Effect of multitone jammers on error rates of fast-hopped MFSK signals with no side information

G. Orr, B. Rice
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Abstract

Estimations of the probabilities of bit errors in a fast-hopped M-ary-frequency-shift-keyed (MFSK) signal can be obtained by specifying a range of "scenarios" and an exhaustive set of "subscenarios" for which the occurrence or non-occurrence of symbol errors can be determined. The probability of symbol error for a given scenario is computed as the sum of the probabilities of occurrence of those subscenarios that produce symbol errors. An error is assumed to occur when the channel output of a most-often-jammed channel exceeds that of the channel containing the signal. An efficient method is presented for computing the probabilities of each possible subscenario. In the important case that there is only one jamming tone in the frequency band of a jammed hop, a partitioning technique enables precise calculations of these probabilities even when the number of hops combined is quite large. Monte Carlo techniques plus precise calculations in special cases are used to calculate the probabilities when the number of jamming tones per jammed hop is greater than one.<>
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多音干扰器对无侧信息快跳MFSK信号误码率的影响
快速跳码m -频移键控(MFSK)信号中误码概率的估计可以通过指定一系列“场景”和一组详尽的“子场景”来获得,这些场景可以确定符号错误的发生或不发生。给定场景的符号错误概率计算为产生符号错误的子场景发生概率的总和。当最常阻塞信道的信道输出超过包含该信号的信道输出时,假定会发生错误。提出了一种计算每个可能子场景概率的有效方法。在重要的情况下,在一个被干扰的跳的频带中只有一个干扰音,即使在跳数组合相当大的情况下,分割技术也可以精确计算这些概率。蒙特卡罗技术加上在特殊情况下的精确计算用于计算每个干扰跳的干扰音数大于1时的概率。
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