无线接口(110)通过无线网络接收来自气象站的气象信息,并将所述气象信息存储到所述存储器(170);所述控制电路(120)读取并处理所述存储器(170)中存储的气象信息,处理后的气象信息传输至万年历(100)的显示屏(140)以用于显示。采用本发明的带气象站(200)的万年历(100),人们可以随时了解室外的温度动态信息,不需要只依赖于事先的天气预报,从而有利于人们的工作和出行。

Description

带气象站的万年历 技术领域
本发明涉及万年历,尤其涉及一种带气象站的万年历。
背景技术
万年历是许多家庭常见的一种物品,通过万年历,人们可以清楚地了解日期和时间信息,如阴历和阳历、节日以及二十四节气等等。但是与人们日常生活息息相关的不仅有日期和时间信息,还有天气信息,天气信息将直接影响人们的出行或工作等。但是目前的万年历只有显示日期和时间的功效,如果想要了解实时天气信息,还需要再安装一个气象站,这对家庭装饰而言过于累赘。
发明内容
本发明要解决的技术问题在于,针对现有技术中万年历只能显示日期和时间信息的缺陷,提供一种带气象站的万年历。
本发明解决其技术问题所采用的技术方案是:一种带气象站的万年历,包括带显示屏的万年历和与所述万年历无线通信连接的室外气象站;其中,
所述气象站包括至少一个气象传感器、第二无线接口和电源,所述气象传感器采集的气象信息经过所述第二无线接口传输至无线网络;
所述万年历包括第一无线接口、控制电路和存储器和电源装置,所述第一无线接口通过无线网络接收来自气象站的气象信息,并将所述气象信息存储到所述存储器;所述控制电路读取并处理所述存储器中存储的气象信息,处理后的气象信息传输至万年历的显示屏以用于显示。
在依据本发明的带气象站的万年历中,所述气象传感器包括风速传感器、风向传感器、雨量传感器、气压传感器、温度传感器和湿度传感器。
在依据本发明的带气象站的万年历中,所述万年历还包括按键,用户通过所述按键输入按键指令
在依据本发明的带气象站的万年历中,所述按键指令包括开启万年历、重启万年历、重设时间参数和重设日期参数。
在依据本发明的带气象站的万年历中,所述万年历还包括定时器以用于发送时间信号指令给所述控制电路。
在依据本发明的带气象站的万年历中,所述时间信号指令为更新气象信息的时间间隔。
在依据本发明的带气象站的万年历中,所述更新气象信息的时间间隔为预设的固定值或通过所述按键输入设置。
在依据本发明的带气象站的万年历中,所述万年历还包括扬声器,所述控制电路将接收的气象信息处理成语音信号后发送给所述扬声器。
在依据本发明的带气象站的万年历中, 所述无线通信为以太网通信、红外通信、蓝牙通信或射频通信。
在依据本发明的带气象站的万年历中, 所述无线通信为射频通信,无线频率为433KHz;其中,所述第二无线接口为射频发射器,所述第一无线接口为射频接收器。
在依据本发明的带气象站的万年历中, 所述带气象站的万年历还包括与所述控制电路连接用于与移动终端进行近距离通信的NFC单元,以获取来自互连网的气象信息,并将所述气象信息存储到所述存储器中,所述控制电路读取并处理所述存储器中存储的气象信息,将处理后的气象信息传输至显示屏以进行显示。
在依据本发明的带气象站的万年历中,所述气象信息包括气象预报信息。
在依据本发明的带气象站的万年历中, 所述万年历还包括与控制电路连接的第二按键,所述第二按键被按下时,所述NFC单元与附近的移动终端进行信息互换。
在依据本发明的带气象站的万年历中, 所述万年历还包括与控制电路连接的第三按键,所述第三按键被按下时,所述显示屏显示来自NFC单元的气象信息。
在依据本发明的带气象站的万年历中, 所述万年历还包括与控制电路连接的指示所述NFC单元的工作状态的LED指示灯。
本发明,具有以下有益效果:因为在本发明的带气象站的万年历中设有室外气象站,因此可以实时采集室外的气象信息,包括温度、湿度和雨量等;因为该室外气象站与室内的万年历无线通信连接,因此实时采集的气象信息可显示在万年历的显示屏上,因此人们在看万年历的同时,可以随时了解室外的温度动态信息,不需要只依赖于事先的天气预报,而且比仅仅依靠室内温湿度数据和压力数据的做法要更加准确些,从而有利于人们的工作和出行。
附图说明
下面将结合附图及实施例对本发明作进一步说明,附图中:
图1是本发明实施例的带气象站的万年历的逻辑框图;
图2是图1中万年历的显示屏的结构示意图;
图3是图2中万年历的显示屏的示例结构示意图;
图4是本发明优选实施例的带气象站的万年历的逻辑框图;
图5是图4中万年历的显示屏的结构示意图;
图6是图5中万年历的显示屏的示例结构示意图。
具体实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅用以解释本发明,并不用于限定本发明。
在本发明的较佳实施例中,带气象站的万年历包括无线通信连接的万年历100和气象站200,其中万年历100安装在室内,气象站200安装在室外。图1示出了依据本发明实施例的带气象站的万年历的逻辑框图。如图1所示,气象站100包括壳体以及设置在壳体中的至少一个气象传感器210、第二无线接口220以及电源(图1中未示出)。气象传感器210包括风速传感器、风向传感器、雨量传感器、气压传感器、温度传感器或湿度传感器等,为简化描述,图1中仅示出了温度传感器211和湿度传感器212。气象传感器210可采集室外气象信息,包括温度、响度湿度、雨量、风速等。气象传感器210与第二无线接口230电连接,且第二无线接口230可接入到无线网络,从而,气象站200可与无线网络进行通信以交换数据,将气象传感器210所采集的气象信息通过第二无线接口220发送至无线网络。电源可例如选用干电池或太阳能光伏电池,用于对气象站200中的各组件提供工作电源。
万年历100包括带显示屏140的壳体,其中,壳体上安装有扬声器150和按键160,壳体中安装有第一无线接口110、控制电路120、定时器130、存储器170以及电源装置(图1中未示出)。其中,使用者可通过按键160输入按键指令并传输至控制120中,该按键指令可例如是开启万年历、重启万年历、重设时间参数、重设日期参数、设置更新气象信息的时间间隔等。定时器130一方面可将时间信号指令发送至控制电路120;另一方面,定时器130与按键160电连接,从而可以通过按键160的输入控制定时时长。当然,定时器130也可以是具有预设的固定定时时长。第一无线接口110可接入到无线网络中,并通过无线网络与气象站200的第二无线接口230通信连接以进行数据传输,从而可以将从气象站200接收的气象数据传输至存储器170。存储器170分别与第一无线接口110和控制电路120电连接,用于实时存储从气象站200接收的气象数据,此处存储器170可选用随机存储器(RAM)。控制电路120可以从存储器170读取气象数据,将接收的气象数据和控制指令进行处理后,将显示信号和语音信号分别发送给显示屏140和扬声器150。使用中,控制电路120可选用单片机。电源装置用于通过市电给气象站中的各组件提供电源。
从以上可以看出,依据本发明的带气象站的万年历的显示屏不再限于只显示与日期和时间有关的信息,还可显示与气象相关的各种信息。图2示出了万年历的显示屏的结构示意图,如图2所示,显示屏114除了包括原有的万年历显示区之外,还包括气象参数显示区和气象图标显示。具体而言,如图3所示,万年历显示区如已有的万年历显示屏一般,可显示日期、时间、节气等。气象参数显示区可例如显示温度、相对湿度和风速。气象图标显示区可例如显示晴朗的标识。相关领域的技术人员应当知晓,以上描述仅用作举例,在此基础上的各种变形和等同替代均在本发明的保护范围之内。
此处的无线网络可以是以太网、红外、蓝牙或射频,在本发明中优选为射频方式的无线连接,相应地,图1中的第一无线接口110为射频接收器,第二无线接口230为射频发射器。此时,无线频率优选为433KHz。
现以温度为例来阐述带气象站的万年历的操作过程。首先,温度传感器211采集当前室外的温度。该温度参数发送至第二无线接口220,并通过无线网络发送给第一无线接口110。第一无线接口110将接收的温度参数实时存储到存储器170中已备使用。使用者通过按键160输入定时器130的定时时长,例如2小时,从而定时器130每2小时发送一次时间信号指令给控制电路120。控制电路120收到该时间信号指令后,从存储器170读取当前的气象数据,例如温度。并对该温度参数进行处理,例如将温度信息转化成数字显示(例如,35℃)发送至显示屏140以显示该数据;以及转化成语音信号,通过扬声器150报告给室内的人。
在本发明是上述实施例中,万年历100虽然能够提供实时的天气情况,但是无法提供未来的天气预报,为此,在本发明的优选实施例中,如图4所示,万年历100还包括与控制电路120连接用于与移动终端300进行近距离通信的NFC单元180,以获取来自互连网的气象信息,并将气象信息存储到存储器170中,控制电路120读取并处理存储器170中存储的气象信息,将处理后的气象信息传输至显示屏140以进行显示。其中,NFC单元180为现有的NFC组件,例如包括芯片、天线以及软件等。移动终端300可例如是现有的智能手机,当然也可以是其它的能够与互联网进行数据交互的移动设备。此处所获取的气象信息既包括从互联网获取的实时天气消息,也包括未来几天的气象预报信息、天气趋势以及天气预警等等。在传输天气信息的过程中,既可以将天气信息的数据传输至万年历100,也可以是以截屏的方式将移动终端300上显示的天气信息以图片的形式传输至万年历100。
优选地,万年历100还包括与控制电路120连接的第二按键191,所述第二按键191被按下时,所述NFC单元180与附近的移动终端300进行信息互换。通过第二按键191的控制,万年历100不需要一直找寻附近是否有合适的移动终端。另外,万年历100还包括与控制电路120连接的第三按键192,所述第三按键192被按下时,所述显示屏140显示来自NFC单元180的气象信息,或更新来自NFC单元180的气象信息。另外,万年历100还包括与控制电路120连接的指示所述NFC单元180的工作状态的LED指示灯(图4中没有示出),例如当该LED指示灯亮时,显示万年历100正在与移动终端300进行通信。
图5示出了依据本优选实施例的显示屏140的示意图,与图2相比,图5中示出的显示屏140还包括天气预报显示。图6示出了图5中天气预报显示部分的示例显示示意图,图6示出了今日的天气,并示出了周二至周五的天气预报,同时还示出了天气趋势。
综上所述,本发明中通过在已有万年历的基础上,增设室外气象站,可以实时探测到室外的气象情况,使得人们在通过万年历获取日期和时间信息的基础上,可以随时了解当前的气象信息,不需要再依赖有可能不准的天气预报。而且,通过在室外设置气象传感器比仅仅依靠室内温湿度数据和压力数据的做法要更加准确些。另外,通过在万年历中设置NFC单元,用以与移动终端通信,从而通过移动终端从互联网上获取更加丰富的天气信息,例如天气预报、天气趋势等等。使得万年历提供的天气信息更加丰富。
应当理解的是,对本领域普通技术人员来说,可以根据上述说明加以改进或变换,而所有这些改进和变换都应属于本发明所附权利要求的保护范围。

Claims (15)

  1. 一种带气象站的万年历,包括带显示屏的万年历,其特征在于,所述带气象站的万年历还包括与所述万年历无线通信连接的室外气象站;其中,
    所述气象站包括至少一个气象传感器、第二无线接口和电源,所述气象传感器采集的气象信息经过所述第二无线接口传输至无线网络;
    所述万年历包括第一无线接口、控制电路和存储器和电源装置,所述第一无线接口通过无线网络接收来自气象站的气象信息,并将所述气象信息存储到所述存储器;所述控制电路读取并处理所述存储器中存储的气象信息,处理后的气象信息传输至万年历的显示屏以用于显示。
  2. 根据权利要求1所述的带气象站的万年历,其特征在于,所述气象传感器包括风速传感器、风向传感器、雨量传感器、气压传感器、温度传感器和湿度传感器。
  3. 根据权利要求1所述的带气象站的万年历,其特征在于,所述万年历还包括按键,用户通过所述按键输入按键指令。
  4. 根据权利要求3所述的带气象站的万年历,其特征在于,所述按键指令包括开启万年历、重启万年历、重设时间参数和重设日期参数。
  5. 根据权利要求3所述的带气象站的万年历,其特征在于,所述万年历还包括定时器以用于发送时间信号指令给所述控制电路。
  6. 根据权利要求5所述的带气象站的万年历,其特征在于,所述时间信号指令为更新气象信息的时间间隔。
  7. 根据权利要求6所述的带气象站的万年历,其特征在于,所述更新气象信息的时间间隔为预设的固定值或通过所述按键输入设置。
  8. 根据权利要求1所述的带气象站的万年历,其特征在于,所述万年历还包括扬声器,所述控制电路将接收的气象信息处理成语音信号后发送给所述扬声器。
  9. 根据权利要求1所述的带气象站的万年历,其特征在于, 所述无线通信为以太网通信、红外通信、蓝牙通信或射频通信。
  10. 根据权利要求9所述的带气象站的万年历,其特征在于, 所述无线通信为射频通信,无线频率为433KHz;其中,所述第二无线接口为射频发射器,所述第一无线接口为射频接收器。
  11. 根据权利要求1所述的带气象站的万年历,其特征在于, 所述带气象站的万年历还包括与所述控制电路连接用于与移动终端进行近距离通信的NFC单元,以获取来自互连网的气象信息,并将所述气象信息存储到所述存储器中,所述控制电路读取并处理所述存储器中存储的气象信息,将处理后的气象信息传输至显示屏以进行显示。
  12. 根据权利要求11所述的带气象站的万年历,其特征在于,所述气象信息包括气象预报信息。
  13. 根据权利要求11所述的带气象站的万年历,其特征在于, 所述万年历还包括与控制电路连接的第二按键,所述第二按键被按下时,所述NFC单元与附近的移动终端进行信息互换。
  14. 根据权利要求11所述的带气象站的万年历,其特征在于, 所述万年历还包括与控制电路连接的第三按键,所述第三按键被按下时,所述显示屏显示来自NFC单元的气象信息。
  15. 根据权利要求11所述的带气象站的万年历,其特征在于, 所述万年历还包括与控制电路连接的指示所述NFC单元的工作状态的LED指示灯。
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