WO2013013423A1 - 数字健身设备集群系统 - Google Patents

数字健身设备集群系统 Download PDF

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Publication number
WO2013013423A1
WO2013013423A1 PCT/CN2011/078129 CN2011078129W WO2013013423A1 WO 2013013423 A1 WO2013013423 A1 WO 2013013423A1 CN 2011078129 W CN2011078129 W CN 2011078129W WO 2013013423 A1 WO2013013423 A1 WO 2013013423A1
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Prior art keywords
unit
cluster system
digital
fitness equipment
fitness
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PCT/CN2011/078129
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English (en)
French (fr)
Inventor
余军涛
Original Assignee
北京美亚视景创恒科技有限公司
乐动天下(北京)体育科技有限公司
北京美亚视景高新技术有限公司
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Application filed by 北京美亚视景创恒科技有限公司, 乐动天下(北京)体育科技有限公司, 北京美亚视景高新技术有限公司 filed Critical 北京美亚视景创恒科技有限公司
Priority to US14/234,355 priority Critical patent/US20140135996A1/en
Publication of WO2013013423A1 publication Critical patent/WO2013013423A1/zh

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    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H20/00ICT specially adapted for therapies or health-improving plans, e.g. for handling prescriptions, for steering therapy or for monitoring patient compliance
    • G16H20/30ICT specially adapted for therapies or health-improving plans, e.g. for handling prescriptions, for steering therapy or for monitoring patient compliance relating to physical therapies or activities, e.g. physiotherapy, acupressure or exercising
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B15/00Systems controlled by a computer
    • G05B15/02Systems controlled by a computer electric

Definitions

  • the invention relates to a digital fitness equipment cluster system, in particular to a digital fitness equipment cluster system which is composed of a plurality of fitness equipments and can be used by a fitness person to carry out collective activities/games, and belongs to the technical field of fitness equipment.
  • Common fitness equipment includes spinning, exercise bikes, treadmills, elliptical machines, rowing machines, and more.
  • the use of these fitness equipment is very beneficial to people's bodies, but the use process is rather boring and it is not easy to stimulate people's interest in long-term exercise.
  • a spinning bike (or treadmill, exercise bike, etc.) as an example, a spinning bike is originally intended to allow a bodybuilder to simulate the effect of cycling outdoors, but the existing spinning bike room allows the bodybuilder to face the coach, the wall or The mirror rides, the time is long and inevitably boring, there is no open and novelty of outdoor cycling. At the same time, the competition for the purpose of increasing interest and competitiveness during the training process is also impossible because of the lack of performance evaluation methods. In addition, the bicycle automatically changes the resistance according to the slope when riding outdoors, and the existing spinning bicycle can only manually change the resistance and lacks realism.
  • a spinning bicycle training system uses 3D technology to realize dynamic picture display, and performs keyboard light control and bicycle data acquisition and wireless transmission and reception through a single chip microcomputer. While exercising, the fitness person can see the beautiful scenery track, and the corresponding music and lighting, just like immersive, thus improving the fun of collective aerobic training such as spinning.
  • the training system requires each spinning bike You need to configure your computer and install the monitor in front of the spinning bike. In this way, not only the investment is large, but also the space is occupied. Because the display blocks the line of sight and is not conducive to collective activities, it is not suitable for a dynamic bicycle room with more spinning bicycles, smaller space and emphasizing collective participation.
  • the system consists of a motion platform subsystem, a virtual reality subsystem, and a projection display subsystem.
  • the virtual reality subsystem is composed of a motion control computer, a network server computer, and a scene rendering computer.
  • the invention provides an immersive virtual reality environment for the sports platform, and the virtual reality environment provides the motion platform feedback control information to realize the interaction between the motion and the environment, enhances the sense of presence, and enables the participants to have a high sense of immersion, thereby improving the fitness fun. Achieve health benefits.
  • the system is not specifically designed for the characteristics of various fitness equipment such as spinning bikes, treadmills, exercise bikes, etc., and the scope of application is limited.
  • the technical problem to be solved by the present invention is to provide a digital fitness equipment cluster system.
  • the cluster system can be installed in a spinning studio or treadmill room to allow the bodybuilder to perform group activities/games.
  • a digital fitness equipment cluster system characterized in that:
  • the digital fitness equipment cluster system includes a computing unit, a display unit, and a plurality of fitness equipment equipped with an electronic control device;
  • the computing unit is connected to the display unit and connected to an electronic control device on each fitness device through an interface circuit.
  • the electronic control device includes a motion detecting unit, a data transmission unit, and a power supply unit; wherein the motion detecting unit is respectively connected to the data transmission unit and the power supply unit, and the data transmission unit passes through the interface A circuit is coupled to the computing unit.
  • the power supply unit is any one of a battery, a transformer, or a self-generating module.
  • the self-generating module includes a friction wheel, a generator, and a battery; the friction wheel is in contact with a rotating wheel on the fitness equipment, and the rotating wheel drives the friction wheel to rotate, and then drives the power generation.
  • the machine turns and generates electricity.
  • the fitness equipment is any one of a spinning bicycle, a exercise bicycle, a treadmill, an elliptical machine, and a rowing machine.
  • the electronic control device When the exercise device is a spinning bicycle, the electronic control device further includes a resistance automatic adjustment unit, and the resistance automatic adjustment unit is connected to the data transmission unit.
  • the electronic control device When the exercise device is a treadmill, the electronic control device further includes a slope automatic adjustment unit, and the slope automatic adjustment unit is connected to the data transmission unit.
  • the digital fitness equipment cluster system further comprises an audio device, and the audio device is connected to the computing unit.
  • the digital fitness equipment cluster system further includes an environment special effect device, and the environment special effect device is connected to the computing unit.
  • the display unit is a projector or a large screen display.
  • the invention can form a plurality of fitness equipments into a fitness equipment cluster system which can be uniformly dispatched and independently operated, thereby providing a basic platform for a plurality of exercisers in a dynamic bicycle room or a treadmill room to carry out collective activities/games.
  • FIG. 1 is a schematic diagram of an overall structure of a fitness equipment cluster system based on a spinning bicycle in a first embodiment of a digital fitness equipment cluster system;
  • FIG. 2 is a schematic diagram showing the overall structure of a fitness equipment cluster system based on a treadmill in a second embodiment of the digital fitness equipment cluster system.
  • the exercise equipment referred to in the present invention includes a spinning bicycle, a exercise bicycle, a treadmill, an elliptical machine, a rowing machine, and the like.
  • the digital fitness equipment cluster system according to the present invention will be described in detail below by taking a spinning bicycle and a treadmill as examples.
  • Fig. 1 shows the overall structure of a spinning cycle cluster system as a first embodiment of the present invention.
  • Spinning is a new type of indoor cycling that combines music, lighting and more. Its structure is similar to that of a regular bicycle, including the handlebars, the seat, the seesaw and the wheels. The body is firmly connected as a whole.
  • the coach can adjust the resistance and number of the car according to individual strength, simulate the ups and downs, the action of walking in the field, and can also compete in the race.
  • Fitness people can use music and lighting to imitate various sports styles, such as mountain climbing and fast cycling.
  • the spinning bicycle cluster system includes a computing unit, a display unit, an audio device, an environmental special effect device, and a spinning bicycle with an electronic control device installed on the n (n is a natural number) station.
  • the computing unit is respectively connected with the display unit, the audio device and the environmental special effect device, and is connected to the electronic control device on each spinning bicycle through the interface circuit.
  • the electronic control device mounted on the spinning bicycle includes a motion detecting unit, a data transmission unit, a power supply unit, and an automatic resistance adjusting unit.
  • the motion detecting unit is respectively connected to the data transmission unit and the power unit.
  • the power supply unit is simultaneously connected to the motion detecting unit, the data transmission unit, and the resistance automatic adjustment unit to supply power to them.
  • the resistance automatic adjustment unit is connected to the data transmission unit, and the data transmission unit exchanges data with the calculation unit through the interface circuit.
  • a wired connection such as an RS-485 bus, or a wireless connection such as Bluetooth or WLAN (Wireless Local Area Network).
  • the computing unit can be implemented by hardware devices such as a PC, a server, and a high performance single chip microcomputer.
  • the computing unit is responsible for interacting with all spinning bikes in the entire spinning cycle cluster system.
  • Specially designed game software can be run in the calculation unit.
  • the game software not only controls the generation of the game screen on the projection screen of the display unit, but also controls the sound device to play various background music according to the user's request.
  • the display unit can be one or more projectors or a large screen display. Many of these projectors can be used for ring screen projection or 3D stereo projection. If the display unit uses a projector, there are four ways to achieve it: the first is a common flat screen projection; the second is to form a curved screen through several projectors and edge fusion system, this implementation and flat screen The projection is more immersive; the third is a 3D stereo projection screen, in which the fitness person can experience a more powerful stereo effect by wearing 3D glasses; the fourth is to have a curved screen and 3D The stereoscopic projection combines to form a 3D stereoscopic projection ring screen. The display effect of this implementation is the most realistic and shocking.
  • the environmental effects equipment in the spinning cluster system may include an electric lightning and thunder simulator, a wind simulator, a snow simulator, a water mist sprayer, a bubble effect simulator, a smoke effect simulator, and the like. Their role is to create air conditioning, water spray, spray, scent, snow, lightning and other environmental effects during the game to better enhance the atmosphere. For example, the game picture displayed on the display unit When lightning and rain occur in the surface, the environmental special effects equipment will automatically play the thundering sound through the audio equipment, start the lightning and thunder simulator, and spray small water droplets from the ceiling, the effect is very realistic.
  • the electronic control device mounted on the spinning bicycle includes at least a motion detecting unit and a data transmission unit, and may further include a power supply unit and an automatic resistance adjusting unit.
  • Each spinning bike needs to install a complete set of electronic control equipment, and all electronic control equipment interacts with the computing unit in the spinning bicycle cluster system.
  • the motion detecting unit detects a bicycle or running speed using a speed sensor such as a Hall switch, and can also obtain a riding or running direction by detecting a direction button or a game steering wheel.
  • sensors can be set on the spinning bike to detect human blood pressure, pulse and other data, laying the foundation for scientific adjustment of exercise intensity.
  • the data transmission unit transmits the data detected by the motion detecting unit to the computing unit in real time by means of wired transmission or wireless transmission, and is also responsible for receiving data or instructions sent by the computing unit. For each spinning bicycle, the data transmission unit additionally transmits the ID number of the spinning bicycle when transmitting data, so that the calculation unit can distinguish which spinning bicycle the received data is sent by.
  • the power unit is used to power various electronic control devices on the spinning bicycle.
  • the power unit can be implemented by a battery or a transformer, or can be implemented by a self-generating module.
  • the self-generating module includes a friction wheel, a generator, a battery, and the like.
  • the friction wheel is in contact with the rotating wheel on the spinning bicycle.
  • the rotating wheel drives the friction wheel to rotate, and then drives the generator to rotate and generate electricity.
  • the electricity generated by the generator directly drives the electronic control device, and the excess power is stored by the battery. This eliminates the need to frequently replace the battery or install the cable for the electronic control device on the spinning bicycle, which is more convenient and quicker.
  • the resistance automatic adjustment unit is used to dynamically adjust the motion resistance of the spinning bicycle.
  • the distance between the magnet and the runner can be adjusted by a wire motor to control the motion resistance.
  • the calculation unit transmits the current slope data to the resistance automatic adjustment unit, and the resistance automatic adjustment unit controls the cable motor to perform corresponding actions, and adjusts the relationship between the magnet and the runner. The distance, which in turn simulates the resistance under the corresponding slope.
  • the fitness person does not need to manually adjust the magnitude of the motion resistance, but the calculation unit notifies the resistance automatic adjustment unit to automatically adjust the motion resistance of the spinning bicycle according to the gradient data in the virtual scene.
  • the calculation unit notifies the resistance automatic adjustment unit to automatically adjust the motion resistance of the spinning bicycle according to the gradient data in the virtual scene.
  • Fitness people can experience the feeling of outdoor sports more realistically indoors.
  • Fig. 2 shows the overall structure of a treadmill cluster system as a second embodiment of the present invention.
  • the treadmill cluster system also includes a treadmill equipped with an electronic control device, such as a computing unit, a display unit, an audio device, an environmental effect device, and a n (n is a natural number) station.
  • the computing unit is connected to the display unit, the audio device and the environmental special effects device, and is connected to the electronic control device on each treadmill through the interface circuit.
  • the electronic control unit mounted on the treadmill includes a motion detection unit, a data transmission unit, a power supply unit, and an automatic tilt adjustment unit.
  • the motion detecting unit is respectively connected to the data transmission unit and the power unit.
  • the power unit is connected to both the motion detection unit, the data transmission unit, and the slope auto-adjustment unit to provide power to them.
  • the slope automatic adjustment unit is connected to the data transmission unit, and the data transmission unit exchanges data with the calculation unit through the interface circuit.
  • the computing unit, display unit, audio equipment, and environmental special effects equipment used are the same as those of the above-mentioned spinning bicycle cluster system, and there is no one here.
  • the main difference between the two is that the electronic control equipment is slightly different.
  • the automatic resistance adjustment unit is used in the electronic control device; for the treadmill cluster system, the automatic adjustment unit is used in the electronic control device.
  • the above-mentioned automatic inclination adjusting unit is used for adjusting the inclination angle of the table top, thereby realizing different motion gradients.
  • the tilt angle of the table can be adjusted directly by the motor, so the slope automatic adjustment unit can be directly installed.
  • the calculation unit transmits the current slope data to the slope automatic adjustment unit, and the slope automatic adjustment unit sends a control command to the motor to adjust the inclination angle of the table to make the bodybuilder You can feel the change of slope without hands-on operation, and experience the feeling of outdoor sports more realistically indoors.
  • the working principle and process of the digital fitness equipment cluster system are further described below.
  • the digital fitness equipment cluster system has the remarkable feature that only one set of calculation unit, display unit and electronic control equipment on multiple fitness equipments cooperate with each other.
  • the multi-fitness equipment that was originally installed and used independently is composed of a fitness equipment cluster system that can be uniformly dispatched and can be operated separately by each bicycle, thereby performing collective activities/games for a plurality of exercisers in a spinning bicycle room or a treadmill room. Provides the foundation on the hardware.
  • the scene of the game may include a three-dimensional virtual scene and a real shooting scene.
  • the fitness device can interact with the game software through electronic control devices installed on the fitness device. For example, after launching the game software, the game scene is projected onto the projection screen by the projector in the display unit.
  • the speed of cycling or running is transmitted to the computer through the electronic detection unit.
  • the fitness person can control the speed of cycling or running of the virtual characters in the game, and can compete with other virtual characters in the game, reflecting good fun and interactivity.
  • a number of exercisers can enjoy a realistic outdoor scene on the projection screen while exercising or playing in the front of the projection screen.
  • the speed at which each exerciser rides or runs is detected by the motion detection unit and then transmitted to the computing unit via the data transfer unit.
  • the game software in the computing unit receives data transmitted by all the fitness devices in the digital fitness equipment cluster system through the interface circuit, and controls the riding speed of the virtual character corresponding to the actual rider.
  • Each exerciser can individually control the speed of the avatar on the projection screen. In this way, the fitness person can not only enjoy the realistic outdoor scene picture, but also carry out realistic racing competitions, and can perform relevant statistics and analysis on the game results.
  • the calculation unit can automatically control the rhythm and volume of the music, and can also indirectly control the flicker and brightness of the lights in the spinning single cabin or the treadmill room, thus effectively setting off the atmosphere of the game.
  • the above embodiments are mainly described by taking a spinning bicycle and a treadmill as an example.
  • the scope of application of the present invention is not limited to spinning bikes and treadmills.
  • the above-mentioned electronic control device is installed on other fitness equipment such as exercise bike, elliptical machine, rowing machine, etc., and a similar digital fitness equipment cluster system can be realized by combining a computing unit, a display unit, an audio device, an environmental special effect device, and the like.

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Abstract

一种数字健身设备集群系统,包括计算单元、显示单元、音响设备、环境特效设备和多台安装有电子控制设备的健身设备,计算单元分别与显示单元、音响设备及环境特效设备连接,并通过接口电路与每台健身设备上的电子控制设备连接。该健身设备为动感单车、跑步机、椭圆机、划船机的任意一种。该系统将多台健身设备组成一个既能统一调度、又能独立运行的健身设备集群系统,为多位健身者开展集体活动提供了基础平台。

Description

数字健身设备集群系统 技术领域
本发明涉及一种数字健身设备集群系统, 尤其涉及一种由多台健身 设备组成, 可供健身者开展集体活动 /游戏的数字健身设备集群系统, 属 于健身设备技术领域。
背景技术
常见的健身设备包括动感单车 (Spinning)、 健身车、 跑步机、 椭圆 机、 划船机等。 使用这些健身设备对人们的身体非常有益, 但使用过程比 较枯燥乏味, 不容易激发人们长期锻炼的兴趣。
以动感单车(或跑步机、 健身车等)为例, 动感单车本来是让健身者 在室内模拟在室外骑车锻炼的效果, 但现有的动感单车房让健身者面对着 教练、 墙壁或镜子骑车, 时间长了难免枯燥乏味, 没有室外骑车的开阔新 奇感。 同时, 训练过程中为增加趣味性和竞技性而进行的竞速赛也因为没 有成绩评估手段无法有效开展。 另外, 在室外骑车时自行车会自动根据坡 度改变阻力, 而现有的动感单车只能手动改变阻力, 缺乏真实感。
为了解决上述问题,人们先后提出过多种技术解决方案。例如在专利 号为 ZL 200820132890. 1的中国实用新型专利中, 公开了一种动感单车训 练系统。 该训练系统采用 3D 技术实现动态画面显示, 通过单片机进行键 盘灯光控制及单车数据采集及无线收发。 健身者在运动的同时能够看到优 美的风景赛道, 配合相应的音乐及灯光, 犹如身临其境, 从而提高了动感 单车等集体有氧运动训练的趣味性。 但是, 该训练系统要求每台动感单车 都需要配置电脑, 同时在动感单车前方要安装显示器。这样不仅投资较大, 占用空间较多, 还会因为显示器阻挡视线而不利于开展集体活动, 因此不 适合动感单车设置较多、 空间较小、 强调集体参与的动感单车房。
另外, 在专利号为 ZL 200910073829. 3的中国发明专利中, 公开了一 种高临场感的智能感知交互运动系统及其实现方法。 该系统由运动平台子 系统、 虚拟现实子系统、 投影显示子系统组成; 其中虚拟现实子系统由运 动控制端计算机、 网络服务端计算机、 场景渲染端计算机组成。 该发明为 运动平台提供了身临其境的虚拟现实环境, 同时虚拟现实环境为运动平台 反馈控制信息实现运动与环境的互动, 增强临场感, 使参与者具有高沉浸 感, 从而提高健身乐趣, 达到保健效果。 但是, 该系统没有针对各种健身 设备如动感单车、 跑步机、 健身车等的特点进行专门设计, 适用范围比较 有限。
发明内容
本发明所要解决的技术问题在于提供一种数字健身设备集群系统。该 集群系统可以安装在动感单车房或者跑步机房中, 便于健身者开展集体活 动 /游戏。
为实现上述的发明目的, 本发明采用下述的技术方案:
一种数字健身设备集群系统, 其特征在于:
所述数字健身设备集群系统包括计算单元、 显示单元和多台安装有电 子控制设备的健身设备;
所述计算单元与所述显示单元进行连接, 并通过接口电路与每台健身 设备上的电子控制设备进行连接。 其中较优地, 所述电子控制设备包括运动检测单元、 数据传输单元和 电源单元; 其中所述运动检测单元分别连接所述数据传输单元和所述电源 单元, 所述数据传输单元通过所述接口电路连接所述计算单元。
其中较优地, 所述电源单元为电池、 变压器或者自发电模块中的任意 一种。
其中较优地, 所述自发电模块包括摩擦轮、 发电机、 蓄电池; 所述摩 擦轮与所述健身设备上的转轮相接触, 由转轮带动所述摩擦轮转动, 再带 动所述发电机转动并发电。
其中较优地, 所述健身设备为动感单车、 健身车、 跑步机、 椭圆机、 划船机中的任意一种。
所述健身设备为动感单车时, 所述电子控制设备还包括阻力自动调节 单元, 所述阻力自动调节单元连接所述数据传输单元。
所述健身设备为跑步机时, 所述电子控制设备还包括坡度自动调节单 元, 所述坡度自动调节单元连接所述数据传输单元。
其中较优地, 所述数字健身设备集群系统还包括音响设备, 所述音响 设备连接所述计算单元。
其中较优地, 所述数字健身设备集群系统还包括环境特效设备, 所述 环境特效设备连接所述计算单元。
其中较优地, 所示显示单元为投影机或者大屏幕显示器。
本发明可以将多台健身设备组成一个既能统一调度、又能各自独立运 行的健身设备集群系统, 从而为动感单车房或者跑步机房中的多位健身者 开展集体活动 /游戏提供了基础平台。 附图说明
下面结合附图和具体实施方式对本发明做进一步的详细说明。
图 1为本数字健身设备集群系统的第一实施例中,基于动感单车实现 的健身设备集群系统的整体结构示意图;
图 2为本数字健身设备集群系统的第二实施例中,基于跑步机实现的 健身设备集群系统的整体结构示意图。
具体实施方式
本发明中所说的健身设备包括动感单车、 健身车、 跑步机、 椭圆机、 划船机等。 下面分别以动感单车和跑步机为例, 对本发明所述的数字健身 设备集群系统进行详细具体的说明。
图 1显示了作为本发明第一实施例的动感单车集群系统的整体结构。 动感单车是一种结合音乐、 灯光等的新型室内自行车运动方式。 它的结构 与普通自行车相似, 包括车把、 车座、 蹬板和轮子等几个部分, 车身稳固 地联结为一个整体。 在动感单车课程中, 教练可以根据个人力度来调节车 的阻力和转数, 模拟上下坡、 原地走的动作, 还可以进行竞速比赛。 健身 者配合音乐、 灯光, 可以模仿各种运动方式, 如爬山、 快速骑车等。
如图 1所示, 在动感单车集群系统中包括计算单元、 显示单元、 音响 设备、 环境特效设备和 n (n 为自然数) 台安装有电子控制设备的动感单 车。 其中计算单元分别与显示单元、 音响设备及环境特效设备连接, 并通 过接口电路与每台动感单车上的电子控制设备进行连接。 安装在动感单车 上的电子控制设备包括运动检测单元、 数据传输单元、 电源单元和阻力自 动调节单元等。 其中, 运动检测单元分别连接数据传输单元和电源单元。 电源单元同时与运动检测单元、 数据传输单元和阻力自动调节单元进行连 接, 向它们提供电力供应。 阻力自动调节单元连接数据传输单元, 数据传 输单元通过接口电路与计算单元交互数据。 上述的接口电路可以采用
RS-485总线等有线连接方式, 也可以采用蓝牙、 WLAN (无线局域网) 等无 线连接方式。
在本动感单车集群系统中, 计算单元可以采用 PC机、 服务器、 高性 能单片机等硬件设备实现。 该计算单元负责与整个动感单车集群系统中的 所有动感单车进行交互。 在计算单元中可以运行专门设计的比赛游戏软 件。 该比赛游戏软件不仅能够控制显示单元的投影屏幕上游戏画面的生 成, 还可以按照用户的要求控制音响设备播放各种背景音乐。
显示单元可以为一台或多台投影机, 也可以为大屏幕显示器。 其中多 台投影机可以实现环幕投影或 3D 立体投影。 如果显示单元采用投影机, 则有四种实现方式: 第一种是普通的平面幕布投影; 第二种是通过几台投 影机和边缘融合系统形成一个弧形屏幕, 这种实现方式与平面幕布投影相 比更有身临其境感; 第三种是 3D 立体投影屏幕, 这种实现方式下健身者 通过佩戴 3D 眼镜可以体验到更震撼的立体效果; 第四种是将弧形屏幕和 3D立体投影结合起来, 形成 3D立体投影环幕, 这种实现方式的显示效果 最为逼真震撼。
本动感单车集群系统中的环境特效设备可以包括电闪雷鸣模拟器、 刮 风模拟器、 降雪模拟器、 水雾喷洒器、 气泡效果模拟器、 烟雾效果模拟器 等。 它们的作用在于在游戏过程中产生吹风、 喷水、 喷雾、 喷香、 雪花、 闪电等环境特效, 更好地烘托现场气氛。 例如在显示单元所显示的游戏画 面中出现雷电和下雨时, 环境特效设备会通过音响设备自动播放打雷的声 音, 启动电闪雷鸣模拟器, 同时从天花板上开始喷小水珠, 效果非常逼真。
安装在动感单车上的电子控制设备至少包括运动检测单元和数据传 输单元, 还可以包括电源单元和阻力自动调节单元等。 每台动感单车需要 安装一整套电子控制设备, 所有电子控制设备与动感单车集群系统中的计 算单元进行数据交互。
在本动感单车集群系统中, 运动检测单元利用霍尔开关等速度传感器 来检测骑车或跑步速度, 还可以通过检测方向按钮或游戏方向盘来获得骑 车或跑步方向。 另外, 在动感单车上还可以设置传感器来检测人的血压、 脉搏等数据, 为科学调节运动强度奠定基础。
数据传输单元以有线传输或无线传输等方式将运动检测单元检测到 的数据实时发送给计算单元, 同时也负责接收计算单元发送来的数据或指 令。 对于每台动感单车, 数据传输单元在传输数据时会附加传输该台动感 单车的 ID 号, 便于计算单元能分辨出所接收的数据是由哪台动感单车发 出的。
电源单元用于给动感单车上的各种电子控制设备供电。 该电源单元可 以采用电池或变压器实现, 也可以采用自发电模块实现。 自发电模块包括 摩擦轮、 发电机、 蓄电池等。 其中摩擦轮与动感单车上的转轮相接触, 当 健身者运动时由转轮带动摩擦轮转动, 再带动发电机转动并发电。 发电机 所发的电直接驱动电子控制设备, 多余的电量由蓄电池进行保存。 这样就 不需要为动感单车上的电子控制设备频繁更换电池或安装电缆了, 更加方 便快捷。 阻力自动调节单元用于动态调节动感单车的运动阻力大小。 在使用动 感单车进行锻炼的过程中, 经常需要调整动感单车的运动阻力, 以便模仿 各种运动方式, 如骑车上坡、 下坡等。 对于采用电磁控制方式的动感单车 而言,可以通过拉线马达调节磁石与转轮的远近,从而控制运动阻力大小。 当显示单元所显示的虚拟场景是上坡或下坡时, 计算单元会把当前的坡度 数据传输给阻力自动调节单元, 阻力自动调节单元控制拉线马达进行相应 的动作, 调节磁石与转轮之间的距离, 进而模拟出相应坡度情况下的阻力 大小。 这样, 健身者就不用动手调节运动阻力的大小了, 而是由计算单元 根据虚拟场景中的坡度数据, 通知阻力自动调节单元自动调节动感单车的 运动阻力。 健身者在室内就能更逼真地体验户外运动的感觉。
图 2显示了作为本发明第二实施例的跑步机集群系统的整体结构。 如 图 2所示, 在跑步机集群系统中也包括计算单元、 显示单元、 音响设备、 环境特效设备和 n (n 为自然数) 台安装有电子控制设备的跑步机。 其中 计算单元分别与显示单元、 音响设备及环境特效设备连接, 并通过接口电 路与每台跑步机上的电子控制设备进行连接。 安装在跑步机上的电子控制 设备包括运动检测单元、数据传输单元、电源单元和坡度自动调节单元等。 其中, 运动检测单元分别连接数据传输单元和电源单元。 电源单元同时与 运动检测单元、 数据传输单元和坡度自动调节单元进行连接, 向它们提供 电力供应。 坡度自动调节单元连接数据传输单元, 数据传输单元通过上述 接口电路与计算单元交互数据。
在跑步机集群系统中, 所使用的计算单元、 显示单元、 音响设备、 环 境特效设备均与上述动感单车集群系统中的同类设备相同, 在此就不一一 详述了。 两者的主要不同在于电子控制设备稍有不同。 对于动感单车集群 系统而言, 电子控制设备中使用阻力自动调节单元; 对于跑步机集群系统 而言, 电子控制设备中使用坡度自动调节单元。
上述的坡度自动调节单元用于调节台面倾斜角度的大小, 从而实现不 同的运动坡度。 对于跑步机而言, 台面的倾斜角度可以由电机直接进行调 整, 因此可以直接安装坡度自动调节单元。 当显示单元所显示的虚拟场景 是上坡或下坡时, 计算单元会把当前的坡度数据传输给坡度自动调节单 元, 坡度自动调节单元向电机发出控制指令, 调节台面的倾斜角度, 使健 身者不必动手操作就能感受到坡度的变化, 在室内更逼真地体验户外运动 的感觉。
下面进一步介绍本数字健身设备集群系统的工作原理和过程。 与现有 动感单车房或者跑步机房中独立使用的健身设备相比较, 本数字健身设备 集群系统的显著特点在于仅仅通过一套计算单元、 显示单元与多台健身设 备上的电子控制设备相互配合, 使原本独立安装、 独立使用的多台健身设 备组成一个既能统一调度、 又能各单车单独运行的健身设备集群系统, 从 而为动感单车房或者跑步机房中的多位健身者开展集体活动 /游戏提供了 硬件上的基础。
前已述及, 在计算单元中可以运行专门设计的比赛游戏软件。 该游戏 的场景中可以包括三维虚拟场景和真实拍摄场景。 健身者通过健身设备上 安装的电子控制设备可以和比赛游戏软件进行互动。 例如在启动比赛游戏 软件后, 通过显示单元中的投影机将游戏场景投影到投影屏幕上。 当健身 者在健身设备上运动时, 骑车或跑步的速度通过电子检测单元传给电脑, 健身者能够控制游戏中虚拟人物的骑车或跑步速度, 并且可以和游戏中的 其他虚拟人物进行竞赛, 体现良好的趣味性和互动性。 多位健身者在投影 屏幕前可以一边欣赏投影屏幕上逼真的室外场景画面, 一边进行锻炼或比 赛。 每位健身者骑车或跑步的速度通过运动检测单元检测出来, 然后通过 数据传输单元传送给计算单元。 计算单元中的比赛游戏软件通过接口电路 接收数字健身设备集群系统内所有健身设备传送来的数据, 并控制与实际 骑车人相对应的虚拟人物的骑车速度。 每个健身者可以单独控制投影屏幕 上与之对应的虚拟人物骑车的快慢。 这样健身者不仅能一边欣赏逼真的室 外场景画面, 还可以进行逼真的竞速比赛, 并可以对比赛成绩进行相关的 统计和分析。
在比赛游戏的过程中, 计算单元可以自动控制音乐的节奏和音量, 还 可以间接控制动感单车房或跑步机房内灯光的闪烁和明暗, 从而有效烘托 比赛游戏的现场气氛。
需要说明的是, 上述的实施例主要是以动感单车和跑步机为例展开说 明的。 但本发明的适用范围并不限于动感单车和跑步机。 在其它健身设备 如健身车、 椭圆机、 划船机等的上面安装上述的电子控制设备, 结合计算 单元、 显示单元、 音响设备、 环境特效设备等, 同样可以实现类似的数字 健身设备集群系统。
上面对本发明所提供的数字健身设备集群系统进行了详细的说明。 对 本领域的一般技术人员而言, 在不背离本发明实质精神的前提下对它所做 的任何显而易见的改动, 都将构成对本发明专利权的侵犯, 将承担相应的 法律责任。

Claims

权 利 要 求
1. 一种数字健身设备集群系统, 其特征在于:
所述数字健身设备集群系统包括计算单元、 显示单元、 音响设备、 环 境特效设备和多台安装有电子控制设备的健身设备; 所示显示单元为投影 机或者大屏幕显示器;
所述计算单元与所述显示单元进行连接, 并通过接口电路与每台健身 设备上的电子控制设备进行连接; 所述音响设备和所述环境特效设备分别 连接所述计算单元;
所述电子控制设备包括运动检测单元、 数据传输单元和电源单元; 其 中所述运动检测单元分别连接所述数据传输单元和所述电源单元, 所述数 据传输单元通过所述接口电路连接所述计算单元;
所述电源单元为电池、 变压器或者自发电模块中的任意一种; 其中所 述自发电模块包括摩擦轮、 发电机、 蓄电池; 所述摩擦轮与所述健身设备 上的转轮相接触, 由转轮带动所述摩擦轮转动, 再带动所述发电机转动并 发电;
所述健身设备为动感单车、 健身车、 跑步机、 椭圆机、 划船机中的任 意一种。
2. 如权利要求 1所述的数字健身设备集群系统, 其特征在于: 所述健身设备为动感单车时, 所述电子控制设备还包括阻力自动调节 单元, 所述阻力自动调节单元连接所述数据传输单元。
3. 如权利要求 1所述的数字健身设备集群系统, 其特征在于: 所述健身设备为跑步机时, 所述电子控制设备还包括坡度自动调节单 元, 所述坡度自动调节单元连接所述数据传输单元。
4. 一种数字健身设备集群系统, 其特征在于:
所述数字健身设备集群系统包括计算单元、 显示单元和多台安装有电 子控制设备的健身设备;
所述计算单元与所述显示单元进行连接, 并通过接口电路与每台健身 设备上的电子控制设备进行连接。
5. 如权利要求 4所述的数字健身设备集群系统, 其特征在于: 所述电子控制设备包括运动检测单元、 数据传输单元和电源单元; 其 中所述运动检测单元分别连接所述数据传输单元和所述电源单元, 所述数 据传输单元通过所述接口电路连接所述计算单元。
6. 如权利要求 5所述的数字健身设备集群系统, 其特征在于: 所述电源单元为电池、 变压器或者自发电模块中的任意一种。
7. 如权利要求 6所述的数字健身设备集群系统, 其特征在于: 所述自发电模块包括摩擦轮、 发电机、 蓄电池; 所述摩擦轮与所述健 身设备上的转轮相接触, 由转轮带动所述摩擦轮转动, 再带动所述发电机 转动并发电。
8. 如权利要求 4所述的数字健身设备集群系统, 其特征在于: 所述健身设备为动感单车、 健身车、 跑步机、 椭圆机、 划船机中的任 意一种。
9. 如权利要求 8所述的数字健身设备集群系统, 其特征在于: 所述健身设备为动感单车时, 所述电子控制设备还包括阻力自动调节 单元, 所述阻力自动调节单元连接所述数据传输单元。
10. 如权利要求 8所述的数字健身设备集群系统, 其特征在于: 所述健身设备为跑步机时, 所述电子控制设备还包括坡度自动调节单 元, 所述坡度自动调节单元连接所述数据传输单元。
11. 如权利要求 4所述的数字健身设备集群系统, 其特征在于: 所述数字健身设备集群系统还包括音响设备, 所述音响设备连接所述 计算单元。
12. 如权利要求 4所述的数字健身设备集群系统, 其特征在于: 所述数字健身设备集群系统还包括环境特效设备, 所述环境特效设备 连接所述计算单元。
13. 如权利要求 4所述的数字健身设备集群系统, 其特征在于: 所示显示单元为投影机或者大屏幕显示器。
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