WO2019061055A1 - 电子设备的测试方法及系统 - Google Patents

电子设备的测试方法及系统 Download PDF

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Publication number
WO2019061055A1
WO2019061055A1 PCT/CN2017/103602 CN2017103602W WO2019061055A1 WO 2019061055 A1 WO2019061055 A1 WO 2019061055A1 CN 2017103602 W CN2017103602 W CN 2017103602W WO 2019061055 A1 WO2019061055 A1 WO 2019061055A1
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Prior art keywords
electronic device
test
noise
testing
voice
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PCT/CN2017/103602
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English (en)
French (fr)
Inventor
王周丹
夏相声
王雪蓉
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深圳传音通讯有限公司
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Application filed by 深圳传音通讯有限公司 filed Critical 深圳传音通讯有限公司
Priority to PCT/CN2017/103602 priority Critical patent/WO2019061055A1/zh
Publication of WO2019061055A1 publication Critical patent/WO2019061055A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/24Arrangements for testing

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  • the present invention relates to the field of mobile communication technologies, and in particular, to a method and system for testing an electronic device.
  • the user may also mistakenly believe that the carrier network quality problem, resulting in operator loss and product brand image damage, users may also fully believe that the quality of the mobile phone is not good, resulting in irreparable damage to the manufacturer's brand.
  • the main method of improving the call is to implement mobile phone noise reduction.
  • Most of the brand subsidiary models choose dual MIC noise reduction, but the relative cost is relatively high, obviously not suitable for ordinary model phones.
  • the Qosound application just solves this problem.
  • Qosound is currently implementing single MIC noise reduction, which can effectively improve the voice quality of voice calls with a small increase in cost, thereby enhancing the brand influence and market competitiveness of the company, gaining consumer recognition and support, expanding market space and acquiring greater business. value.
  • the Qosound single MIC noise reduction objective test program is relatively scarce, and it is necessary to have more professional test instruments and test institutions to conduct related tests.
  • the Qosound single MIC noise reduction voice call objective sound is tested with a professional high-end voice test system (such as ACQUA high-end voice test system), because the high-end voice test system is expensive (the comprehensive tester + silent room price is usually About a few million RMB), there are very few companies and professional certification bodies to build this test system and environment.
  • a professional high-end voice test system such as ACQUA high-end voice test system
  • the high-end voice test system is expensive (the comprehensive tester + silent room price is usually About a few million RMB), there are very few companies and professional certification bodies to build this test system and environment.
  • the advantages of the ACQUA high-end speech test system are: 1. The corresponding noise reduction effect can be seen at the end of the test; 2. The steps are relatively simple. However, its shortcomings are also obvious: 1. The equipment cost is high; 2. It needs irregular calibration and maintenance; 3. The test period needs to be reserved, and the test period is long; 4. It is impossible to visually see the advantages and disadvantages of noise reduction.
  • FIG. 1 is a schematic diagram showing the working structure of the ACQUA high-order speech test system in the prior art: mainly built by a human head model, an audio tester, a network comprehensive tester, and a silent room.
  • the present invention provides a testing method and system for an electronic device, the testing method of the electronic device comprising: starting an analog noise source to provide a noise testing environment; respectively, the first electronic device in the noise testing environment The device, the second electronic device establishes a call with the electronic device, wherein the first electronic device has a noise reduction function; and the test voice is respectively provided to the first electronic device and the second electronic device; according to the test voice, And obtaining test results of the first electronic device and the second electronic device, respectively.
  • the step of providing the test voice to the first electronic device and the second electronic device respectively includes: acquiring a preset test text; and acquiring the test voice according to the preset test text.
  • the step of initiating a simulated noise source to provide a noise test environment includes providing one or more players as analog noise sources; and activating the one or more players to provide a noise test environment.
  • the testing method of the electronic device further includes: providing an audio tester; starting the audio tester to test a noise test environment provided by the analog noise source; and determining whether the noise test environment meets the test condition.
  • the step of acquiring the test results of the first electronic device and the second electronic device according to the test voice respectively includes: starting a voice analysis module, and respectively respectively, the first electronic device and the second electronic device
  • the test voice received by the device is converted into the first text and the second text; the audio analysis module is activated, and the first text and the second text are analyzed to obtain test results.
  • the invention also provides a test system for an electronic device, comprising: an analog noise source for providing a noise testing environment; the electronic device is configured to establish a call with the first electronic device and the second electronic device in the noise testing environment, wherein the first electronic device has a noise reduction function; and the voice input device is tested. Providing a test voice to the first electronic device and the second electronic device respectively; and a test result analyzing device, configured to respectively obtain the test of the first electronic device and the second electronic device according to the test voice result.
  • the analog noise source includes one or more players.
  • the test system of the sub-device further includes: an audio tester, configured to test a noise test environment provided by the analog noise source, and determine whether the noise test environment meets a test condition.
  • the test result analysis device includes: a voice analysis module, configured to respectively convert test voices received by the first electronic device and the second electronic device into first text and second text; and an audio analysis module, configured to: The first text and the second text are analyzed to obtain test results.
  • testing method and system of the electronic device according to the present invention have the following advantages compared with the prior art:
  • the testing method and system of the electronic device of the invention only need to be equipped with a corresponding noise analog source and an electronic device for conducting a third-party call, and does not require high test equipment, thereby greatly reducing the test cost;
  • the speech analysis module and the audio analysis module can obtain the analysis result in time, which not only effectively reduces the test period, but also greatly improves the flexibility of the test.
  • FIG. 1 is a schematic diagram of a test work architecture based on an ACQUA test system in the prior art
  • FIG. 2 is a schematic diagram showing the working structure of an implementation manner of a test system for an electronic device according to the present invention
  • FIG. 3 is a schematic flow chart of an implementation manner of a testing method of an electronic device according to the present invention.
  • FIG. 4 is a schematic flow chart of another implementation manner of a testing method of an electronic device according to the present invention.
  • FIG. 5 is a schematic diagram of test results of a first electronic device in the present invention.
  • FIG. 6 is a schematic diagram showing test results of a second electronic device in the present invention.
  • the terms “including”, “comprising”, “having”, or any other variants are intended to encompass a non-exclusive inclusion, such that a process, method, article, or terminal device that includes a plurality of elements includes not only those elements but also Includes other elements not explicitly listed, or elements that are inherent to such a process, method, item, or terminal device.
  • An element defined by the phrase “including” or “comprising” does not exclude the presence of additional elements in the process, method, article or terminal device including the element.
  • “greater than”, “less than”, “exceeded”, etc. are understood as not including the number; “above”, “below”, “inside”, etc. are understood to include the number.
  • FIG. 2 is a schematic diagram of a working architecture of an implementation manner of a test system for an electronic device according to the present invention
  • the test system of the electronic device includes: an analog noise source, a matching electronic device, a test voice input device, and a test The result analysis device (not shown).
  • the analog noise source can be placed in a test lab.
  • the analog noise source is used to provide a noise test environment; as shown in FIG. 2, the analog noise source includes one or more players. Specifically, four players (speakers) can be placed in each of the four corners of the test lab to provide a uniform noise test environment. In specific applications, you can set the noise according to the test requirements. The decibel (dB) of the sound, if required, the noise played by the speaker is greater than 65dB to meet the test conditions.
  • the matching electronic device is disposed outside the testing laboratory, that is, not in the noise testing environment, and establishes a call with the first electronic device and the second electronic device in the noise testing environment respectively during the testing process.
  • the first electronic device has a noise reduction function.
  • the first electronic device may include algorithm software with a noise reduction function, such as Qosound algorithm software, or the first electronic device is provided with noise reduction.
  • Hardware circuit this embodiment does not limit the software or hardware of the noise reduction function.
  • the second electronic device does not have a noise reduction function, such as not including algorithm software with noise reduction function, hardware circuit for reducing noise, and the like.
  • the electronic device includes, but is not limited to, a handheld computer, a tablet computer, a mobile phone, a smart phone, a media player, a personal digital assistant (PDA), etc., and a combination of two or more of them.
  • the electronic device typically includes a memory, a memory controller, one or more processing units (CPUs), peripheral interfaces, RF circuits, audio circuits, speakers, microphones, input/output (I/O) subsystems, touch screens, others Output or control device, as well as external ports. These components communicate over one or more communication buses or signal lines. It should be understood that the electronic device in this embodiment is only an example.
  • the components of the electronic device may have more or fewer components in the embodiment, or have different component configurations; and various components.
  • This can be implemented in hardware, software, or a combination of hardware and software, including one or more signal processing and/or application specific integrated circuits.
  • the electronic device can also include a power system for powering various components.
  • the power system can include a power management system, one or more power sources (eg, battery, alternating current (AC)), charging system, power failure detection circuit, power converter or inverter, power status indicator (eg, light emitting diode (LED) )), as well as any other components associated with power generation, management, and distribution in portable devices.
  • test voice input device is configured to provide test voices to the first electronic device and the second electronic device, respectively.
  • the test voice input device may perform input of a preset test voice by the audio player; in other embodiments, the test text may also be read by the tester to form a preset test voice. This embodiment does not limit this.
  • the input of the test voice needs to reach a preset time, for example, between 1 minute and 3 minutes for subsequent analysis.
  • the input device for testing voice may include an audio circuit, a speaker, and a microphone.
  • the wind is used to provide an audio interface between the user and the electronic device.
  • the audio circuit receives audio data from the peripheral interface, converts the audio data into an electrical signal, and transmits the electrical signal to the speaker.
  • the speaker transforms the electrical signal into a human audible sound wave.
  • the audio circuit also receives an electrical signal that is converted from sound waves by a microphone.
  • the audio circuit converts the electrical signal into audio data and transmits the audio data to a peripheral interface for processing. Audio data may be retrieved from the memory and/or RF circuitry by the peripheral interface and/or transmitted to the memory and/or RF circuitry.
  • the audio circuit further includes a headset jack.
  • the headset jack provides an interface between the audio circuitry and a removable audio input/output peripheral, for example, the audio input/output peripheral can be either a pure output headset or both outputs (Headphones for single or binaural headphones) and input (microphone) headsets.
  • the audio input/output peripheral can be either a pure output headset or both outputs (Headphones for single or binaural headphones) and input (microphone) headsets.
  • the test result analysis device is configured to separately obtain test results of the first electronic device and the second electronic device according to the test voice.
  • the test result analysis device may include: a voice analysis module and an audio analysis module.
  • the voice analysis module is configured to convert the test voices received by the first electronic device and the second electronic device into a first text and a second text, respectively; the audio analysis module is configured to use the first text And analyzing the second text to obtain test results.
  • the voice analysis module and the audio analysis module can be implemented by software.
  • the received test voice is converted into a log file format by a Speech Analyzer, and the log file is analyzed by using an audio analysis software (coolpro2). Get the final test results.
  • the algorithm software and the test result may all be stored in a memory, that is, the electronic device may include a memory, a memory controller, one or more processing units (CPUs), a peripheral interface, an RF circuit, an audio circuit, a speaker, a microphone. Input/output (I/O) subsystem, touch screen, other output or control devices, and external ports. These components communicate over one or more communication buses or signal lines.
  • a memory that is, the electronic device may include a memory, a memory controller, one or more processing units (CPUs), a peripheral interface, an RF circuit, an audio circuit, a speaker, a microphone.
  • I/O subsystem touch screen, other output or control devices, and external ports. These components communicate over one or more communication buses or signal lines.
  • the memory can include high speed random access memory and can also include non-volatile memory, such as one or more magnetic disk storage devices, flash memory devices, or other non-volatile solid state storage devices.
  • the memory may also include memory remote from one or more processors, such as network attached memory accessed via RF circuitry or external ports and a communication network (not shown), where the communication network may be the Internet One or more internal networks, a local area network (LAN), a wide area network (WLAN), a storage area network (SAN), etc., or a suitable combination thereof.
  • Memory controller can control the device Access to memory by other components such as the CPU and peripheral interfaces.
  • the test system of the electronic device in this embodiment may further include: an audio tester.
  • the audio tester is configured to test a noise test environment provided by the analog noise source, and determine whether the noise test environment satisfies test conditions.
  • the audio tester specifically measures the decibel in the noise test environment. For example, according to the test requirement, the noise test environment needs to be set to be greater than 65 dB, and if the volume measured by the audio tester is greater than 65 dB, the determination is performed. The noise test environment satisfies the test condition; and if the volume measured by the audio tester is less than 65 dB, it is determined that the noise test environment does not meet the test condition, and the noise test environment needs to be adjusted; specifically, The volume of the simulated noise source is increased such that the volume of the noise test environment is greater than 65 dB such that the noise test environment meets the test conditions.
  • the specific process of testing using the test system shown in Figure 2 is: first enter the engineering mode of the electronic device (such as mobile phone) to open Hardware Testing ⁇ Audio ⁇ Speech Logger; then, play by the speaker player to provide noise test Environment; secondly, establishing a three-party conversation between the first electronic device and the electronic device, and establishing a three-party communication between the second electronic device and the electronic device; again, the tester separately performs the first electronic device and the second in the noise test environment Electronic equipment, text reading, test 1 to 3 minutes, stop talking; Finally, after the test is completed, use the Speech Analyzer to convert the log file format, and analyze it with audio analysis software (coolpro2).
  • the electronic device such as mobile phone
  • test system of the electronic device of the invention does not need to build an expensive ACQUA test system, and saves cost; further, the test system is convenient to test, and it is not necessary to reserve an relevant laboratory, and the test can be performed at any time, which greatly shortens the test cycle;
  • analysis software clearly sees which noise reduction effect is excellent and excellent, and is convenient for analysis, thereby greatly improving the flexibility and practicability of the test.
  • FIG. 3 is a schematic flowchart diagram of an implementation manner of a testing method of an electronic device according to the present invention.
  • the testing method of the electronic device includes:
  • step S10 an analog noise source is activated to provide a noise test environment.
  • the step of initiating an analog noise source to provide a noise test environment includes providing one or more players as an analog noise source; and activating the one or more players to provide a noise test environment.
  • noise can be set according to test requirements.
  • Bay (dB) if required, the speaker playback noise is greater than 65dB to meet the test conditions.
  • Step S20 establishing a call between the first electronic device and the second electronic device and the matching electronic device, wherein the first electronic device has a noise reduction function; and the first electronic device and the second electronic device are both in the In a noise test environment.
  • the first electronic device and the second electronic device are both in a test laboratory, and the test laboratory is provided with one or more analog noise sources to provide a noise test environment. And the electronic device is outside the test laboratory, and talks with the first electronic device and the second electronic device respectively during the test.
  • the matching electronic device is disposed outside the testing laboratory, that is, not in the noise testing environment, and establishes a call with the first electronic device and the second electronic device in the noise testing environment respectively during the testing process.
  • the first electronic device has a noise reduction function.
  • the first electronic device may include algorithm software with a noise reduction function, such as Qosound algorithm software, or the first electronic device is provided with noise reduction.
  • Hardware circuit this embodiment does not limit the software or hardware of the noise reduction function.
  • the second electronic device does not have a noise reduction function, such as not including algorithm software with noise reduction function, hardware circuit for reducing noise, and the like.
  • the electronic device includes, but is not limited to, a handheld computer, a tablet computer, a mobile phone, a smart phone, a media player, a personal digital assistant (PDA), etc., and a combination of two or more of them.
  • the electronic device typically includes a memory, a memory controller, one or more processing units (CPUs), peripheral interfaces, RF circuits, audio circuits, speakers, microphones, input/output (I/O) subsystems, touch screens, others Output or control device, as well as external ports. These components communicate over one or more communication buses or signal lines. It should be understood that the electronic device in this embodiment is only an example.
  • the components of the electronic device may have more or fewer components in the embodiment, or have different component configurations; and various components.
  • This can be implemented in hardware, software, or a combination of hardware and software, including one or more signal processing and/or application specific integrated circuits.
  • the electronic device can also include a power system for powering various components.
  • the power system can include a power management system, one or more power sources (eg, battery, alternating current (AC)), charging system, power failure detection circuit, power converter or inverter, power status indicator (eg, light emitting diode (LED) )), as well as any other components associated with power generation, management, and distribution in portable devices.
  • Step S30 providing test speech to the first electronic device and the second electronic device respectively;
  • the step of providing the test voice to the first electronic device and the second electronic device may include: acquiring a preset test text; and acquiring the test voice according to the preset test text.
  • the test text can be read by the tester to form a preset test voice.
  • the input of the test voice may be performed by the audio player; this embodiment does not limit this.
  • the input of the test voice needs to reach a preset time, for example, between 1 minute and 3 minutes for subsequent analysis.
  • the input device for testing voice may include an audio circuit, a speaker, and a microphone to provide an audio interface between the user and the electronic device.
  • the audio circuit receives audio data from the peripheral interface, converts the audio data into an electrical signal, and transmits the electrical signal to the speaker.
  • the speaker transforms the electrical signal into a human audible sound wave.
  • the audio circuit also receives an electrical signal that is converted from sound waves by a microphone.
  • the audio circuit converts the electrical signal into audio data and transmits the audio data to a peripheral interface for processing. Audio data may be retrieved from the memory and/or RF circuitry by the peripheral interface and/or transmitted to the memory and/or RF circuitry.
  • the audio circuit further includes a headset jack.
  • the headset jack provides an interface between the audio circuitry and a removable audio input/output peripheral, for example, the audio input/output peripheral can be either a pure output headset or both outputs (Headphones for single or binaural headphones) and input (microphone) headsets.
  • the audio input/output peripheral can be either a pure output headset or both outputs (Headphones for single or binaural headphones) and input (microphone) headsets.
  • Step S40 Acquire test results of the first electronic device and the second electronic device according to the test voice.
  • the step S40 includes: starting a voice analysis module, and converting the test voices received by the first electronic device and the second electronic device into the first text and the second text respectively; and starting the audio analysis module, The first text and the second text are analyzed to obtain test results.
  • the voice analysis module and the audio analysis module can be implemented by software.
  • the received test voice is converted into a log file format by a Speech Analyzer, and the log file is analyzed by using an audio analysis software (coolpro2). Get the final test results.
  • the algorithm software and the test result may all be stored in a memory, that is, the electronic device may include a memory, a memory controller, one or more processing units (CPUs), a peripheral interface, an RF circuit, an audio circuit, a speaker, a microphone. , input / output (I / O) subsystem, touch screen, other output Or control devices, as well as external ports. These components communicate over one or more communication buses or signal lines.
  • the memory can include high speed random access memory and can also include non-volatile memory, such as one or more magnetic disk storage devices, flash memory devices, or other non-volatile solid state storage devices.
  • the memory may also include memory remote from one or more processors, such as network attached memory accessed via RF circuitry or external ports and a communication network (not shown), where the communication network may be the Internet One or more internal networks, a local area network (LAN), a wide area network (WLAN), a storage area network (SAN), etc., or a suitable combination thereof.
  • the memory controller can control access to the memory by other components of the device, such as the CPU and peripheral interfaces.
  • FIG. 4 is a schematic flowchart diagram of another implementation manner of a testing method of an electronic device according to the present invention. As shown in the figure, the testing method of the electronic device further includes:
  • Step S50 providing an audio tester
  • Step S60 starting the audio tester to test the noise test environment provided by the analog noise source
  • Step S70 determining whether the noise test environment meets the test condition
  • step S20 is performed to establish a call between the first electronic device and the second electronic device and the matching electronic device, wherein the first electronic device has a noise reduction function; and, the An electronic device and a second electronic device are both in the noise test environment.
  • the first electronic device and the second electronic device are both in a test laboratory, and the test laboratory is provided with one or more analog noise sources to provide The noise testing environment; and the electronic device is outside the testing laboratory, and the first electronic device and the second electronic device are respectively talked during the testing process.
  • step S80 is performed to adjust the analog noise source; and then the audio tester provides a noise test environment provided by the analog noise source until the noise test provided by the analog noise source The environment meets the test conditions.
  • the audio tester specifically measures the decibel in the noise test environment. For example, according to the test requirement, the noise test environment needs to be set to be greater than 65 dB, and if the volume measured by the audio tester is greater than 65 dB, the determination is performed. The noise test environment satisfies the test condition; and if the volume measured by the audio tester is less than 65 dB, it is determined that the noise test environment does not meet the test condition, and the noise test environment needs to be adjusted; specifically, Expand the volume of the analog noise source So that the volume of the noise test environment is greater than 65 dB, so that the noise test environment meets the test conditions.
  • the specific testing process is as follows: first enter the engineering mode of the electronic device (such as mobile phone) to open Hardware Testing ⁇ Audio ⁇ Speech Logger; then, play by the speaker player to provide a noise test environment; secondly, establish the first electronic device Three-way communication with the electronic device, and establishment of the second electronic device and the three-party communication with the electronic device; again, the tester performs text reading on the first electronic device and the second electronic device in the noise test environment, and tests 1 After ⁇ 3 minutes, stop the call; finally, after the test is completed, use the Speech Analyzer to convert the log file format and analyze it with the audio analysis software (coolpro2).
  • FIG. 5 is a schematic diagram of test results of a first electronic device in the present invention
  • FIG. 6 is a schematic diagram of test results of a second electronic device in the present invention.
  • the first electronic device has a noise reduction function
  • the second electronic device does not have a noise reduction function, so the test result of the first electronic device is different from the test result of the second electronic device, by comparing FIG. 5 and FIG.
  • the area where the noise reduction effect is not good can be obtained intuitively, thereby providing a basis for improving the performance of the electronic device.
  • the test system of the electronic device of the invention does not need to build an expensive ACQUA test system, and saves cost; further, the test system is convenient to test, and it is not necessary to reserve an relevant laboratory, and the test can be performed at any time, which greatly shortens the test cycle; It is clear from the analysis software which segment of the noise reduction effect is not good and excellent, which is convenient for analysis, which greatly improves the flexibility and practicability of the test.
  • the testing method and system for the electronic device provided by the present invention only need to arrange one or more analog noise sources in the testing laboratory, and then arrange a matching electronic device outside the testing laboratory for testing.
  • the voice analysis module and the audio analysis module can all be implemented by software algorithms, and do not need to occupy physical space. Therefore, the test system of the electronic device of the invention has low cost, convenient testing and short test period; and, through the voice analysis module and audio analysis The module can obtain test results in a timely manner, thus greatly improving the flexibility and convenience of the test.
  • the testing method and system of the electronic device according to the present invention have the following advantages: low equipment and low price, and four levels of cost saving; further, the testing system is convenient to test, and no relevant experiment is required. Room, ready to test, greatly shortening the test cycle; In addition, the analysis software can clearly see which section of the noise reduction effect is not good and excellent, and is convenient for analysis, thereby greatly improving the flexibility and practicability of the test.

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Abstract

一种电子设备的测试方法及系统,电子设备的测试方法包括:启动模拟噪音源以提供噪音测试环境(S10);分别将处于噪音测试环境中的第一电子设备、第二电子设备与配合电子设备建立通话(S20),其中第一电子设备具有降噪功能;分别对第一电子设备和第二电子设备提供测试语音(S30);根据测试语音,分别获取第一电子设备和第二电子设备的测试结果(S40)。电子设备的测试方法及系统不需要高昂的测试设备,大大降低了测试成本,并且还可以及时的获取分析结果,大大提高了测试的灵活性。

Description

电子设备的测试方法及系统 技术领域
本发明涉及移动通信技术领域,尤其涉及一种电子设备的测试方法及系统。
背景技术
目前手机的数量越来越多,人们对于手机的通话质量的也越来越关注。当用户由于噪声环境的影响不愿意或者根本不能继续通话时,典型的用户行为通常是提前结束通话,这将导致运营商业务直接损失。
另外,用户也可能误认为是运营商网络质量问题,从而导致运营商用户流失和产品品牌形象的损害,用户也可能完全认为手机质量不佳,对制造商品牌导致不可弥补损失。
目前提升通话主要做法就是实行手机降噪,大多品牌旗舰机型都选择双MIC降噪,但是相对成本偏高,显然不适合普通机型手机,Qosound应用刚好解决这个这个难题。
Qosound是目前实行单MIC降噪,在成本小增加的情况下可以有效提升语音通话音质,从而提升公司产品品牌影响力和市场竞争力,获取消费者认可和支持,扩大市场空间,获取更大商业价值。但Qosound单MIC降噪客观测试方案相对匮乏,需要有比较专业的测试仪器和测试机构进行相关测试。
目前Qosound单MIC降噪语音通话客观音效都是用专业的高阶语音测试系统(如ACQUA高阶语音测试系统)进行测试,由于高阶语音测试系统价格昂贵(综测仪+静音室价格通常在几百万人民币左右),目前极少数公司及专业认证机构搭建此测试系统及环境。
ACQUA高阶语音测试系统的优点在于:1.测试结束就可以看到对应降噪效果;2.步骤相对简单。但是其缺点也比较明显:1.设备成本高;2.需要不定期校准和维护;3.测试期需要预约,测试周期长;4.不能直观看到降噪存在优缺点。
图1示出了现有技术中的ACQUA高阶语音测试系统的工作架构示意图:主要由人头模型,音频测试仪,网络综测仪,静音室搭建而成。
在使用ACQUA测试系统测试时,首先,把手机链接到ACQUA综测仪上,静音室音箱播放模拟噪声源,点击TMOS(发送音素通)进行测试即可,(通过ACQUA测试系统测试内部音频算法,给单MIC降噪进行一个综合评分)测试完成后,页面会反馈TMOS测试值,即双MIC降噪效果值,TOMS越大说明降噪音效越好。
现有的ACQUA测试系统测试其环境复杂,价格昂贵、测试周期长,如何有效的降低电子设备的测试成本并直观的获取测试结果就成为本领域技术人员亟待解决的问题之一。
发明的公开
本发明的目的是提供一种电子设备的测试方法及系统,以有效的降低测试成本及有效地提高测试灵活性。
为实现上述目的,本发明提供一种电子设备的测试方法及系统,所述电子设备的测试方法包括:启动模拟噪音源以提供噪音测试环境;分别将处于所述噪音测试环境中的第一电子设备、第二电子设备与配合电子设备建立通话,其中所述第一电子设备具有降噪功能;分别对所述第一电子设备和所述第二电子设备提供测试语音;根据所述测试语音,分别获取所述第一电子设备和所述第二电子设备的测试结果。
所述分别对所述第一电子设备和所述第二电子设备提供测试语音的步骤包括:获取预设的测试文本;根据所述预设的测试文本获取所述测试语音。
所述启动模拟噪音源以提供噪音测试环境的步骤包括:提供一个或多个播放器作为模拟噪音源;启动所述一个或多个播放器以提供噪音测试环境。
所述电子设备的测试方法还包括:提供音频测试仪;启动所述音频测试仪对模拟噪音源提供的噪音测试环境进行测试;判断所述噪音测试环境是否满足测试条件。
所述根据所述测试语音,分别获取所述第一电子设备和所述第二电子设备的测试结果的步骤包括:启动语音分析模块,并分别将所述第一电子设备和所述第二电子设备接收到的测试语音转换为第一文本和第二文本;启动音频分析模块,对所述第一文本和所述第二文本进行分析以获取测试结果。
本发明还提供一种电子设备的测试系统,包括:模拟噪音源,用于提供 噪音测试环境;配合电子设备,用于分别与处于所述噪音测试环境中的第一电子设备、第二电子设备建立通话,其中所述第一电子设备具有降噪功能;测试语音输入设备,用于分别对所述第一电子设备和所述第二电子设备提供测试语音;测试结果分析设备,用于根据所述测试语音,分别获取所述第一电子设备和所述第二电子设备的测试结果。
所述模拟噪音源包括一个或多个播放器。
所述的子设备的测试系统还包括:音频测试仪,用于对所述模拟噪音源提供的噪音测试环境进行测试,并判断所述噪音测试环境是否满足测试条件。
所述测试结果分析设备包括:语音分析模块,用于分别将所述第一电子设备和所述第二电子设备接收到的测试语音转换为第一文本和第二文本;音频分析模块,用于对所述第一文本和所述第二文本进行分析以获取测试结果。
综上所述,本发明所述的电子设备的测试方法及系统,与现有技术相比,具有以下优点:
本发明的电子设备的测试方法及系统中只需要配备相应的噪音模拟源以及进行第三方通话的电子设备即可,不需要高昂的测试设备,大大降低了测试成本;
并且,通过语音分析模块和音频分析模块可以及时的获取分析结果,不仅有效的减少了测试周期,并且还大大提高了测试的灵活性。
附图的简要说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图进行简单介绍,显而易见的,下面描述中的附图是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1为现有技术中的基于ACQUA测试系统的测试工作架构示意图;
图2为本发明中的电子设备的测试系统的一实现方式的工作架构示意图;
图3为本发明中的电子设备的测试方法的一实现方式的流程示意图;
图4为本发明中的电子设备的测试方法的另一实现方式的流程示意图;
图5为本发明中的第一电子设备的测试结果示意图;
图6为本发明中的第二电子设备的测试结果示意图。
实现本发明的最佳方式
为使本发明实施例的目的、技术方案和优点更加清楚,下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
需要说明的是,在本文中,诸如“第一”、“第二”、“第三”等关系术语(如果存在)仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。应该理解这样使用的术语在适当情况下可以互换,以便这里描述的本发明的实施例,例如能够以除了在这里图示或描述的那些以外的顺序实施。此外,术语“包括”、“包含”、“具有”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者终端设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者终端设备所固有的要素。在没有更多限制的情况下,由语句“包括……”或“包含……”限定的要素,并不排除在包括所述要素的过程、方法、物品或者终端设备中还存在另外的要素。此外,在本文中,“大于”、“小于”、“超过”等理解为不包括本数;“以上”、“以下”、“以内”等理解为包括本数。
以下结合图2~图7,以具体地实施例对本发明的技术方案进行详细说明。下面这几个具体的实施例可以相互结合,对于相同或相似的概念或过程可能在某些实施例不再赘述。
如图2所示,为本发明所提供的电子设备的测试系统的一实现方式的工作架构示意图;所述电子设备的测试系统,包括:模拟噪音源、配合电子设备、测试语音输入设备和测试结果分析设备(图中未示出)。
在本实施例中,所述模拟噪音源可以设置在测试实验室中。其中,所述模拟噪音源用于提供噪音测试环境;如图2所示,所述模拟噪音源包括一个或多个播放器。具体地,可以在测试实验室的四个角落分别设置四个播放器(音箱)以提供均匀的噪音测试环境。在具体应用中,可以根据测试需求设置噪 音的分贝(dB),如根据要求,将音箱播放的噪音大于65dB以满足测试条件。
所述配合电子设备设置于测试实验室外,即不处于噪音测试环境中,并在测试过程中分别与处于所述噪音测试环境中的第一电子设备、第二电子设备建立通话。其中所述第一电子设备具有降噪功能,举例来说,所述第一电子设备可以包含具有降噪功能的算法软件,如Qosound算法软件,或者所述第一电子设备设置有用于降低噪音的硬件电路,本实施例对降噪功能的软件或者硬件不作限制。而所述第二电子设备不具有降噪功能,比如既不包含具有降噪功能的算法软件,也没有设置用于降低噪音的硬件电路等等。
本实施例中,所述电子设备包括但不限于手持电脑、平板电脑、移动电话、智能手机、媒体播放器、个人数字助理(PDA)等等,还包括其中两项或多项的组合。所述电子设备通常包括存储器、存储器控制器、一个或多个处理单元(CPU)、外设接口、RF电路、音频电路、扬声器、麦克风、输入/输出(I/O)子系统、触摸屏、其他输出或控制设备,以及外部端口。这些组件通过一条或多条通信总线或信号线进行通信。应当理解,本实施例中的电子设备只是一个实例,具体应用中,电子设备的组件可以本实施例中的电子设备具有更多或更少的组件,或具有不同的组件配置;并且各种组件可以用硬件、软件或软硬件的组合来实现,包括一个或多个信号处理和/或专用集成电路。
所述电子设备还可以包括用于为各种组件供电的电源系统。该电源系统可以包括电源管理系统、一个或多个电源(例如电池、交流电(AC))、充电系统、电源故障检测电路、电源转换器或逆变器、电源状态指示器(例如发光二极管(LED)),以及与便携式设备中的电能生成、管理和分布相关联的其他任何组件。
本实施例中,所述测试语音输入设备用于分别对所述第一电子设备和所述第二电子设备提供测试语音。
具体地,所述测试语音输入设备可以由音频播放器进行预设的测试语音的输入;在其他实施例中,还可以由测试人员阅读预设的测试文本以形成预设的测试语音。本实施例对此不做限制。
在本实施例中,所述测试语音的输入需要达到预设时间,比如说,在1分钟~3分钟之间以便后续的分析。
本实施例中,所述测试语音的输入设备可以包括音频电路、扬声器和麦 克风,以提供用户与电子设备之间的音频接口。音频电路接收来自外设接口的音频数据,将音频数据变换成电信号,并且将电信号传送到扬声器。扬声器将电信号变换成人类可听见的声波。音频电路还接收由麦克风从声波变换的电信号。该音频电路将电信号变换成音频数据,并且将音频数据传送到外设接口,以便进行处理。音频数据可以由外设接口从存储器和/或RF电路中检索出,和/或传送到存储器和/或RF电路。在某些实施例中,音频电路还包括头戴送受话器插孔。该头戴送受话器插孔提供音频电路与可拆装的音频输入/输出外设之间的接口,举例来说,该音频输入/输出外设既可以是纯输出耳机,也可以是同时具有输出(用于单耳或双耳的耳机)和输入(麦克风)的头戴送受话器。
所述测试结果分析设备用于根据所述测试语音,分别获取所述第一电子设备和所述第二电子设备的测试结果。
本实施例中,所述测试结果分析设备可以包括:语音分析模块和音频分析模块。所述语音分析模块用于分别将所述第一电子设备和所述第二电子设备接收到的测试语音转换为第一文本和第二文本;所述音频分析模块用于对所述第一文本和所述第二文本进行分析以获取测试结果。
具体地,所述语音分析模块和音频分析模块均可以由软件实现,比如说,通过Speech Analyzer将接收到的测试语音转换log文件格式,再用音频分析软件(coolpro2)将log文件进行分析,以获取最终的测试结果。
所述算法软件及测试结果均可以存储于存储器中,即所述电子设备可以包括存储器、存储器控制器、一个或多个处理单元(CPU)、外设接口、RF电路、音频电路、扬声器、麦克风、输入/输出(I/O)子系统、触摸屏、其他输出或控制设备,以及外部端口。这些组件通过一条或多条通信总线或信号线进行通信。
所述存储器可包括高速随机存取存储器,并且还可包括非易失性存储器,例如一个或多个磁盘存储设备、闪存设备或其他非易失性固态存储设备。在某些实施例中,存储器还可以包括远离一个或多个处理器的存储器,例如经由RF电路或外部端口以及通信网络(未示出)访问的网络附加存储器,其中所述通信网络可以是因特网、一个或多个内部网、局域网(LAN)、广域网(WLAN)、存储局域网(SAN)等,或其适当组合。存储器控制器可控制设备的 诸如CPU和外设接口之类的其他组件对存储器的访问。
继续参考图2,本实施例中的电子设备的测试系统还可以包括:音频测试仪。所述音频测试仪用于对所述模拟噪音源提供的噪音测试环境进行测试,并判断所述噪音测试环境是否满足测试条件。
具体地,所述音频测试仪具体测量噪音测试环境中的分贝,比如说,根据测试需求,需要将噪音测试环境设置为大于65dB,若由所述音频测试仪测量到的音量大于65dB,则判定所述噪音测试环境满足测试条件;而若由所述音频测试仪测量到的音量小于65dB,则判定所述噪音测试环境未满足测试条件,此时需要调整所述噪音测试环境;具体地,可以扩大模拟噪音源的音量以使得噪音测试环境的音量大于65dB,从而使得所述噪音测试环境满足测试条件。
利用图2所示的测试系统进行测试的具体过程为:首先进入电子设备(如手机)的工程模式,以开启Hardware Testing→Audio→Speech Logger;然后,由音箱播放器进行播放,以提供噪音测试环境;其次,建立第一电子设备与配合电子设备的三方通话,以及建立第二电子设备与配合电子设备的三方通话;再次,由测试人员在噪音测试环境中分别对第一电子设备和第二电子设备,进行文字阅读,测试1~3分钟后,停止通话;最后,在测试完成后用Speech Analyzer转换log文件格式,在用音频分析软件(coolpro2)分析即可。
本发明的电子设备的测试系统不用搭建昂贵的ACQUA测试系统,节省成本;进一步地,该测试系统的测试方便,无需预约相关实验室,随时可以进行测试,大大缩短了测试周期;另外,还可以由分析软件清晰看到哪断降噪效果不佳和优秀,方便分析,从而大大提高了测试的灵活性和实用性。
如图3所示,为本发明所提供的电子设备的测试方法的一实现方式的流程示意图,所述电子设备的测试方法包括:
步骤S10,启动模拟噪音源以提供噪音测试环境。
具体地,所述启动模拟噪音源以提供噪音测试环境的步骤包括:提供一个或多个播放器作为模拟噪音源;启动所述一个或多个播放器以提供噪音测试环境。
具体地,可以在测试实验室的四个角落分别设置四个播放器(音箱)以提供均匀的噪音测试环境。在具体应用中,可以根据测试需求设置噪音的分 贝(dB),如根据要求,将音箱播放的噪音大于65dB以满足测试条件。
步骤S20,分别将第一电子设备、第二电子设备与配合电子设备建立通话,其中所述第一电子设备具有降噪功能;并且,所述第一电子设备和第二电子设备均处于所述噪音测试环境中。
如图2所示的电子设备的测试系统中,所述第一电子设备和第二电子设备均处于测试实验室内,所述测试实验室布置有一个或多个模拟噪音源以提供噪音测试环境;而配合电子设备处于测试实验室外,并在测试过程中分别与所述第一电子设备、第二电子设备进行通话。
所述配合电子设备设置于测试实验室外,即不处于噪音测试环境中,并在测试过程中分别与处于所述噪音测试环境中的第一电子设备、第二电子设备建立通话。其中所述第一电子设备具有降噪功能,举例来说,所述第一电子设备可以包含具有降噪功能的算法软件,如Qosound算法软件,或者所述第一电子设备设置有用于降低噪音的硬件电路,本实施例对降噪功能的软件或者硬件不作限制。而所述第二电子设备不具有降噪功能,比如既不包含具有降噪功能的算法软件,也没有设置用于降低噪音的硬件电路等等。
所述电子设备包括但不限于手持电脑、平板电脑、移动电话、智能手机、媒体播放器、个人数字助理(PDA)等等,还包括其中两项或多项的组合。所述电子设备通常包括存储器、存储器控制器、一个或多个处理单元(CPU)、外设接口、RF电路、音频电路、扬声器、麦克风、输入/输出(I/O)子系统、触摸屏、其他输出或控制设备,以及外部端口。这些组件通过一条或多条通信总线或信号线进行通信。应当理解,本实施例中的电子设备只是一个实例,具体应用中,电子设备的组件可以本实施例中的电子设备具有更多或更少的组件,或具有不同的组件配置;并且各种组件可以用硬件、软件或软硬件的组合来实现,包括一个或多个信号处理和/或专用集成电路。
所述电子设备还可以包括用于为各种组件供电的电源系统。该电源系统可以包括电源管理系统、一个或多个电源(例如电池、交流电(AC))、充电系统、电源故障检测电路、电源转换器或逆变器、电源状态指示器(例如发光二极管(LED)),以及与便携式设备中的电能生成、管理和分布相关联的其他任何组件。
步骤S30,分别对所述第一电子设备和所述第二电子设备提供测试语音;
本实施例中,所述分别对所述第一电子设备和所述第二电子设备提供测试语音的步骤可以包括:获取预设的测试文本;根据所述预设的测试文本获取所述测试语音。
具体地,可以由测试人员阅读预设的测试文本以形成预设的测试语音。在其他实施例中,还可以由音频播放器进行预设的测试语音的输入;本实施例对此不做限制。在本实施例中,所述测试语音的输入需要达到预设时间,比如说,在1分钟~3分钟之间以便后续的分析。
本实施例中,所述测试语音的输入设备可以包括音频电路、扬声器和麦克风,以提供用户与电子设备之间的音频接口。音频电路接收来自外设接口的音频数据,将音频数据变换成电信号,并且将电信号传送到扬声器。扬声器将电信号变换成人类可听见的声波。音频电路还接收由麦克风从声波变换的电信号。该音频电路将电信号变换成音频数据,并且将音频数据传送到外设接口,以便进行处理。音频数据可以由外设接口从存储器和/或RF电路中检索出,和/或传送到存储器和/或RF电路。在某些实施例中,音频电路还包括头戴送受话器插孔。该头戴送受话器插孔提供音频电路与可拆装的音频输入/输出外设之间的接口,举例来说,该音频输入/输出外设既可以是纯输出耳机,也可以是同时具有输出(用于单耳或双耳的耳机)和输入(麦克风)的头戴送受话器。
步骤S40,根据所述测试语音,分别获取所述第一电子设备和所述第二电子设备的测试结果。
具体地,所述步骤S40包括:启动语音分析模块,并分别将所述第一电子设备和所述第二电子设备接收到的测试语音转换为第一文本和第二文本;启动音频分析模块,对所述第一文本和所述第二文本进行分析以获取测试结果。
具体地,所述语音分析模块和音频分析模块均可以由软件实现,比如说,通过Speech Analyzer将接收到的测试语音转换log文件格式,再用音频分析软件(coolpro2)将log文件进行分析,以获取最终的测试结果。
所述算法软件及测试结果均可以存储于存储器中,即所述电子设备可以包括存储器、存储器控制器、一个或多个处理单元(CPU)、外设接口、RF电路、音频电路、扬声器、麦克风、输入/输出(I/O)子系统、触摸屏、其他输出 或控制设备,以及外部端口。这些组件通过一条或多条通信总线或信号线进行通信。
所述存储器可包括高速随机存取存储器,并且还可包括非易失性存储器,例如一个或多个磁盘存储设备、闪存设备或其他非易失性固态存储设备。在某些实施例中,存储器还可以包括远离一个或多个处理器的存储器,例如经由RF电路或外部端口以及通信网络(未示出)访问的网络附加存储器,其中所述通信网络可以是因特网、一个或多个内部网、局域网(LAN)、广域网(WLAN)、存储局域网(SAN)等,或其适当组合。存储器控制器可控制设备的诸如CPU和外设接口之类的其他组件对存储器的访问。
如图4所示,为本发明所提供的电子设备的测试方法的另一实现方式的流程示意图;如图所示,所述电子设备的测试方法还包括:
步骤S50,提供音频测试仪;
步骤S60,启动所述音频测试仪对模拟噪音源提供的噪音测试环境进行测试;
步骤S70,判断所述噪音测试环境是否满足测试条件;
当所述噪音测试环境满足测试条件时,执行步骤S20,分别将第一电子设备、第二电子设备与配合电子设备建立通话,其中所述第一电子设备具有降噪功能;并且,所述第一电子设备和第二电子设备均处于所述噪音测试环境中。同样地,如图2所示的电子设备的测试系统中,所述第一电子设备和第二电子设备均处于测试实验室内,所述测试实验室布置有一个或多个模拟噪音源以提供噪音测试环境;而配合电子设备处于测试实验室外,并在测试过程中分别与所述第一电子设备、第二电子设备进行通话。
而当所述噪音测试环境未满足测试条件时,执行步骤S80,调整模拟噪音源;然后再由音频测试仪对模拟噪音源提供的噪音测试环境进行测试,直到所述模拟噪音源提供的噪音测试环境满足测试条件。
具体地,所述音频测试仪具体测量噪音测试环境中的分贝,比如说,根据测试需求,需要将噪音测试环境设置为大于65dB,若由所述音频测试仪测量到的音量大于65dB,则判定所述噪音测试环境满足测试条件;而若由所述音频测试仪测量到的音量小于65dB,则判定所述噪音测试环境未满足测试条件,此时需要调整所述噪音测试环境;具体地,可以扩大模拟噪音源的音量 以使得噪音测试环境的音量大于65dB,从而使得所述噪音测试环境满足测试条件。
具体的测试过程为:首先进入电子设备(如手机)的工程模式,以开启Hardware Testing→Audio→Speech Logger;然后,由音箱播放器进行播放,以提供噪音测试环境;其次,建立第一电子设备与配合电子设备的三方通话,以及建立第二电子设备与配合电子设备的三方通话;再次,由测试人员在噪音测试环境中分别对第一电子设备和第二电子设备,进行文字阅读,测试1~3分钟后,停止通话;最后,在测试完成后用Speech Analyzer转换log文件格式,在用音频分析软件(coolpro2)分析即可。
图5为本发明中的第一电子设备的测试结果示意图;图6为本发明中的第二电子设备的测试结果示意图。本发明中,第一电子设备具有降噪功能,而第二电子设备不具有降噪功能,因此第一电子设备的测试结果与第二电子设备的测试结果不同,通过比较图5和图6即可直观地获得降噪效果不佳的区域,从而为提高电子设备的性能提供依据。
如图5所示,带Qosound算法的第一电子设备的噪声处理波形图中可以看到无明显噪音干扰情况;而图6中未带Qosound算法的第二电子设备的噪声处理波形图中有未消除的噪音点(如图6中的两个箭头所示区域)。
本发明的电子设备的测试系统不用搭建昂贵的ACQUA测试系统,节省成本;进一步地,该测试系统的测试方便,无需预约相关实验室,随时可以进行测试,大大缩短了测试周期;另外,还可以由分析软件清晰看到哪段降噪效果不佳和优秀,方便分析,从而大大提高了测试的灵活性和实用性。
综上所述,本发明所提供的电子设备的测试方法及系统,只需要在测试实验室中布置一个或多个模拟噪音源,然后在测试实验室外布置一个配合电子设备即可进行测试。而语音分析模块和音频分析模块均可以由软件算法实现,不需要占用物理空间,因此本发明的电子设备的测试系统成本低,且测试方便,测试周期短;并且,通过语音分析模块和音频分析模块可以及时的获取测试结果,因此大大提高了测试的灵活性和便利性。
本发明所述的电子设备的测试方法及系统,与现有技术相比,具有以下优点:设备较低且价格低廉,四级节省成本;进一步地,该测试系统的测试方便,无需预约相关实验室,随时可以进行测试,大大缩短了测试周期;另 外,还可以由分析软件清晰看到哪段降噪效果不佳和优秀,方便分析,从而大大提高了测试的灵活性和实用性。
本领域内的技术人员应明白,上述各实施例可提供为方法、装置、或计算机程序产品。这些实施例可采用完全硬件实施例、完全软件实施例、或结合软件和硬件方面的实施例的形式。上述各实施例涉及的方法中的全部或部分步骤可以通过程序来指令相关的硬件完成,所述的程序可以存储于计算机设备可读取的存储介质中,用于执行上述各实施例方法所述的全部或部分步骤。
上述各实施例是参照根据实施例所述的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到计算机设备的处理器以产生一个机器,使得通过计算机设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
尽管本发明的内容已经通过上述优选实施例作了详细介绍,但应当认识到上述的描述不应被认为是对本发明的限制。在本领域技术人员阅读了上述内容后,对于本发明的多种修改和替代都将是显而易见的。因此,本发明的保护范围应由所附的权利要求来限定。

Claims (9)

  1. 一种电子设备的测试方法,其特征在于,包括:
    启动模拟噪音源以提供噪音测试环境;
    分别将处于所述噪音测试环境中的第一电子设备、第二电子设备与配合电子设备建立通话,其中所述第一电子设备具有降噪功能;
    分别对所述第一电子设备和所述第二电子设备提供测试语音;
    根据所述测试语音,分别获取所述第一电子设备和所述第二电子设备的测试结果。
  2. 如权利要求1所述的电子设备的测试方法,其特征在于,所述分别对所述第一电子设备和所述第二电子设备提供测试语音的步骤包括:
    获取预设的测试文本;
    根据所述预设的测试文本获取所述测试语音。
  3. 如权利要求1所述的电子设备的测试方法,其特征在于,所述启动模拟噪音源以提供噪音测试环境的步骤包括:
    提供一个或多个播放器作为模拟噪音源;
    启动所述一个或多个播放器以提供噪音测试环境。
  4. 如权利要求1所述的电子设备的测试方法,其特征在于,所述电子设备的测试方法还包括:
    提供音频测试仪;
    启动所述音频测试仪对模拟噪音源提供的噪音测试环境进行测试;
    判断所述噪音测试环境是否满足测试条件。
  5. 如权利要求1所述的电子设备的测试方法,其特征在于,所述根据所述测试语音,分别获取所述第一电子设备和所述第二电子设备的测试结果的步骤包括:
    启动语音分析模块,并分别将所述第一电子设备和所述第二电子设备接收到的测试语音转换为第一文本和第二文本;
    启动音频分析模块,对所述第一文本和所述第二文本进行分析以获取测试结果。
  6. 一种电子设备的测试系统,其特征在于,包括:
    模拟噪音源,用于提供噪音测试环境;
    配合电子设备,用于分别与处于所述噪音测试环境中的第一电子设备、第二电子设备建立通话,其中所述第一电子设备具有降噪功能;
    测试语音输入设备,用于分别对所述第一电子设备和所述第二电子设备提供测试语音;
    测试结果分析设备,用于根据所述测试语音,分别获取所述第一电子设备和所述第二电子设备的测试结果。
  7. 如权利要求6所述的电子设备的测试系统,其特征在于,所述模拟噪音源包括一个或多个播放器。
  8. 如权利要求6所述的电子设备的测试系统,其特征在于,还包括:音频测试仪,用于对所述模拟噪音源提供的噪音测试环境进行测试,并判断所述噪音测试环境是否满足测试条件。
  9. 如权利要求6所述的电子设备的测试系统,其特征在于,所述测试结果分析设备包括:
    语音分析模块,用于分别将所述第一电子设备和所述第二电子设备接收到的测试语音转换为第一文本和第二文本;
    音频分析模块,用于对所述第一文本和所述第二文本进行分析以获取测试结果。
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