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首页> 外文期刊>Indian Journal of Science and Technology >Design and Implementation Analysis of OSD based Audio Crosstalk Cancellation with Multi-Channel Inputs on DSP Processors
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Design and Implementation Analysis of OSD based Audio Crosstalk Cancellation with Multi-Channel Inputs on DSP Processors

机译:DSP处理器上基于OSD的多通道输入音频串扰消除的设计和实现分析

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摘要

To overcome the basic system inversion problems in conventional crosstalk cancellation systems, the three channel Optimum Source Distribution (OSD) was developed by Takashi et al., that provides balance between in-phase and out of phase components. The main difficulty in this system is real-time implementation of cross talk cancellation filters on DSP platforms, particularly when filter lengths are very long with system operates on multichannel inputs. This paper discusses the implementation complexities and proposes an efficient approach to reduce the power consumption. It also discusses efficient usage of available processor memory. By utilizing the processor resources and existing frequency domain techniques, this approach would be one of best methods for long filters. The mathematical model, with efficient design for floating point DSP processors, clearly explains the optimization methods at algorithmic and instruction levels. The computational complexity of the proposed method was measured for various multi-channel input sources and the comparison was shown. The results indicate that the proposed method provides efficient computations than existing methods.
机译:为了克服传统串扰消除系统中的基本系统反转问题,Takashi等人开发了三通道最佳源分配(OSD),它在同相和异相分量之间提供了平衡。该系统的主要困难是在DSP平台上实时实现串扰消除滤波器,尤其是当滤波器的长度非常长且系统在多通道输入上运行时尤其如此。本文讨论了实现的复杂性,并提出了一种降低功耗的有效方法。它还讨论了可用处理器内存的有效使用。通过利用处理器资源和现有的频域技术,该方法将成为长滤波器的最佳方法之一。带有有效设计浮点DSP处理器的数学模型清楚地说明了算法和指令级的优化方法。针对各种多通道输入源,测量了该方法的计算复杂度,并进行了比较。结果表明,所提出的方法比现有方法提供了有效的计算方法。

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