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Code-Division-Multiplexing Using Orthogonal Codes for Fast Electrical Impedance Tomography

机译:使用正交代码进行Code-Divice-Comply用于快速电阻断层扫描

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Electrical impedance tomography (EIT) is used to determine the spatial conductivity distribution of a measurement environment, what involves several applications in the area of process engineering or medical science. In common systems a measurement environment is usually stimulated by defined current patterns in a serial time-multiplexing manner. Higher measurement rates can be achieved with code-multiplexed (CDM) excitations for parallel measurements. In order to optimize channel separation and dynamic range, orthogonal Walsh-Hadamard codes have been implemented on a fast EIT system. The crosstalk between different channels has been analyzed for 9 parallel coded excitation signals. Furthermore reconstructed conductivity distributions have been compared to reconstruction results obtained from frequency-multiplexed (FDM) measurements (root mean square difference of 0.02%).
机译:电气阻抗断层扫描(EIT)用于确定测量环境的空间电导率分布,涉及过程工程或医学领域的若干应用。 在公共系统中,通常以串行时间复用方式由定义的电流模式刺激测量环境。 通过代码多路复用(CDM)激发,可以实现更高的测量速率进行并行测量。 为了优化信道分离和动态范围,在快速的EIT系统上已经实现了正交的Walsh-Hadamard代码。 已经分析了不同通道之间的串扰,用于9个并联编码激励信号。 此外,已经将重建的电导率分布与从频率多路复用(FDM)测量获得的重建结果进行了比较(均方根均值为0.02%)。

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