WO2023272899A1 - 一种船载通信监控系统 - Google Patents

一种船载通信监控系统 Download PDF

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WO2023272899A1
WO2023272899A1 PCT/CN2021/112922 CN2021112922W WO2023272899A1 WO 2023272899 A1 WO2023272899 A1 WO 2023272899A1 CN 2021112922 W CN2021112922 W CN 2021112922W WO 2023272899 A1 WO2023272899 A1 WO 2023272899A1
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module
voice
electrically connected
signal
recording
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PCT/CN2021/112922
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English (en)
French (fr)
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顾捷
李玮
吴继平
付丽娜
李文明
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南京中网卫星通信股份有限公司
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/06Protocols specially adapted for file transfer, e.g. file transfer protocol [FTP]
    • GPHYSICS
    • G10MUSICAL INSTRUMENTS; ACOUSTICS
    • G10LSPEECH ANALYSIS TECHNIQUES OR SPEECH SYNTHESIS; SPEECH RECOGNITION; SPEECH OR VOICE PROCESSING TECHNIQUES; SPEECH OR AUDIO CODING OR DECODING
    • G10L15/00Speech recognition
    • G10L15/26Speech to text systems
    • GPHYSICS
    • G10MUSICAL INSTRUMENTS; ACOUSTICS
    • G10LSPEECH ANALYSIS TECHNIQUES OR SPEECH SYNTHESIS; SPEECH RECOGNITION; SPEECH OR VOICE PROCESSING TECHNIQUES; SPEECH OR AUDIO CODING OR DECODING
    • G10L15/00Speech recognition
    • G10L15/28Constructional details of speech recognition systems
    • G10L15/30Distributed recognition, e.g. in client-server systems, for mobile phones or network applications
    • GPHYSICS
    • G10MUSICAL INSTRUMENTS; ACOUSTICS
    • G10LSPEECH ANALYSIS TECHNIQUES OR SPEECH SYNTHESIS; SPEECH RECOGNITION; SPEECH OR VOICE PROCESSING TECHNIQUES; SPEECH OR AUDIO CODING OR DECODING
    • G10L25/00Speech or voice analysis techniques not restricted to a single one of groups G10L15/00 - G10L21/00
    • G10L25/48Speech or voice analysis techniques not restricted to a single one of groups G10L15/00 - G10L21/00 specially adapted for particular use
    • G10L25/51Speech or voice analysis techniques not restricted to a single one of groups G10L15/00 - G10L21/00 specially adapted for particular use for comparison or discrimination
    • G10L25/60Speech or voice analysis techniques not restricted to a single one of groups G10L15/00 - G10L21/00 specially adapted for particular use for comparison or discrimination for measuring the quality of voice signals
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/12Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/30Services specially adapted for particular environments, situations or purposes
    • H04W4/40Services specially adapted for particular environments, situations or purposes for vehicles, e.g. vehicle-to-pedestrians [V2P]
    • H04W4/42Services specially adapted for particular environments, situations or purposes for vehicles, e.g. vehicle-to-pedestrians [V2P] for mass transport vehicles, e.g. buses, trains or aircraft

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  • the invention belongs to the technical field of marine communication base stations, and in particular relates to a shipborne communication monitoring system.
  • a mobile communication call quality remote detection system for remote detection of mobile communication network signals or the output signals of mobile communication source equipment (repeaters, trunk amplifiers, BTS cells).
  • these systems have the function of listening to the voice quality of the communication network, they can manually evaluate the voice quality of the communication network subjectively; but artificial listening and subjective evaluation of the voice quality ultimately depend on the subjective feelings of people, which is not only laborious and time-consuming, but also limited by various test conditions And the influence of the subjective factors of the testers, the reliability of the measurement results is affected to a certain extent. Especially if it is desired to perform artificial listening to the voice quality of a large number of detection points in a short period of time and make a unified evaluation, this cannot be achieved.
  • voice quality MOS Mobile Opinion Score average evaluation method
  • PESQ Perceptual evaluation of speech quality ITU-T P.862
  • the voice quality of the output signal of the mobile communication network or source equipment can be evaluated accurately; however, the existing voice quality detection system is not effective in monitoring shipborne communication, and the detection method is relatively simple, resulting in poor detection results. precise.
  • the purpose of the present invention is to provide a shipborne communication monitoring system to solve the problems raised in the above-mentioned background technology.
  • a shipborne communication monitoring system including a voice signal transmitting end, the voice signal transmitting end is connected to a marine communication base station through a wireless signal, in order to convert the voice signal into an electrical signal and Transmission to the marine communication base station.
  • the wireless signal of the marine communication base station is connected to the server, and the received electrical signal is sent to the server;
  • the server is connected to the voice signal receiving end and the signal receiving module through a wired network, and sends the electrical signal to the signal receiving module and the voice signal receiving end through the wired network.
  • the signal receiving module is electrically connected to the PESQ system, and is used to receive the electrical signal sent by the voice signal transmitting end.
  • the voice signal transmitting end is also electrically connected to the recording module, and the recording module is used to record the voice information of the voice signal transmitting end.
  • the recording module is electrically connected to the recording file transmission module, and is used to send the recorded voice information to the recording file receiving end through the marine communication base station, server, and wired network, and the recording file receiving end and the voice signal receiving end are both connected to the voice tester.
  • the signal receiving module is also electrically connected to the re-inspection sampling module, and the re-inspection sampling module is electrically connected to the manual re-inspection module, and the re-inspection sampling module samples and selects the voice signal received by the signal receiving module, and sends it to the artificial re-inspection module.
  • inspection module, and the manual re-inspection module distributes the received voice signals to manual inspection personnel.
  • the recording file receiving end is also electrically connected to a re-inspection sampling module, the re-inspection sampling module is electrically connected to a speech-to-text module, and the speech-to-text module is electrically connected to a manual re-examination module.
  • the speech-to-text module converts the speech recorded by the recording module into text, and manually detects the speech-converted text.
  • the PESQ system is connected with an alarm, and an alarm is set when the MOS value of PESQ is lower than 2.5.
  • the PESQ system and the speech tester store the detection data in a storage module.
  • the manual detection personnel input the detection results into the storage module, the detection results are counted in a form, and the manual detection results are marked.
  • the marine communication base station also includes an automatic response module and a test signal receiving and transmitting module
  • the marine communication base station signal is connected to the on-board information processor
  • the on-board information processor includes a test signal receiving and transmitting module and a delay calculation module;
  • the test signal receiving and transmitting modules are connected by communication to transmit and receive the test signal.
  • the test signal receiving and transmitting module in the marine communication base station is electrically connected to the automatic answering module, and the test signal receiving and transmitting module in the shipboard information processor is electrically connected. Delay calculation module.
  • the shipborne communication monitoring system can record the sound of the voice signal transmitting end and send it to the receiving end of the recording file.
  • the voice quality can be detected more accurately, and It can also be detected by PESQ system and manual re-inspection, with various detection methods and more accurate detection results
  • a delay calculation module for calculating communication delay is also set up, which can monitor the delay of communication signals, and the monitoring is more comprehensive and reliable.
  • Fig. 1 is the module schematic diagram of the present invention
  • Fig. 2 is a schematic diagram of a speech-to-text detection module of the present invention
  • FIG. 3 is a block diagram of delay calculation in the present invention.
  • the present invention provides a shipborne communication monitoring system as shown in Figures 1-3, including a voice signal transmitting end, the voice signal transmitting end is a marine telephone or mobile phone, which is the end for speaking, and the voice signal transmitting end is connected to the marine communication through a wireless signal
  • the base station is used to convert the voice signal into an electrical signal and transmit it to the marine communication base station;
  • the wireless signal of the marine communication base station is connected to the server, and the server is connected to the voice signal receiving end and the signal receiving module through a wired network. It can be used in two directions with the receiving end, and the speaking end can also be used as the receiving end.
  • the voice signal transmitter and the voice signal receiving end are used to distinguish.
  • the marine communication base station sends the received electrical signal to the server, and the server then sends the electrical signal The signal is sent to the signal receiving module and the voice signal receiving end through the wired network;
  • the signal receiving module is electrically connected to the PESQ system to receive the electrical signal sent by the voice signal transmitter; PESQ compares the output signal extracted when the signal is transmitted through the device with the reference signal to calculate the difference value, the difference between the output signal and the reference signal The greater the resistance, the lower the calculated MOS parameter value.
  • the PESQ system is connected to the alarm, and the alarm is set when the MOS value of PESQ is lower than 2.5. This score is the mapping score of PESQ based on the MOS score.
  • the voice signal transmitting end is also electrically connected to the recording module, and the recording module is electrically connected to the recording file transmission module.
  • the recording module is used to record the voice information of the voice signal transmitting end
  • the recording file transmission module is used to transmit the recorded voice information through the marine communication base station and server.
  • the wired network sends to the receiving end of the recording file, the receiving end of the recording file and the receiving end of the voice signal are both telecommunications connected to the voice tester, the voice tester is used to test the input voice quality, and can also compare the input voice with the recording, voice test
  • the instrument uses DSP as the core, uses PESQ or MOS as the voice quality judgment standard, tests the voice quality and outputs the structure.
  • the signal receiving module is also electrically connected to the re-inspection sampling module, and the re-inspection sampling module is electrically connected to the manual re-inspection module.
  • the re-inspection sampling module samples and selects the voice signal received by the signal receiving module and sends it to the manual re-inspection module.
  • the received voice signal is assigned to the manual inspectors, and the manual re-inspection is carried out by the manual inspectors.
  • the re-inspection sampling module is based on the PLC to generate a random time period, and extract the voice within the time period according to the time period to realize sampling.
  • the recording file receiving end is also electrically connected to the re-inspection sampling module, and the re-inspection sampling module is electrically connected to the speech-to-text module.
  • the re-inspection module is a computer with a display function. Through manual re-inspection, the voice-to-text module converts the voice recorded by the recording module into text, and manually detects the voice-converted text. In the process of voice-to-text conversion, the unrecognizable Voice is replaced by special characters (such as *), which can quickly and intuitively see the quality of voice transmission.
  • the PESQ system and voice tester store the detection data in the storage module, and the manual detection personnel input the detection results into the storage module, and the detection results are counted in the form of tables, and the manual detection results are marked, and the manual detection results will use different colors Recorded in the statistical table, use green to indicate that the manual detection result is the same as the PESQ system detection result, and red to indicate that the manual detection result is different from the PESQ system detection result.
  • the marine communication base station also includes an automatic answering module and a test signal receiving and transmitting module.
  • the signal of the marine communication base station is connected to the onboard information processor.
  • Communication connection for transmitting and receiving test signals, the test signal receiving and transmitting module in the marine communication base station is electrically connected to the automatic response module, the test signal receiving and transmitting module in the ship-borne information processor is electrically connected to the delay calculation module, and the ship-borne information
  • the processor is integrated in the ship's computer, and the delay calculation module is a timer. After the test signal is transmitted, it will start timing.
  • the ship's information processor transmits the test signal through the test signal receiving and transmitting module.
  • the test signal can be a series of continuous numbers.
  • the marine communication base station receives the digital voice, the automatic response module sends a response immediately, and sends it to the on-board information processor through the test signal receiving and transmitting module, and the delay calculation module ends timing after receiving the response information, so that the delay can be calculated.
  • the recording module set at the voice signal transmitter will record the voice information, and send it to the recording file receiving end through the recording file transmission module through the marine communication base station, server, and wired network.
  • Real-time transmission to the voice signal receiving end Due to the influence of the network, the voice information transmitted in real time will have problems such as intermittent and noise.
  • the recorded and transmitted voice files will not have problems such as intermittent and noise.

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  • Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Health & Medical Sciences (AREA)
  • Computational Linguistics (AREA)
  • Audiology, Speech & Language Pathology (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • Acoustics & Sound (AREA)
  • Multimedia (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Aviation & Aerospace Engineering (AREA)
  • Quality & Reliability (AREA)
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Abstract

本发明公开了一种船载通信监控系统,包括语音信号发射端,语音信号发射端通过无线信号连接船用通信基站,语音信号发射端还电性连接录音模块,录音模块电性连接录音文件传输模块,录音模块用于录取语音信号发射端的语音信息,录音文件传输模块用于将录取的语音信息通过船用通信基站、服务器、有线网络发送至录音文件接收端,录音文件接收端和语音信号接收端均电信连接语音测试仪。可以将语音信号发射端的声音录音并发送至接录音文件接收端,通过对比实时语音与语音录音,可以更加准确的检测出语音质量,还可以通过PESQ系统和人工复检进行检测,检测方式多样,检测结果更加准确;还设置了计算通信延时的延迟计算模块,可监控通信信号的延时。

Description

一种船载通信监控系统 技术领域
本发明属于船用通信基站技术领域,具体涉及一种船载通信监控系统。
背景技术
目前在移动通信运行网络中,已有移动通信通话质量远程检测系统用于远程检测移动通信网络信号或移动通信信源设备(直放站、干线放大器、BTS蜂窝)的输出信号。虽然这些系统对通信网络的话音质量有聆听功能,可以人工主观评估通信网络的通话质量;但人工聆听和主观评估话音质量最终取决于人的主观感受,不但费力费时,而且受种种测试条件的限制和测试人员主观因素的影响,使得测量结果的可靠性受到一定的影响。尤其是如果希望在短时间内对大批量检测点的语音质量进行人工聆听、并做出统一评估,这是无法实现的。因此,人们迫切希望有一种基于PESQ(Perceptual evaluationof speech quality感知话音评估法ITU-T P.862)话音质量MOS(MeanOpinion Score平均评定方法)评估技术应用于移动通信网络远程检测系统中,从而客观高效地评价移动通信网络或信源设备(直放站或干线放大器)输出信号的话音质量;但是现有的话音质量检测系统对船载通信监控效果不好,检测方式较为单一,导致检测结果较不准确。
发明内容
本发明的目的在于提供一种船载通信监控系统,以解决上述背景技术中提出的问题。
为实现上述目的,本发明提供如下技术方案:一种船载通信监控系统,包括语音信号发射端,所述语音信号发射端通过无线信号连接船用通信基站,用以将语音信号转换成电信号并传输至船用通信基站。
所述船用通信基站无线信号连接服务器,将接收的电信号发送至服务器;
所述服务器通过有线网络连接语音信号接收端和信号接收模块,将电信号通过有线网络发送至信号接收模块和语音信号接收端。
所述信号接收模块电性连接PESQ系统,用于接收语音信号发射端发出的电信号。
所述语音信号发射端还电性连接录音模块,录音模块用于录取语音信号发射端的语音信息。
所述录音模块电性连接录音文件传输模块,用于将录取的语音信息通过船用通信基站、服务器、有线网络发送至录音文件接收端,所述录音文件接收端和语音信号接收端均电信连接语音测试仪。
优选的,所述信号接收模块还电性连接复检抽样模块,所述复检抽样模块电性连 接人工复检模块,复检抽样模块抽样选取信号接收模块接收的语音信号,并发送至人工复检模块,人工复检模块将接收的语音信号分配至人工检测人员。
优选的,所述录音文件接收端也电性连接复检抽样模块,所述复检抽样模块电性连接语音转文字模块,所述语音转文字模块电性连接人工复检模块。
优选的,所述语音转文字模块将录音模块录取的语音转换成文字,通过人工检测语音转换的文字。
优选的,所述PESQ系统连接报警器,并设置PESQ的MOS值低于2.5时进行报警。
优选的,所述PESQ系统和语音测试仪将检测数据存储至存储模块中。
优选的,所述人工检测人员将检测结果输入存储模块中,检测结果采用表格方式统计,并将人工检测结果标出。
优选的,所述船用通信基站内还包括自动应答模块和测试信号接收发射模块,船用通信基站信号连接船载信息处理器,所述船载信息处理器包括测试信号接收发射模块和延迟计算模块;测试信号接收发射模块之间通信连接,进行测试信号的发射与接收,船用通信基站内的测试信号接收发射模块电性连接自动应答模块,船载信息处理器内的测试信号接收发射模块电性连接延迟计算模块。
本发明的技术效果和优点:该船载通信监控系统,可以将语音信号发射端的声音录音并发送至接录音文件接收端,通过对比实时语音与语音录音,可以更加准确的检测出语音质量,而且还可以通过PESQ系统和人工复检进行检测,检测方式多样,检测结果更加准确;还设置了计算通信延时的延迟计算模块,可监控通信信号的延时,监控更加全面,更加可靠。
附图说明
参照附图来说明本发明的公开内容。应当了解,附图仅仅用于说明目的,而并非意在对本发明的保护范围构成限制。在附图中,相同的附图标记用于指代相同的部件。其中:
图1为本发明的模块示意图;
图2为本发明的语音转文字检测模块示意图;
图3为本发明的延迟计算的模块示意图。
具体实施方式
下面结合附图对本发明的具体实施方式作进一步说明。在此需要说明的是,对于这些实施方式的说明用于帮助理解本发明,但并不构成对本发明的限定。此外,下面所描述的本发明各个实施方式中所涉及的技术特征只要彼此之间未构成冲突就可以相互组合。
本发明提供了如图1-3所示的一种船载通信监控系统,包括语音信号发射端,语 音信号发射端为船用电话或手机,为发话一端,语音信号发射端通过无线信号连接船用通信基站,用以将语音信号转换成电信号并传输至船用通信基站;船用通信基站无线信号连接服务器,服务器通过有线网络连接语音信号接收端和信号接收模块,语音信号接收端为接话一端,发话与接话均可进行双向使用,发话一端也可作为接话使用,为方便叙述使用语音信号发射端和语音信号接收端进行区分,船用通信基站将接收的电信号发送至服务器,服务器再将电信号通过有线网络发送至信号接收模块和语音信号接收端;
信号接收模块电性连接PESQ系统,用于接收语音信号发射端发出的电信号;PESQ把在信号传输通过设备时提取的输出信号与参照信号进行比较计算出差异值,输出信号和参照信号的差异性越大,计算出的MOS参数值就越低。PESQ系统连接报警器,并设置PESQ的MOS值低于2.5时进行报警,该分值是PESQ以MOS分为参考的映射分。
语音信号发射端还电性连接录音模块,录音模块电性连接录音文件传输模块,录音模块用于录取语音信号发射端的语音信息,录音文件传输模块用于将录取的语音信息通过船用通信基站、服务器、有线网络发送至录音文件接收端,录音文件接收端和语音信号接收端均电信连接语音测试仪,语音测试仪用于测试输入的语音质量,也可以将输入的语音与录音进行比较,语音测试仪以DSP为内核,采用PESQ或MOS作为语音质量判断标准,测试语音质量并输出结构。
信号接收模块还电性连接复检抽样模块,复检抽样模块电性连接人工复检模块,复检抽样模块抽样选取信号接收模块接收的语音信号,并发送至人工复检模块,人工复检模块将接收的语音信号分配至人工检测人员,通过人工检测人员进行人工复检,复检抽样模块以plc为基础,生成随机时间段,按照时间段提取该时间段内的语音,实现抽样。
录音文件接收端还电性连接复检抽样模块,复检抽样模块电性连接语音转文字模块,语音转文字模块采用讯飞的语音识别模块,语音转文字模块电性连接人工复检模块,人工复检模块即为一个具有显示功能的计算机,通过人工进行复检,语音转文字模块将录音模块录取的语音转换成文字,通过人工检测语音转换的文字,语音转换文字过程中,将无法识别的语音采用特殊字符代替(如*),可以快速直观的看出语音传输后的质量。
PESQ系统和语音测试仪将检测数据存储至存储模块中,人工检测人员将检测结果输入存储模块中,检测结果采用表格方式统计,并将人工检测结果标出,人工检测的结果会使用不同的颜色记录在统计的表格中,使用绿色表示人工检测结果与PESQ系统检测结果相同,红色表示人工检测结果与PESQ系统检测结果不同。
船用通信基站内还包括自动应答模块和测试信号接收发射模块,船用通信基站信号连接船载信息处理器,船载信息处理器包括测试信号接收发射模块和延迟计算模块;测试信号接收发射模块之间通信连接,进行测试信号的发射与接收,船用通信基站内的测试信号接收发射模块电性连接自动应答模块,船载信息处理器内的测试信号接收 发射模块电性连接延迟计算模块,船载信息处理器集合在船舶内计算机中,延迟计算模块为一个计时器,测试信号发射后即进入计时,船载信息处理器通过测试信号接收发射模块进行发射测试信号,测试信号可以为一串连续的数字语音,船用通信基站接收到该数字语音,自动应答模块立即发出应答,通过测试信号接收发射模块发送至船载信息处理器,延迟计算模块接收到应答信息便结束计时,从而可计算出延时。
该船载通信监控系统在使用的过程中,语音信号发射端设置的录音模块将语音信息录下,并通过录音文件传输模块经船用通信基站、服务器、有线网络发送至录音文件接收端,语音信息实时传输至语音信号接收端,由于网络影响,实时传输的语音信息会出现断续、噪音等问题,录取并传输的语音文件不会出现断续、噪音等问题,通过对比实时语音与语音录音,可以更加准确的检测出语音质量,而且还可以通过PESQ系统和人工复检进行检测,检测方式多样,检测结果更加准确;还可根据延迟计算模块计算延迟,使通信监控更加全面。
尽管上面已经示出和描述了本发明的实施例,可以理解的是,上述实施例是示例性的,不能理解为对本发明的限制,本领域的普通技术人员在本发明的范围内可以对上述实施例进行变化、修改、替换和变型。

Claims (8)

  1. 一种船载通信监控系统,包括语音信号发射端,其特征在于:
    所述语音信号发射端通过无线信号连接船用通信基站,用以将语音信号转换成电信号并传输至船用通信基站;
    所述船用通信基站无线信号连接服务器,将接收的电信号发送至服务器;
    所述服务器通过有线网络连接语音信号接收端和信号接收模块,将电信号通过有线网络发送至信号接收模块和语音信号接收端;
    所述信号接收模块电性连接PESQ系统,用于接收语音信号发射端发出的电信号;
    所述语音信号发射端还电性连接录音模块,录音模块用于录取语音信号发射端的语音信息;
    所述录音模块电性连接录音文件传输模块,用于将录取的语音信息通过船用通信基站、服务器、有线网络发送至录音文件接收端,所述录音文件接收端和语音信号接收端均电信连接语音测试仪。
  2. 根据权利要求1所述的一种船载通信监控系统,其特征在于:所述信号接收模块还电性连接复检抽样模块,所述复检抽样模块电性连接人工复检模块,复检抽样模块抽样选取信号接收模块接收的语音信号,并发送至人工复检模块,人工复检模块将接收的语音信号分配至人工检测人员。
  3. 根据权利要求1所述的一种船载通信监控系统,其特征在于:所述录音文件接收端也电性连接复检抽样模块,所述复检抽样模块电性连接语音转文字模块,所述语音转文字模块电性连接人工复检模块。
  4. 根据权利要求3所述的一种船载通信监控系统,其特征在于:所述语音转文字模块将录音模块录取的语音转换成文字,通过人工检测语音转换的文字。
  5. 根据权利要求1所述的一种船载通信监控系统,其特征在于:所述PESQ系统连接报警器,并设置PESQ的MOS值低于2.5时进行报警。
  6. 根据权利要求1所述的一种船载通信监控系统,其特征在于:所述PESQ系统和语音测试仪将检测数据存储至存储模块中。
  7. 根据权利要求6所述的一种船载通信监控系统,其特征在于:所述人工检测人员将检测结果输入存储模块中,检测结果采用表格方式统计,并将人工检测结果标出。
  8. 根据权利要求1所述的一种船载通信监控系统,其特征在于:所述船用通信基站内还包括自动应答模块和测试信号接收发射模块,船用通信基站信号连接船载信息处理器,所述船载信息处理器包括测试信号接收发射模块和延迟计算模块;测试信号接收发射模块之间通信连接,进行测试信号的发射与接收,船用通信基站内的测试信号接收发射模块电性连接自动应答模块,船载信息处理器内的测试信号接收发射模块电性连接延迟计算模块。
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