Single path architecture & automatic gain control (SAGC) algorithm for low power SDARS receivers
    1.
    发明申请
    Single path architecture & automatic gain control (SAGC) algorithm for low power SDARS receivers 有权
    用于低功率SDARS接收机的单路径架构和自动增益控制(SAGC)算法

    公开(公告)号:US20070041481A1

    公开(公告)日:2007-02-22

    申请号:US11204631

    申请日:2005-08-16

    IPC分类号: H04L27/08

    摘要: An automatic gain control (AGC) for use in a digital radio receiver that allows at least two types of input signal to be processed using a single receiver front end by supporting two modes of operation, each optimized for one particular signal type, and a third mode not optimized for either. The AGC enables smooth switching between the optimized modes of operation via the non-optimized mode. By measuring a difference in the strength between the demodulated signals, and comparing that to two preset values, the AGC which mode of operation to place the receiver in. Modes of operation are maintained by adjusting the gain of a variable gain amplifier (VGA), so that an appropriate incoming signal is amplified to a level that is suitable for an analogue-to-digital (ADC) converter. The AGC is compatible with existing satellite digital audio radio system (SDARS) transmission capabilities.

    摘要翻译: 一种在数字无线电接收机中使用的自动增益控制(AGC),其允许使用单个接收器前端来处理至少两种类型的输入信号,所述两个接收机前端通过支持针对一种特定信号类型优化的两种操作模式,以及第三种 模式未优化。 AGC可以通过非优化模式在优化的操作模式之间平滑切换。 通过测量解调信号之间的强度差,并将其与两个预设值进行比较,AGC将接收器放置在操作模式中。通过调节可变增益放大器(VGA)的增益来维持操作模式, 使得适当的输入信号被放大到适合于模数(ADC)转换器的电平。 AGC与现有的卫星数字音频无线电系统(SDARS)传输能力相兼容。

    Single path architecture and automatic gain control (SAGC) algorithm for low power SDARS receivers
    4.
    发明授权
    Single path architecture and automatic gain control (SAGC) algorithm for low power SDARS receivers 有权
    单路径架构和低功率SDARS接收机的自动增益控制(SAGC)算法

    公开(公告)号:US08260240B2

    公开(公告)日:2012-09-04

    申请号:US11204631

    申请日:2005-08-16

    IPC分类号: H04B1/06

    摘要: An automatic gain control (AGC) for use in a digital radio receiver that allows at least two types of input signal to be processed using a single receiver front end by supporting two modes of operation, each optimized for one particular signal type, and a third mode not optimized for either. The AGC enables smooth switching between the optimized modes of operation via the non-optimized mode. By measuring a difference in the strength between the demodulated signals, and comparing that to two preset values, the AGC controls which mode of operation to place the receiver in. Modes of operation are maintained by adjusting the gain of a variable gain amplifier (VGA), so that an appropriate incoming signal is amplified to a level that is suitable for an analogue-to-digital (ADC) converter. The AGC is compatible with existing satellite digital audio radio system (SDARS) transmission capabilities.

    摘要翻译: 一种在数字无线电接收机中使用的自动增益控制(AGC),其允许使用单个接收器前端来处理至少两种类型的输入信号,所述两个接收机前端通过支持针对一种特定信号类型优化的两种操作模式,以及第三种 模式未优化。 AGC可以通过非优化模式在优化的操作模式之间平滑切换。 通过测量解调信号之间的强度差,并将其与两个预设值进行比较,AGC控制将接收机置于哪种操作模式。通过调整可变增益放大器(VGA)的增益来维持操作模式, ,使得适当的输入信号被放大到适合于模数(ADC)转换器的电平。 AGC与现有的卫星数字音频无线电系统(SDARS)传输能力相兼容。