WO2017166771A1 - 一种天文数据信息处理方法及装置 - Google Patents

一种天文数据信息处理方法及装置 Download PDF

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WO2017166771A1
WO2017166771A1 PCT/CN2016/101795 CN2016101795W WO2017166771A1 WO 2017166771 A1 WO2017166771 A1 WO 2017166771A1 CN 2016101795 W CN2016101795 W CN 2016101795W WO 2017166771 A1 WO2017166771 A1 WO 2017166771A1
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astronomical
data information
time
query request
astronomical data
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PCT/CN2016/101795
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English (en)
French (fr)
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钱丽萍
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中兴通讯股份有限公司
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/90Details of database functions independent of the retrieved data types
    • G06F16/95Retrieval from the web
    • G06F16/951Indexing; Web crawling techniques

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  • the present invention relates to the field of communications, and in particular, to a method and device for processing astronomical data information.
  • the invention provides a method and device for processing astronomical data information, which solves the problem that the astronomical scene cannot be viewed anytime and anywhere in the prior art.
  • a method for processing astronomical data information including:
  • the astronomical data information includes at least: a three-dimensional image of the astronomical constellation and a collection time of the three-dimensional image of the astronomical constellation.
  • the step of acquiring the astronomical data information collected by the radio telescope according to the query request of the user terminal includes:
  • the astronomical data information collected by the radio telescope in the corresponding time is obtained.
  • the step of acquiring the astronomical data information collected by the radio telescope in the corresponding time according to the query time in the query request includes:
  • the query time in the query request is a historical time period
  • the historical astronomical data information collected by the radio telescope in the corresponding historical time period is obtained.
  • a method for processing astronomical data information including:
  • the astronomical data information includes at least: a three-dimensional image of the astronomical constellation and a collection time of the three-dimensional image of the astronomical constellation.
  • the steps of receiving the target data sent by the Observatory data processing center include:
  • the receiving data processing center obtains and transmits the real-time astronomical data information collected by the radio telescope in real time according to the first preset algorithm;
  • the receiving observatory data processing center encodes and processes the historical astronomical data information collected by the radio telescope in the corresponding historical time period according to the first preset algorithm.
  • the target data is decoded according to the second preset algorithm, and the corresponding astronomy is obtained.
  • the steps of the data information include:
  • the target data is decoded according to the second preset algorithm, and the corresponding astronomical data information is obtained and displayed in real time.
  • an astronomical data information processing apparatus including:
  • Obtaining a module configured to acquire astronomical data information collected by the radio telescope according to the query request of the user terminal;
  • the first processing module is configured to perform encoding processing on the astronomical data information according to the first preset algorithm to obtain target data;
  • the first sending module is configured to send the target data to the user terminal, so that the user terminal performs decoding processing on the target data according to the second preset algorithm to obtain corresponding astronomical data information.
  • the astronomical data information includes at least: a three-dimensional image of the astronomical constellation and a collection time of the three-dimensional image of the astronomical constellation.
  • the acquisition module includes:
  • a receiving unit configured to receive a query request sent by the user terminal
  • the obtaining unit is configured to acquire the astronomical data information collected by the radio telescope in the corresponding time according to the query time in the query request.
  • the obtaining unit includes:
  • the first obtaining subunit is configured to acquire real-time astronomical data information collected by the radio telescope in real time when the query time in the query request is real time;
  • the second obtaining subunit is configured to acquire historical astronomical data information collected by the radio telescope in the corresponding historical time period when the query time in the query request is a historical time period.
  • an astronomical data information processing apparatus including:
  • the second sending module is configured to send a query request to the Observatory data processing center, so that the Observatory data processing center acquires the astronomical data letter collected by the radio telescope according to the query request interest;
  • a receiving module configured to receive target data sent by an observatory data processing center; wherein the target data is obtained by the observatory data processing center encoding the astronomical data information according to the first preset algorithm;
  • the second processing module is configured to perform decoding processing on the target data according to the second preset algorithm to obtain corresponding astronomical data information.
  • the astronomical data information includes at least: a three-dimensional image of the astronomical constellation and a collection time of the three-dimensional image of the astronomical constellation.
  • the receiving module includes:
  • the first receiving unit is configured to: when the query time in the query request is real time, receive the target data obtained by the observatory data processing center according to the first preset algorithm, encoding and processing the real-time astronomical data information collected by the radio telescope in real time. ;or,
  • the second receiving unit is configured to: when the query time in the query request is a historical time period, the receiving observatory data processing center encodes the historical astronomical data information collected by the radio telescope in the corresponding historical time period according to the first preset algorithm. And send the target data.
  • the second processing module includes:
  • the processing unit is configured to perform decoding processing on the target data according to the second preset algorithm, and obtain and display corresponding astronomical data information in real time.
  • Another embodiment of the present invention provides a computer storage medium storing execution instructions for performing the method in the above embodiments.
  • the data processing center of the observatory encodes the astronomical data information collected by the radio telescope and sends it to the user terminal according to the query request of the user terminal, and then the user terminal decodes and displays the data, so that the user can observe the astronomical dynamics anytime and anywhere, so that the user terminal
  • the functions are more diverse and satisfy the user experience to some extent.
  • FIG. 1 is a flow chart showing a method for processing astronomical data information according to Embodiment 1 of the present invention
  • FIG. 2 is a schematic diagram showing the network architecture of the present invention.
  • Embodiment 3 is a flowchart of a method for processing astronomical data information according to Embodiment 3 of the present invention.
  • FIG. 4 is a block diagram showing an astronomical data information processing apparatus according to Embodiment 4 of the present invention.
  • Fig. 5 is a block diagram showing the astronomical data information processing apparatus of the fifth embodiment of the present invention.
  • an embodiment of the present invention provides a method for processing astronomical data information, which specifically includes:
  • Step 11 Acquire astronomical data information collected by the radio telescope according to the query request of the user terminal.
  • a query request may be sent to the data processing center of the observatory, and the data processing center may obtain corresponding astronomical data information collected by the radio telescope according to the query request.
  • the data processing center is located at a national related observatory, and is located at a signal output end of the radio telescope.
  • the data processing center is specifically an entity having a processing function such as a processor or a server, and an image processing device and dedicated integrated hardware are disposed in the data processing center. And software, and set up a permission gateway, can transmit astronomical data information to the user terminal, real-time transmission.
  • Radio telescope is a basic device for observing and studying radio waves from celestial bodies.
  • Radio telescopes include: directional antennas that collect radio waves, high-sensitivity receivers that amplify radio signals, data information recording, processing, and display systems. From the radio telescope to the above data processing center is Ultra-wideband information transmission.
  • the astronomical data information includes at least: a three-dimensional image of the astronomical constellation and a collection time of the three-dimensional image of the astronomical constellation. That is, the astronomical data information is four-dimensional information, the radio telescope can automatically generate real-time images of trillions of four-dimensional constellations, and transmit them to the data processing center in real time. The data processing center stores the data in the database in time interval for subsequent query calls. .
  • the astronomical data information includes the three-dimensional image information collected by the radio telescope to the real-time state of the celestial body, and the time dimension information of the acquisition time to improve its confidentiality, uniqueness and exclusivity.
  • Step 12 Perform encoding processing on the astronomical data information according to the first preset algorithm to obtain target data.
  • the data processing center needs to encode and compress the data to be transmitted before the data transmission, which may also be called encryption processing. It is worth noting that any algorithm capable of encoding and compressing astronomical data information can be applied to this embodiment.
  • Step 13 Send the target data to the user terminal.
  • the data processing center transmits the encoded target data to the user terminal.
  • the data processing center can send the target data to the user terminal through a relay station such as an operator core network or another service providing network.
  • the specific network architecture is as shown in FIG. 2 .
  • the user terminal After receiving the target data, the user terminal decodes the target data according to the second preset algorithm to obtain corresponding astronomical data information, so that the user can watch the astronomical dynamics anytime and anywhere to meet the user's needs and improve the user experience.
  • the following embodiment will further introduce the astronomical data information processing method of the present invention in combination with a specific application scenario.
  • the step 11 includes: receiving a query request sent by the user terminal; and acquiring the astronomical data information collected by the radio telescope in the corresponding time according to the query time in the query request.
  • the query request sent by the user terminal carries the time of the astronomical dynamics that the user desires to query, that is, the time range in which the user can set the query according to his own needs.
  • the real-time astronomical data information collected by the radio telescope is acquired in real time; that is, when the user terminal does not input the specific time or input the current time, the data processing center collects the currently received radio telescope.
  • the real-time astronomical data information is forwarded to the user terminal.
  • the query time in the query request is a historical time period
  • obtaining historical astronomical data information collected by the radio telescope in the corresponding historical time period that is, when the user terminal inputs a specific time range, the data processing center according to the time range
  • the corresponding historical astronomical data information is forwarded to the user terminal, for example, the celestial motion state corresponding to the 3:00 pm on March 10 to 5:00 pm on March 10, so that the data processing center can more accurately find the user's needs.
  • the astronomical data information is sent to the user terminal.
  • the data processing center can obtain the astronomical data information in the corresponding time period and send it to the user terminal according to the specific query time of the user terminal, so that the user can view the corresponding celestial motion state according to the needs of the user terminal, thereby improving the user experience.
  • the above embodiment 1 and the second embodiment describe the astronomical data information processing method of the present invention from the data processing center side.
  • the following embodiment further describes the astronomical data information processing method on the user terminal side in conjunction with the drawings and specific application scenarios.
  • the astronomical data information processing method includes:
  • Step 31 Send a query request to the Observatory Data Processing Center.
  • a query request may be sent to the data processing center of the observatory to enable the data processing center to obtain the corresponding astronomical data information collected by the radio telescope according to the query request.
  • the astronomical data information includes at least: a three-dimensional image of the astronomical constellation and a collection time of the three-dimensional image of the astronomical constellation. That is, the astronomical data information is four-dimensional information, the radio telescope can automatically generate real-time images of trillions of four-dimensional constellations, and transmit them to the data processing center in real time.
  • the data processing center stores the data in the database in time interval for subsequent query calls. .
  • the astronomical data information includes three-dimensional image information collected by the radio telescope to the real-time state of the celestial body, and time dimension information of the acquisition time.
  • the system can be implemented by using a response verification code. Identify to improve its confidentiality, uniqueness and exclusivity.
  • Step 32 Receive target data sent by the Observatory data processing center.
  • the target data is obtained by the Observatory data processing center encoding the astronomical data information according to the first preset algorithm.
  • the data processing center transmits the encoded target data to the user terminal.
  • the data processing center can transmit the target data to the user terminal through a relay station such as an operator core network or another service providing network.
  • Step 33 Perform decoding processing on the target data according to the second preset algorithm to obtain corresponding astronomical data information.
  • the target data After the target data is decoded according to the second preset algorithm to obtain the corresponding astronomical data information, it is also displayed in real time, so that the user can watch the corresponding celestial motion state at any time. Since the amount of data collected by the radio telescope is large, in order to ensure the rapid transmission of data and provide real-time performance of the entire system, the data processing center needs to encode and compress the data to be transmitted before the data transmission, which may also be called encryption processing. Therefore, the target data received by the user terminal is an encoded data, and cannot be directly used. Therefore, it is required to perform decoding processing to generate corresponding astronomical data information. It is worth noting that the second preset algorithm is the inverse algorithm of the first preset algorithm.
  • the step 32 includes: when the query time in the query request is a real-time time, the receiving data processing center obtains and transmits the real-time astronomical data information collected by the radio telescope in real time according to the first preset algorithm. Data; or, when the query time in the query request is a historical time period, the receiving observatory data processing center encodes and transmits the historical astronomical data information collected by the radio telescope in the corresponding historical time period according to the first preset algorithm. Target data.
  • the data processing center forwards the real-time astronomical data information collected by the currently received radio telescope to the user terminal; when the user terminal inputs a specific time range, the data processing center will Searching for the corresponding historical astronomical data information according to the time range is forwarded to the user terminal, for example, querying the celestial motion state corresponding to 3 pm on March 10 to 5 pm on March 10, so that the data processing center can be more targeted. Find the astronomical data information that the user needs and send it to the user terminal.
  • a payment service mechanism may be added, for example, astronomical data information of certain important areas or time periods is used as charging information, and when the user terminal needs to view the information, it needs to be in accordance with the agreed The fee mechanism pays the fee.
  • the user terminal sends a query request to the data processing center of the observatory according to its own needs, and the data processing center encodes the corresponding astronomical data information collected by the radio telescope according to the query request, and then sends the corresponding astronomical data information to the user terminal, thereby causing the user terminal to
  • the decoding display enables the user to observe the astronomical dynamics anytime and anywhere, so that the functions of the user terminal are more diversified, and the user experience is satisfied to a certain extent.
  • an astronomical data information processing apparatus including:
  • the obtaining module 41 is configured to acquire the astronomical data information collected by the radio telescope according to the query request of the user terminal;
  • the first processing module 42 is configured to perform encoding processing on the astronomical data information according to the first preset algorithm to obtain target data;
  • the first sending module 43 is configured to send the target data to the user terminal, so that the user terminal performs decoding processing on the target data according to the second preset algorithm to obtain corresponding astronomical data information.
  • the astronomical data information includes at least: a three-dimensional image of the astronomical constellation and a collection time of the three-dimensional image of the astronomical constellation.
  • the acquisition module includes:
  • a receiving unit configured to receive a query request sent by the user terminal
  • the obtaining unit is configured to acquire the astronomical data information collected by the radio telescope in the corresponding time according to the query time in the query request.
  • the obtaining unit includes:
  • the first obtaining subunit is configured to acquire real-time astronomical data information collected by the radio telescope in real time when the query time in the query request is real time;
  • the second obtaining subunit is configured to acquire historical astronomical data information collected by the radio telescope in the corresponding historical time period when the query time in the query request is a historical time period.
  • the device is a device corresponding to the astronomical data information processing method described above, and all the implementation manners in the foregoing method embodiments are applicable to the device embodiment, and the same technical effects can be achieved.
  • an astronomical data information processing apparatus including:
  • the second sending module 51 is configured to send a query request to the Observatory data processing center, so that the Observatory data processing center acquires the astronomical data information collected by the radio telescope according to the query request;
  • the receiving module 52 is configured to receive the target data sent by the observatory data processing center; wherein the target data is obtained by the observatory data processing center encoding the astronomical data information according to the first preset algorithm;
  • the second processing module 53 is configured to perform decoding processing on the target data according to the second preset algorithm to obtain corresponding astronomical data information.
  • the astronomical data information includes at least: a three-dimensional image of the astronomical constellation and a collection time of the three-dimensional image of the astronomical constellation.
  • the receiving module includes:
  • the first receiving unit is configured to: when the query time in the query request is real time, receive the target data obtained by the observatory data processing center according to the first preset algorithm, encoding and processing the real-time astronomical data information collected by the radio telescope in real time. ;or,
  • the second receiving unit is configured to: when the query time in the query request is a historical time period, the receiving observatory data processing center encodes the historical astronomical data information collected by the radio telescope in the corresponding historical time period according to the first preset algorithm. And send the target data.
  • the second processing module includes:
  • the processing unit is configured to perform decoding processing on the target data according to the second preset algorithm, and obtain and display corresponding astronomical data information in real time.
  • the device is a device corresponding to the astronomical data information processing method described above, and all the implementation manners in the foregoing method embodiments are applicable to the device embodiment, and the same technical effects can be achieved.
  • Embodiments of the present invention also provide a storage medium.
  • an execution instruction is stored in the storage medium, and the execution instruction is used to execute the method in the foregoing embodiment.
  • the foregoing storage medium may include, but is not limited to, a USB flash drive, a Read-Only Memory (ROM), and a Random Access Memory (RAM).
  • ROM Read-Only Memory
  • RAM Random Access Memory
  • the astronomical data information processing method and apparatus have the following beneficial effects: the data processing center of the observatory encodes the astronomical data information collected by the radio telescope according to the query request of the user terminal, and then sends the information to the user.
  • the terminal, and then the user terminal decodes and displays the data, so that the user can observe the astronomical dynamics anytime and anywhere, and the functions of the user terminal are more diversified, and the user experience is satisfied to a certain extent.

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Abstract

本发明公开了一种天文数据信息处理方法及装置,其方法包括:根据用户终端的查询请求,获取射电望远镜采集到的天文数据信息;根据第一预设算法,对天文数据信息进行编码处理得到目标数据;将目标数据发送至用户终端,以使用户终端根据第二预设算法对目标数据进行解码处理得到对应的天文数据信息。本发明中天文台的数据处理中心根据用户终端的查询请求,将射电望远镜采集到的天文数据信息编码后发送至用户终端,进而用户终端将其解码显示,使用户能够随时随地观察到天文动态,使用户终端的功能更加多样化,在一定程度上满足了用户体验。

Description

一种天文数据信息处理方法及装置 技术领域
本发明涉及通信领域,尤其涉及一种天文数据信息处理方法及装置。
背景技术
随着科学技术的日益发展和人们生活水平的日益提高,人们对与手机功能以及其他业务的需求也越来越丰富,对于天文学爱好者对宇宙充满了好奇和强烈的求知欲望,希望能像天文学家那样,随时可以观察到浩瀚的宇宙星空“星转斗移”。但是,由于天文望远镜一般都设置在特殊的地理位置,当远离天文望远镜设置点的用户想要观看天文场景时,马上去到天文望远镜所在地或天文馆存在一定困难。因此,用户随时随地观看天文场景的需求成为现有技术中亟待解决的难题。
发明内容
本发明提供了一种天文数据信息处理方法及装置,解决了现有技术中不能随时随地观看天文场景的问题。
依据本发明的一个方面,提供了一种天文数据信息处理方法,包括:
根据用户终端的查询请求,获取射电望远镜采集到的天文数据信息;
根据第一预设算法,对天文数据信息进行编码处理得到目标数据;
将目标数据发送至用户终端,以使用户终端根据第二预设算法对目标数据进行解码处理得到对应的天文数据信息。
其中,天文数据信息至少包括:天文星座的三维立体图像和天文星座的三维立体图像的采集时间。
其中,根据用户终端的查询请求,获取射电望远镜采集到的天文数据信息的步骤包括:
接收用户终端发送的查询请求;
根据查询请求中的查询时间,获取对应时间内射电望远镜采集到的天文数据信息。
其中,根据查询请求中的查询时间,获取对应时间内射电望远镜采集到的天文数据信息的步骤包括:
当查询请求中的查询时间为实时时间时,获取射电望远镜实时采集到的实时天文数据信息;或者,
当查询请求中的查询时间为历史时间段时,获取对应历史时间段内射电望远镜采集到的历史天文数据信息。
依据本发明的再一个方面,还提供了一种天文数据信息处理方法,包括:
向天文台数据处理中心发送一查询请求,以使天文台数据处理中心根据查询请求获取射电望远镜采集到的天文数据信息;
接收天文台数据处理中心发送的目标数据;其中,目标数据是天文台数据处理中心根据第一预设算法对天文数据信息进行编码处理得到的;
根据第二预设算法对目标数据进行解码处理,得到对应的天文数据信息。
其中,天文数据信息至少包括:天文星座的三维立体图像和天文星座的三维立体图像的采集时间。
其中,接收天文台数据处理中心发送的目标数据的步骤包括:
当查询请求中的查询时间为实时时间时,接收天文台数据处理中心根据第一预设算法对射电望远镜实时采集到的实时天文数据信息进行编码处理得到并发送的目标数据;或者,
当查询请求中的查询时间为历史时间段时,接收天文台数据处理中心根据第一预设算法对对应历史时间段内射电望远镜采集到的历史天文数据信息进行编码处理得到并发送的目标数据。
其中,根据第二预设算法对目标数据进行解码处理,得到对应的天文 数据信息的步骤包括:
根据第二预设算法对目标数据进行解码处理,得到并实时显示对应的天文数据信息。
依据本发明的再一个方面,还提供了一种天文数据信息处理装置,包括:
获取模块,设置为根据用户终端的查询请求,获取射电望远镜采集到的天文数据信息;
第一处理模块,设置为根据第一预设算法,对天文数据信息进行编码处理得到目标数据;
第一发送模块,设置为将目标数据发送至用户终端,以使用户终端根据第二预设算法对目标数据进行解码处理得到对应的天文数据信息。
其中,天文数据信息至少包括:天文星座的三维立体图像和天文星座的三维立体图像的采集时间。
其中,获取模块包括:
接收单元,设置为接收用户终端发送的查询请求;
获取单元,设置为根据查询请求中的查询时间,获取对应时间内射电望远镜采集到的天文数据信息。
其中,获取单元包括:
第一获取子单元,设置为当查询请求中的查询时间为实时时间时,获取射电望远镜实时采集到的实时天文数据信息;或者,
第二获取子单元,设置为当查询请求中的查询时间为历史时间段时,获取对应历史时间段内射电望远镜采集到的历史天文数据信息。
依据本发明的再一个方面,还提供了一种天文数据信息处理装置,包括:
第二发送模块,设置为向天文台数据处理中心发送一查询请求,以使天文台数据处理中心根据查询请求获取射电望远镜采集到的天文数据信 息;
接收模块,设置为接收天文台数据处理中心发送的目标数据;其中目标数据是天文台数据处理中心根据第一预设算法对天文数据信息进行编码处理得到的;
第二处理模块,设置为根据第二预设算法对目标数据进行解码处理,得到对应的天文数据信息。
其中,天文数据信息至少包括:天文星座的三维立体图像和天文星座的三维立体图像的采集时间。
其中,接收模块包括:
第一接收单元,设置为当查询请求中的查询时间为实时时间时,接收天文台数据处理中心根据第一预设算法对射电望远镜实时采集到的实时天文数据信息进行编码处理得到并发送的目标数据;或者,
第二接收单元,设置为当查询请求中的查询时间为历史时间段时,接收天文台数据处理中心根据第一预设算法对对应历史时间段内射电望远镜采集到的历史天文数据信息进行编码处理得到并发送的目标数据。
其中,第二处理模块包括:
处理单元,设置为根据第二预设算法对目标数据进行解码处理,得到并实时显示对应的天文数据信息。
本发明另一实施例提供了一种计算机存储介质,所述计算机存储介质存储有执行指令,所述执行指令用于执行上述实施例中的方法。
本发明的实施例的有益效果是:
天文台的数据处理中心根据用户终端的查询请求,将射电望远镜采集到的天文数据信息编码后发送至用户终端,进而用户终端将其解码显示,使用户能够随时随地观察到天文动态,使用户终端的功能更加多样化,在一定程度上满足了用户体验。
附图说明
图1表示本发明实施例一的天文数据信息处理方法流程图;
图2表示本发明的网络架构示意图;
图3表示本发明实施例三的天文数据信息处理方法的流程图;
图4表示本发明实施例四的天文数据信息处理装置的模块示意图;
图5表示本发明实施例五的天文数据信息处理装置的模块示意图。
具体实施方式
下面将参照附图更详细地描述本发明的示例性实施例。虽然附图中显示了本发明的示例性实施例,然而应当理解,可以以各种形式实现本发明而不应被这里阐述的实施例所限制。相反,提供这些实施例是为了能够更透彻地理解本发明,并且能够将本发明的范围完整的传达给本领域的技术人员。
实施例一
如图1所示,本发明的实施例提供了一种天文数据信息处理方法,具体包括:
步骤11:根据用户终端的查询请求,获取射电望远镜采集到的天文数据信息。
当用户终端侧需要查询和观看天文动态时,可向天文台的数据处理中心发送一查询请求,该数据处理中心可根据该查询请求,获取射电望远镜采集到的对应的天文数据信息。其中,该数据处理中心位于国家相关天文台,位于射电望远镜的信号输出端,该数据处理中心具体为处理器或服务器等具有处理功能的实体,在数据处理中心中设置有图像处理装置、专用集成硬件和软件,且设置有权限网关,可向用户终端传送天文数据信息,实现实时传输。射电望远镜(radio telescope)是指观测和研究来自天体的射电波的基本设备,可以测量天体的射电强度、频谱及偏振等参数量。射电望远镜包括:收集射电波的定向天线,放大射电信号的高灵敏度接收机,数据信息记录、处理和显示系统等。从射电望远镜到上述数据处理中心是 超宽带信息传输。
其中,天文数据信息至少包括:天文星座的三维立体图像和天文星座的三维立体图像的采集时间。即天文数据信息为四维信息,射电望远镜可自动产生万亿个四维星座实时图像,并实时传输至上述数据处理中心,该数据处理中心将这个数据按时间区隔存储至数据库中,供后续查询调用。其中,天文数据信息包括射电望远镜采集的到天体实时状态的三维图像信息,以及采集时间的时间维度信息,以提高其保密性、唯一性和独占性。
步骤12:根据第一预设算法,对天文数据信息进行编码处理得到目标数据。
由于射电望远镜采集到的数据量很大,为了保证数据能够快速传输,提供整个系统的实时性,数据处理中心在数据传输之前需要对待传输数据进行编码压缩处理,也可以称之为加密处理。值得指出的是,任何能够将天文数据信息编码压缩的算法,均可应用于本实施例中。
步骤13:将该目标数据发送至用户终端。
数据处理中心将编码后的目标数据传输至用户终端,优选地,数据处理中心可通过运营商核心网或其他服务提供网络等中继站将目标数据发送至用户终端,具体网络架构如图2所示。其中用户终端接收到该目标数据后,根据第二预设算法对目标数据进行解码处理得到对应的天文数据信息,从而使用户能够随时随地观看天文动态,以满足用户需求,提高用户体验。
实施例二
基于以上实施例一,下面本实施例将结合具体应用场景对本发明的天文数据信息处理方法做进一步介绍。
优选地,步骤11具体包括:接收用户终端发送的查询请求;根据查询请求中的查询时间,获取对应时间内射电望远镜采集到的天文数据信息。
这里是说,用户终端发送的查询请求中携带有用户所希望查询的天文动态的时间,即用户可根据自身需求设定查询的时间范围。优选地,当查 询请求中的查询时间为实时时间时,获取射电望远镜实时采集到的实时天文数据信息;即当用户终端不输入具体时间或输入当前时间时,数据处理中心将当前接收到的射电望远镜采集到的实时天文数据信息转发给用户终端。或者,当查询请求中的查询时间为历史时间段时,获取对应历史时间段内射电望远镜采集到的历史天文数据信息;即当用户终端输入具体的时间范围时,数据处理中心会根据该时间范围查找对应的历史天文数据信息转发至用户终端,例如:查询三月十号下午三点至三月十号下午五点对应的天体运动状态,这样数据处理中心可更具针对性的查找用户所需要的天文数据信息,并发送至用户终端。
综上,数据处理中心可根据用户终端的具体查询时间,获取对应时间段内的天文数据信息并发送至用户终端,以使用户能够根据自身需要查看对应的天体运动状态,提高用户体验。
实施例三
以上实施例一和实施例二从数据处理中心侧介绍了本发明的天文数据信息处理方法,下面本实施例将结合附图和具体应用场景对用户终端侧的天文数据信息处理方法做进一步介绍。
如图3所示,该天文数据信息处理方法包括:
步骤31:向天文台数据处理中心发送一查询请求。
当用户终端侧需要查询和观看天文动态时,可向天文台的数据处理中心发送一查询请求,以使数据处理中心根据该查询请求,获取射电望远镜采集到的对应的天文数据信息。其中,天文数据信息至少包括:天文星座的三维立体图像和天文星座的三维立体图像的采集时间。即天文数据信息为四维信息,射电望远镜可自动产生万亿个四维星座实时图像,并实时传输至上述数据处理中心,该数据处理中心将这个数据按时间区隔存储至数据库中,供后续查询调用。其中,天文数据信息包括射电望远镜采集的到天体实时状态的三维图像信息,以及采集时间的时间维度信息,在用户终端与数据处理中心交互的许可王冠中,可采用应答验证码的方式进行系统 识别,以提高其保密性、唯一性和独占性。
步骤32:接收天文台数据处理中心发送的目标数据。
其中,目标数据是天文台数据处理中心根据第一预设算法对天文数据信息进行编码处理得到的。数据处理中心将编码后的目标数据传输至用户终端,优选地,数据处理中心可通过运营商核心网或其他服务提供网络等中继站将目标数据发送至用户终端。
步骤33:根据第二预设算法对目标数据进行解码处理,得到对应的天文数据信息。
根据第二预设算法对目标数据进行解码处理得到对应的天文数据信息后,还对其进行实时显示,以便于用户随时观看对应的天体运动状态。由于射电望远镜采集到的数据量很大,为了保证数据能够快速传输,提供整个系统的实时性,数据处理中心在数据传输之前需要对待传输数据进行编码压缩处理,也可以称之为加密处理。因此用户终端接收到的目标数据为一编码数据,不能直接使用,因此需要对其进行解码处理,生成对应的天文数据信息。其中值得指出的是第二预设算法是第一预设算法的逆算法。
优选地,步骤32具体包括:当查询请求中的查询时间为实时时间时,接收天文台数据处理中心根据第一预设算法对射电望远镜实时采集到的实时天文数据信息进行编码处理得到并发送的目标数据;或者,当查询请求中的查询时间为历史时间段时,接收天文台数据处理中心根据第一预设算法对对应历史时间段内射电望远镜采集到的历史天文数据信息进行编码处理得到并发送的目标数据。即当用户终端不输入具体时间或输入当前时间时,数据处理中心将当前接收到的射电望远镜采集到的实时天文数据信息转发给用户终端;当用户终端输入具体的时间范围时,数据处理中心会根据该时间范围查找对应的历史天文数据信息转发至用户终端,例如:查询三月十号下午三点至三月十号下午五点对应的天体运动状态,这样数据处理中心可更具针对性的查找用户所需要的天文数据信息,并发送至用户终端。
另外,用户终端与数据处理中心交互的许可网关中,可添加付费服务机制,例如将某些重要区域或时段的天文数据信息作为收费信息,用户终端需要查看该类信息时,需要按照约定的计费机制进行缴费。
综上,用户终端根据自身需求向天文台的数据处理中心发送一查询请求,数据处理中心根据该查询请求将射电望远镜采集到的对应的天文数据信息编码后发送至用户终端,进而使得用户终端将其解码显示,使用户能够随时随地观察到天文动态,使用户终端的功能更加多样化,在一定程度上满足了用户体验。
实施例四
如图4所示,依据本发明实施例的再一个方面,还提供了一种天文数据信息处理装置,包括:
获取模块41,设置为根据用户终端的查询请求,获取射电望远镜采集到的天文数据信息;
第一处理模块42,设置为根据第一预设算法,对天文数据信息进行编码处理得到目标数据;
第一发送模块43,设置为将目标数据发送至用户终端,以使用户终端根据第二预设算法对目标数据进行解码处理得到对应的天文数据信息。
其中,天文数据信息至少包括:天文星座的三维立体图像和天文星座的三维立体图像的采集时间。
其中,获取模块包括:
接收单元,设置为接收用户终端发送的查询请求;
获取单元,设置为根据查询请求中的查询时间,获取对应时间内射电望远镜采集到的天文数据信息。
其中,获取单元包括:
第一获取子单元,设置为当查询请求中的查询时间为实时时间时,获取射电望远镜实时采集到的实时天文数据信息;或者,
第二获取子单元,设置为当查询请求中的查询时间为历史时间段时,获取对应历史时间段内射电望远镜采集到的历史天文数据信息。
需要说明的是,该装置是与上述天文数据信息处理方法对应的装置,上述方法实施例中所有实现方式均适用于该装置的实施例中,也能达到相同的技术效果。
实施例五
如图5所示,依据本发明实施例的再一个方面,还提供了一种天文数据信息处理装置,包括:
第二发送模块51,设置为向天文台数据处理中心发送一查询请求,以使天文台数据处理中心根据查询请求获取射电望远镜采集到的天文数据信息;
接收模块52,设置为接收天文台数据处理中心发送的目标数据;其中目标数据是天文台数据处理中心根据第一预设算法对天文数据信息进行编码处理得到的;
第二处理模块53,设置为根据第二预设算法对目标数据进行解码处理,得到对应的天文数据信息。
其中,天文数据信息至少包括:天文星座的三维立体图像和天文星座的三维立体图像的采集时间。
其中,接收模块包括:
第一接收单元,设置为当查询请求中的查询时间为实时时间时,接收天文台数据处理中心根据第一预设算法对射电望远镜实时采集到的实时天文数据信息进行编码处理得到并发送的目标数据;或者,
第二接收单元,设置为当查询请求中的查询时间为历史时间段时,接收天文台数据处理中心根据第一预设算法对对应历史时间段内射电望远镜采集到的历史天文数据信息进行编码处理得到并发送的目标数据。
其中,第二处理模块包括:
处理单元,设置为根据第二预设算法对目标数据进行解码处理,得到并实时显示对应的天文数据信息。
需要说明的是,该装置是与上述天文数据信息处理方法对应的装置,上述方法实施例中所有实现方式均适用于该装置的实施例中,也能达到相同的技术效果。
本发明的实施例还提供了一种存储介质。可选地,在本实施例中,上述存储介质中存储有执行指令,该执行指令用于执行上述实施例中的方法。
可选地,在本实施例中,上述存储介质可以包括但不限于:U盘、只读存储器(Read-Only Memory,简称为ROM)、随机存取存储器(Random Access Memory,简称为RAM)、移动硬盘、磁碟或者光盘等各种可以存储程序代码的介质。
以上所述的是本发明的优选实施方式,应当指出对于本技术领域的普通人员来说,在不脱离本发明所述的原理前提下还可以作出若干改进和润饰,这些改进和润饰也在本发明的保护范围内。
工业实用性
如上所述,本发明实施例提供的一种天文数据信息处理方法及装置具有以下有益效果:天文台的数据处理中心根据用户终端的查询请求,将射电望远镜采集到的天文数据信息编码后发送至用户终端,进而用户终端将其解码显示,使用户能够随时随地观察到天文动态,使用户终端的功能更加多样化,在一定程度上满足了用户体验。

Claims (16)

  1. 一种天文数据信息处理方法,包括:
    根据用户终端的查询请求,获取射电望远镜采集到的天文数据信息;
    根据第一预设算法,对所述天文数据信息进行编码处理得到目标数据;
    将所述目标数据发送至所述用户终端,以使所述用户终端根据第二预设算法对所述目标数据进行解码处理得到对应的天文数据信息。
  2. 根据权利要求1所述的天文数据信息处理方法,其中,所述天文数据信息至少包括:天文星座的三维立体图像和所述天文星座的三维立体图像的采集时间。
  3. 根据权利要求1或2所述的天文数据信息处理方法,其中,根据用户终端的查询请求,获取射电望远镜采集到的天文数据信息的步骤包括:
    接收用户终端发送的查询请求;
    根据所述查询请求中的查询时间,获取对应时间内射电望远镜采集到的天文数据信息。
  4. 根据权利要求3所述的天文数据信息处理方法,其中,根据所述查询请求中的查询时间,获取对应时间内射电望远镜采集到的天文数据信息的步骤包括:
    当所述查询请求中的查询时间为实时时间时,获取射电望远镜实时采集到的实时天文数据信息;或者,
    当所述查询请求中的查询时间为历史时间段时,获取对应历史时间段内射电望远镜采集到的历史天文数据信息。
  5. 一种天文数据信息处理方法,包括:
    向天文台数据处理中心发送一查询请求,以使所述天文台数据处理中心根据所述查询请求获取射电望远镜采集到的天文数据信息;
    接收所述天文台数据处理中心发送的目标数据;其中所述目标数据是所述天文台数据处理中心根据第一预设算法对所述天文数据信息进行编码处理得到的;
    根据第二预设算法对所述目标数据进行解码处理,得到对应的天文数据信息。
  6. 根据权利要求5所述的天文数据信息处理方法,其中,所述天文数据信息至少包括:天文星座的三维立体图像和所述天文星座的三维立体图像的采集时间。
  7. 根据权利要求5或6所述的天文数据信息处理方法,其中,接收所述天文台数据处理中心发送的目标数据的步骤包括:
    当所述查询请求中的查询时间为实时时间时,接收所述天文台数据处理中心根据第一预设算法对射电望远镜实时采集到的实时天文数据信息进行编码处理得到并发送的目标数据;或者,
    当所述查询请求中的查询时间为历史时间段时,接收所述天文台数据处理中心根据第一预设算法对对应历史时间段内射电望远镜采集到的历史天文数据信息进行编码处理得到并发送的目标数据。
  8. 根据权利要求7所述的天文数据信息处理方法,其中,根据第二预设算法对所述目标数据进行解码处理,得到对应的天文数据信息的步骤包括:
    根据第二预设算法对所述目标数据进行解码处理,得到并实时显示对应的天文数据信息。
  9. 一种天文数据信息处理装置,包括:
    获取模块,设置为根据用户终端的查询请求,获取射电望远镜采 集到的天文数据信息;
    第一处理模块,设置为根据第一预设算法,对所述天文数据信息进行编码处理得到目标数据;
    第一发送模块,设置为将所述目标数据发送至所述用户终端,以使所述用户终端根据第二预设算法对所述目标数据进行解码处理得到对应的天文数据信息。
  10. 根据权利要求9所述的天文数据信息处理装置,其中,所述天文数据信息至少包括:天文星座的三维立体图像和所述天文星座的三维立体图像的采集时间。
  11. 根据权利要求9或10所述的天文数据信息处理装置,其中,所述获取模块包括:
    接收单元,设置为接收用户终端发送的查询请求;
    获取单元,设置为根据所述查询请求中的查询时间,获取对应时间内射电望远镜采集到的天文数据信息。
  12. 根据权利要求11所述的天文数据信息处理装置,其中,所述获取单元包括:
    第一获取子单元,设置为当所述查询请求中的查询时间为实时时间时,获取射电望远镜实时采集到的实时天文数据信息;或者,
    第二获取子单元,设置为当所述查询请求中的查询时间为历史时间段时,获取对应历史时间段内射电望远镜采集到的历史天文数据信息。
  13. 一种天文数据信息处理装置,包括:
    第二发送模块,设置为向天文台数据处理中心发送一查询请求,以使所述天文台数据处理中心根据所述查询请求获取射电望远镜采集到的天文数据信息;
    接收模块,设置为接收所述天文台数据处理中心发送的目标数据;其中所述目标数据是所述天文台数据处理中心根据第一预设算法对所述天文数据信息进行编码处理得到的;
    第二处理模块,设置为根据第二预设算法对所述目标数据进行解码处理,得到对应的天文数据信息。
  14. 根据权利要求13所述的天文数据信息处理装置,其中,所述天文数据信息至少包括:天文星座的三维立体图像和所述天文星座的三维立体图像的采集时间。
  15. 根据权利要求13或14所述的天文数据信息处理装置,其中,所述接收模块包括:
    第一接收单元,设置为当所述查询请求中的查询时间为实时时间时,接收所述天文台数据处理中心根据第一预设算法对射电望远镜实时采集到的实时天文数据信息进行编码处理得到并发送的目标数据;或者,
    第二接收单元,设置为当所述查询请求中的查询时间为历史时间段时,接收所述天文台数据处理中心根据第一预设算法对对应历史时间段内射电望远镜采集到的历史天文数据信息进行编码处理得到并发送的目标数据。
  16. 根据权利要求15所述的天文数据信息处理装置,其中,所述第二处理模块包括:
    处理单元,设置为根据第二预设算法对所述目标数据进行解码处理,得到并实时显示对应的天文数据信息。
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