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    • 2. 发明申请
    • Integer cycle frequency hopping modulation for the radio frequency transmission of high speed data
    • 用于高速数据射频传输的整数周期跳频调制
    • US20090245328A1
    • 2009-10-01
    • US11973521
    • 2007-12-03
    • Joseph A. Bobier
    • Joseph A. Bobier
    • H04B1/713
    • H04B1/713H04B14/04H04L27/2014
    • The invention disclosed in this application uses a method of modulation named Integer Cycle Frequency Hopping (ICFH) wherein a carrier signal, comprised of a continuum of sine waves is generated on a single frequency. A data bit representing either a “1” or a “0”, depending upon the logic polarity chosen by the builder is imposed upon the carrier signal by modifying the carrier signal at precisely the zero crossing point or the zero degree angle. The method of imposing the data is to cause either a lengthening or shortening of the proceeding 360 degrees of phase angle, thus effectively either raising or lowering the frequency of the carrier signal for just the one, or a succession of cycles at hand. Upon completion of the 360-degree cycle(s), the carrier will return to the original frequency. The main carrier frequency is only modulated beginning at the zero degree phase angle and ending at the 360-degree phase angle. In this modulation scheme as few as one sine wave cycle can be used to represent one data bit. The spectral output of a transmitting device using this modulation scheme will be defined by the difference in frequency between the main carrier signal and the modulating frequency. In the resulting signal a modulated segment of the main carrier frequency can represent either a binary “1” or a binary “0”.
    • 本申请中公开的发明使用称为整数周期跳频(ICFH)的调制方法,其中在单个频率上产生由正弦波的连续谱构成的载波信号。 根据构建器选择的逻辑极性,表示“1”或“0”的数据位通过在精确的过零点或零度角修正载波信号而施加在载波信号上。 施加数据的方法是导致进行的360度相位角的延长或缩短,从而有效地提高或降低载波信号的频率仅仅是手中的一个或一系列循环。 在360度循环完成后,运营商将返回到原始频率。 主载波频率仅从零度相位角开始调制,并以360度相位角结束。 在这种调制方案中,只能使用一个正弦波周期来表示一个数据位。 使用该调制方式的发送装置的频谱输出将由主载波信号和调制频率之间的频率差定义。 在得到的信号中,主载波频率的调制段可以表示二进制“1”或二进制“0”。
    • 3. 发明授权
    • Coordinated numerical control of sideband energy and modulation compression method for the radio frequency transmission of high speed data
    • 用于高速数据射频传输的边带能量和调制压缩方法的协调数字控制
    • US07058138B2
    • 2006-06-06
    • US11217029
    • 2005-08-31
    • Joseph A. Bobier
    • Joseph A. Bobier
    • H04L27/04
    • H04L27/0004H04L25/4902H04L27/10
    • An RF signal compression technique used to transport high bit-rate data over wired or wireless means using modulated radio frequency carrier waves whose purpose is to reduce the number of radio carrier modulation events, thus reducing the amount of radio sideband emissions, while increasing the amount of information conveyed by coordinating the modulation events. More specifically an improved compression method with coordinated padding for various methods of modulation by which the spectral channel width occupied by the radio signal and the power spectrum density of said signal can be controlled by numerically adjusting the coding format in a coordinated manner allowing for coordinated modulation events which permits multiple transmissions in a coverage area greatly increasing the amount of information transmitted and available users.
    • 一种用于通过有线或无线装置传送高比特率数据的RF信号压缩技术,其使用调制的射频载波,其目的是减少无线电载波调制事件的数量,从而减少无线电边带的发射量,同时增加量 通过协调调制事件传达的信息。 更具体地,涉及用于各种调制方式的协调填充的改进的压缩方法,通过该压缩方法可以通过以协调的方式数字调整编码格式来控制无线电信号占用的频谱信道宽度和所述信号的功率谱密度,从而允许协调调制 允许覆盖区域中的多个传输的事件大大增加了发送的信息量和可用的用户。
    • 4. 发明授权
    • Band masking of self organizing cellular networks
    • 自组织蜂窝网络的带屏蔽
    • US08320910B2
    • 2012-11-27
    • US13226710
    • 2011-09-07
    • Joseph A. Bobier
    • Joseph A. Bobier
    • H04W4/00
    • H04W16/04
    • This invention addresses a method of whereby a cellular base station can scan the radio band to identify radio channels that are not in use, then claim those un-used radio channels for use to transmit and receive radio signals. A plurality of such radio base station could then comprise a cellular radio network, which channel planning and frequency re-use has become autonomous and self organizing. The present disclosure aims to further expand the utility and function of such self organizing cellular networks by including a user interface to the base station by which the operator can define the radio spectrum boundaries that the base station is authorized to operate within and to further set operational rules for the use of sub-sections of that defined spectral boundary.
    • 本发明涉及一种蜂窝基站可以扫描无线电频带以识别未使用的无线电信道的方法,然后声明这些未使用的无线电信道用于发射和接收无线电信号。 然后,多个这样的无线电基站可以包括蜂窝无线电网络,其信道规划和频率重用已经变得自主和自组织。 本公开旨在通过向基站包括用户接口来进一步扩展这种自组织蜂窝网络的效用和功能,通过该基站,运营商可以定义基站被授权在其中操作的无线电频谱边界,并进一步设置操作 使用该定义光谱边界的子部分的规则。
    • 5. 发明授权
    • Integer cycle frequency hopping modulation for the radio frequency transmission of high speed data
    • 用于高速数据射频传输的整数周期跳频调制
    • US07804913B2
    • 2010-09-28
    • US11973521
    • 2007-12-03
    • Joseph A. Bobier
    • Joseph A. Bobier
    • H04L27/04H04L27/06
    • H04B1/713H04B14/04H04L27/2014
    • The invention disclosed in this application uses a method of modulation named Integer Cycle Frequency Hopping (ICFH) wherein a carrier signal, comprised of a continuum of sine waves is generated on a single frequency. A data bit representing either a “1” or a “0”, depending upon the logic polarity chosen by the builder is imposed upon the carrier signal by modifying the carrier signal at precisely the zero crossing point or the zero degree angle. The method of imposing the data is to cause either a lengthening or shortening of the proceeding 360 degrees of phase angle, thus effectively either raising or lowering the frequency of the carrier signal for just the one, or a succession of cycles at hand. Upon completion of the 360-degree cycle(s), the carrier will return to the original frequency. The main carrier frequency is only modulated beginning at the zero degree phase angle and ending at the 360-degree phase angle. In this modulation scheme as few as one sine wave cycle can be used to represent one data bit. The spectral output of a transmitting device using this modulation scheme will be defined by the difference in frequency between the main carrier signal and the modulating frequency. In the resulting signal a modulated segment of the main carrier frequency can represent either a binary “1” or a binary “0”.
    • 本申请中公开的发明使用称为整数周期跳频(ICFH)的调制方法,其中在单个频率上产生由正弦波的连续谱构成的载波信号。 根据构建器选择的逻辑极性,表示“1”或“0”的数据位通过在精确的过零点或零度角修正载波信号而施加在载波信号上。 施加数据的方法是导致进行的360度相位角的延长或缩短,从而有效地提高或降低载波信号的频率仅仅是手中的一个或一系列循环。 在360度循环完成后,运营商将返回到原始频率。 主载波频率仅从零度相位角开始调制,并以360度相位角结束。 在这种调制方案中,只能使用一个正弦波周期来表示一个数据位。 使用该调制方式的发送装置的频谱输出将由主载波信号和调制频率之间的频率差定义。 在得到的信号中,主载波频率的调制段可以表示二进制“1”或二进制“0”。
    • 10. 发明授权
    • Solar panel driven air purging apparatus for motor vehicles
    • 用于汽车的太阳能电池板驱动的空气净化装置
    • US5089764A
    • 1992-02-18
    • US471537
    • 1990-01-29
    • Joseph A. BobierGerald E. Brown
    • Joseph A. BobierGerald E. Brown
    • B60H1/00G05D23/19G05F1/67H02J7/35
    • H02J7/35B60H1/00828G05D23/1924G05F1/67Y10S136/291Y10S323/906
    • Apparatus and system for purging hot air from the cabin of vehicles when parked under hot sun conditions. The system employs a solar panel of relatively smaller size suited for incorporation with a sun roof or rear window of the vehicle. A power transfer regulator is utilized which is responsive to the peak voltage chacteristic of the solar panel to cause the panel to substantially continuously to perform at its peak power output capability. As such, an equivalent power at lower voltage and enhanced current levels is submitted to the electric drive motor of an air purging fan within the vehicle. Switching controls are provided which monitor the state of the vehicle's internal combustion engine through its ignition switch and which provide turn-on of the purging system at such time as vehicle cabin temperatures reach predetermined levels. When the air circulation system is disabled, the solar panel is employed for charging the battery of the vehicle.
    • 当在炎热的阳光条件下停放时,用于从车厢内清除热空气的装置和系统。 该系统采用相对较小尺寸的太阳能电池板,适合与车辆的太阳屋顶或后窗结合。 使用功率传递调节器,其响应于太阳能电池板的峰值电压特性,以使面板基本上连续地以其峰值功率输出能力执行。 因此,将较低电压和增强电流水平的等效功率提交给车辆内的空气净化风扇的电驱动电动机。 提供开关控制器,其通过其点火开关监测车辆内燃机的状态,并且在车厢温度达到预定水平的时候提供清洗系统的开启。 当空气循环系统被禁用时,太阳能电池板被用于为车辆的电池充电。